BYRON 2010-0041, Steam Generator - Inservice Inspection Summary Report for Refueling Outage 15

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Steam Generator - Inservice Inspection Summary Report for Refueling Outage 15
ML102100454
Person / Time
Site: Byron Constellation icon.png
Issue date: 07/23/2010
From: Enright D J
Exelon Generation Co, Exelon Nuclear
To:
Document Control Desk, Office of Nuclear Reactor Regulation
References
1.10.0101, BYRON 2010-0041
Download: ML102100454 (143)


Text

Exelkn.Exelon Generation Company, LLC www.exeloncorp.com NUClear Byron Station 4450 North German Church Road Byron, IL 61010-9794 July 23, 2010 LTR: BYRON 2010-0041 File: 1.10.0101 U. S. Nuclear Regulatory Commission ATTN: Document Control Desk Washington, DC 20555-0001 Byron Nuclear Power Station, Unit 2 Facility Operating License NPF-66 NRC Docket No. STN 50-455

Subject:

Byron Station Unit 2 Steam Generator Inservice Inspection Summary Report for Refueling Outage 15 In accordance with Technical Specification 5.6.9, "Steam Generator (SG) Tube Inspection Report," Exelon Generation Company, LLC is reporting the results of the steam generator inspections that were completed during the Byron Station Unit 2, Refueling Outage 15. The attached report is also being submitted in accordance with the requirements of the American Society of Mechanical Engineers Boiler and Pressure Vessel Code, 2001 Edition through the 2003 Addenda,Section XI, "Rules for Inservice Inspection of Nuclear Power Plant Components," Article IWA-6000, "Record and Reports," and Paragraph 11-890.2.3, "Reporting" of ASME Section V "Nondestructive Examination," Article 8 -Appendix II, "Eddy Current Examination of Nonferromagnetic Heat Exchanger Tubing," 2001 Edition through the 2003 Addenda.If there are any questions regarding this report, please contact Dave Gudger, Regulatory Assurance Manager, at (815) 406-2800.Respectfully, Daniel J. Enright Site Vice President Byron Nuclear Generating Station

Attachment:

Byron Station Unit 2 Steam Generator Eddy Current Inspection Report Cycle 15 Refueling Outage, Spring 2010 DJ E/PC/TLH/cy Exelon Generation Company, LLC BYRON STATION UNIT 2 4450 North German Church Road Byron, Illinois 61010 COMMERCIAL OPERATION:

August 21,1987 BYRON STATION UNIT 2 STEAM GENERATOR EDDY CURRENT INSPECTION REPORT REFUELING OUTAGE 15 April 2010 Exelon Generation Company, LLC 200 Exelon Way Kennett Square, PA 19348 Mailing Address 4300 Winfield Road Warrenville, IL 60555 Documentation Completed Date: July 15, 2010 Page 1 of 41 TABLE OF CONTENTS

1.0 INTRODUCTION

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3 2.0 SUM M ARY ................................................................................

4 3.0 CERTIFICATIONS

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5 3.1 Procedures/Examinations/Equipment

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5 3.2 Personnel

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6 4.0 EXAMINATION TECHNIQUE AND EXAMINATION SCOPE ..........

8 4.1 4.2 4.3 4.4 SG Tube Examination Techniques

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8 SG Tube Inspection Scope ..............................................

10 Recording of Examination Data .......................................

11 Witness and Verification of Examination

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11 5.0 EXAMINATION RESULTS ........................................................

12 5.1 Indications Found .............................................................

12 5.2 Other SG Inspection Results ...........................................

14 6.0 RESULTS OF CONDITION MONITORING

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16 6.1 AV B W ear ........................................................................

17 6.2 Pre-Heater Baffle/TSP Wear ............................................

17 6.3 Foreign Object Wear ......................................................

18 6.4 Primary-to-Secondary Leakage Assessment

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18 7.0 REPAIR

SUMMARY

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19 8.0 DOCUMENTATION

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20 9.0 FIGURES/TABLES/ATTACHMENTS

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20 Page 2 of 41

1.0 INTRODUCTION

Byron Station, Unit 2 operates with four (4) Westinghouse Model D-5 recirculating steam generators (SGs) in the four loop pressurized water reactor system that are ASME Section III Class 1. The steam generators contain ASME Section III Class 1 thermally treated Alloy-600 U-tubes that have a nominal outside diameter of 0.750 inches and a nominal thickness of 0.043 inches. The tubes are hydraulically expanded into the full depth of the tubesheet.

The tubes are supported by stainless steel quatrefoil support plates (TSP's)and chrome plated Alloy-600 anti-vibration bars (AVB's). See Figure A.1 for a diagram of the D-5 steam generator configuration.

Technical Specification (TS) 5.5.9.d provides the requirements for steam generator inspection frequencies.

The TS states that 100% of the Unit 2 tubes are to be inspected at sequential periods of 120, 90 and thereafter 60 effective full power months (EFPM).Additionally, inspect 50% of the tubes by the outage nearest the mid-point of the period and the remaining 50% by the refueling outage nearest the end of the period. No SG shall operate for more that 48 EFPM or two refueling outages without being inspected.

For Unit 2 during Refueling Outage 15 and subsequent operating cycle, if crack indications are found in any SG tube from 16.95 inches below the top of tubesheet on the hot leg side to 16.95 inches below the top of tubesheet on the cold leg side, then the next inspection for each SG for the degradation mechanism that caused the crack indication shall not exceed 24 EFPM or one fuel cycle (which ever is less). A degradation assessment shall be performed to determine the specific inspection scope and inspection methods with the objective of detecting flaws of any type that may be present along the length of the tube.During the start of Unit 2, Refueling Outage 15 Byron was at 16.32 EFPM within the first 60 EFPM period. Therefore, Byron's Refueling Outage 15 was the 1 st outage of 60 EFPM period.In accordance with Byron Station Technical Specification (TS) 3.4.19, "Steam Generator (SG) Tube Integrity", TS 5.5.9, "Steam Generator (SG) Program," and American Society of Mechanical Engineers (ASME) Boiler and Pressure Vessel (B&PV) Code Section XI 2001 Edition through the 2003 Addenda, IWB 2500-1, Examination Category B-Q, Item B1 6.20, SG eddy current examinations were performed during the Byron Station, Unit 2 Refueling Outage 15. All inspections were completed in accordance with T.S. 5.5.9.d.The inspections were performed consistent with the Electric Power Research Institute (EPRI) "Steam Generator Management Program: Pressurized Water Reactor Steam Generator Examination Guidelines, Revision 7" final report, October 2007, applicable interim guidance and Nuclear Energy Institute (NEI) 97-06, "Steam Generator Program Guidelines, Revision 2." The field inspection activities were conducted from April 22 through April 29, 2010, by Westinghouse Electric Company LLC. The following inspections were performed during this outage (TS 5.6.9.a):* 100% full-length bobbin coil eddy current examination of all SGs, excluding the row 1 & row 2 U-bend region which will be inspected with the 25% plus-point program.* 25% hot leg top of tubesheet

(+/- 3") Plus-Point in all SGs.* 25% hot leg tubesheet

(+3"/!-16.95")*

Plus-Point in all SGs.* 25% hot leg bulges > 18 Volts and over expansions

> 1.5 mils within the top 16.95"of the hot leg tubesheet, Plus-Point in all SGs.Page 3 of 41

  • 100% hot leg top of tubesheet

(+3" / -18")* Plus-Point of tubes in-service tubes identified as having increased residual stress Plus-Point in all SGs 100% of the hot leg dents/dings

> 3.0 volts, and wear indications of tubes in-service tubes identified as having increased residual stress Plus-Point in all SG's.* 25% pre-heater baffle plate expansion Plus-Point in all SG's.* 100% inspection of the "corner" pre-heater expansions for the 020 Plate6inthe three SG's not scheduled for visual inspection of the pre-heater region, Plus-Point.

  • 25% hot leg dents/dings

>3.0 volts Plus-Point in all SG's.* 25% row 1 and 2 U-bends Plus-Point in all SG's.* Visual inspection of 100% of the previously installed mechanical plugs and welded tube plugs in all SG's.* Visual inspection

/ F.O.S.A.R of the 02C pre-heater baffle plate in high flow regions of one SG**.In order to ensure this region is conservatively bounded this inspection depth will be increased to 18 inches below the top of tubesheet.

If indications are identified in the region between 16.95 and 18 inches below the top of tubesheet they will be evaluated in accordance with the Technical Specification requirements to determine if they can be left in service or require plugging.Visual inspection

/ FOSAR scope was expanded to include the 02C pre-heater plate high flow regions of all four SGs based on issues identified with the Start-up Feedwater Pump suction strainer gasket. (Refer to Section 5.2.7)2.0

SUMMARY

The guidance in Revision 7 of the EPRI .""Steam Generator Management Program: Pressurized Water Reactor Steam Generator Examination Guidelines" (i.e., EPRI Guidelines and applicable interim guidance) was used during this inspection.

A Degradation Assessment (DA) was performed prior to the inspection to ensure the proper EPRI Guidelines Appendix H, "Performance Demonstration for Eddy Current Examination," or Appendix I, "NDE System Measurement Uncertainties for Tube Integrity Assessments," qualified inspection techniques were used to detect any existing and potential modes of degradation.

Each technique was evaluated to ensure that the detection and sizing capabilities are applicable to the Byron Station, Unit 2 site-specific condition in accordance with Section 6.2 of the EPRI Guidelines.

All data analysts were qualified to Appendix G, "Qualification of Eddy Current Examination Personnel for Analysis of Eddy Current Examination Data," of the EPRI Guidelines (i.e., Qualified Data Analyst (QDA)). All data analyst and acquisition personnel satisfactorily completed site specific performance training and testing. An independent QDA process control review was employed in accordance with Section 6.3.3.5 of the EPRI Guidelines to randomly sample the data to ensure that the analysis resolution process was properly performed and that the field calls were properly reported.

An analysis feedback process in accordance with Section 6.3.3.6 of the EPRI Guidelines was implemented that required the data analysts to review their missed calls and overcalls on a daily basis.The modes of tube degradation found during the current inspection were anti-vibration bar (AVB) wear, pre-heater support plate wear, and foreign object wear. Pursuant to EPRI Guideline Section 3.7, "Classification of Sample Plan Results", the results of the Page 4 of 41 inspection were classified as inspection category C-1 for all for SG's (2A, 2B, 2C, & 2D).There were no scanning limitations during the examinations.

On October 16, 2009, the NRC approved Byron Technical Specification Amendment 166.This amendment allowed that during Byron Station, Unit 2, refueling outage fifteen, (i.e., B2R15), and subsequent operating cycle, tubes with service-induced flaws located greater than 16.95 inches below the top of tubesheet do not require plugging or repair. Tubes with service-induced flaws located in the portion of tube from the top of tubesheet to 16.95 inches below the top of tubesheet shall be plugged or repaired upon detection.

During the Byron Station, Unit 2, refueling outage fifteen, no service-induced flaws were identified within the portion of tube from the top of tubesheet to the inspection depth of 18 inches below the top of tubesheet.

As a result of the current eddy current inspections and response to conditions found, a total of one (1) tube was repaired by tube plugging due to foreign object wear. Table 2.1 provides the tube plugging levels for each SG. Table 2.2 provides the total number of tubes plugged in the current outage by degradation mode.TABLE 2.1 Equivalent Tube Plugging Level (TS 5.6.9.f & TS 5.6.9.h)7' SG A SG.B SG C "SG D TOTAL Tubes Previously Plugged 148 132 71 28 379 Tubes Plugged in 0 1 0 0 1 Refueling Outage 15 Total Tubes Plugged 148 133 71 28 380 Total Tubes Sleeved 0 0 0 0 0 Total Tubes Plugged (%)* 3.24% 2.91% 1.55% 0.61% 2,08%* Each SG contains 4570 Tubes TABLE 2.2 Tubes Plugged During Unit 2, Refueling Outage 15 (TS 5.6.9.e)Mode of Degradation SG A SG B SG C SIG D Total Anti-Vibration Bar Wear 0 0 0 0 0 Pre-Heater Support Plate Wear 0 0 0 0 0 Foreign Object Wear 0 1 0 0 1...ycle. 5 Plugging Totals 0. 0- 0 .3.0 CERTIFICATIONS 3.1 Procedures/Examinations/Equipment 3.1.1 The examination and evaluation procedures used during the eddy current inspection were approved by personnel qualified to ECT Level III in accordance with the 1984 Edition of the American Society for Nondestructive Testing (ASNT) Recommended Practice SNT-TC-1 A,"Personnel Qualification and Certification in Nondestructive Testing" and the 1991 and 1995 Editions of the American National Standards Institute Page 5 of 41 (ANSI)/ASNT CP-1 89, "ASNT Standard for Qualification and Certification of Nondestructive Testing Personnel." Exelon Generation Company, LLC (EGC) procedure ER-AP-335-039, "Multifrequency Eddy Current Data Acquisition of Steam Generator Tubing," Revision 7 and EGC procedure ER-AP-335-040, "Evaluation of Eddy Current Data for Steam Generator Tubing," Revision 5, were used for data acquisition and analysis.3.1.2 The examinations, equipment, procedures and personnel were in compliance with the following requirements:

The EGC and Westinghouse Quality Assurance Programs for Inservice Inspection; Byron Station Technical Specification 5.5.9; 2001 Edition through the 2003 Addenda of the ASME B&PV Code Section Xl, "Rules for Inservice Inspection of Nuclear Power Plant Components";

2001 Edition through the 2003 Addenda of the ASME B&PV Code Section V, "Nondestructive Examination";

Revision 7 of the EPRI Steam Generator Management Program: Pressurized Water Reactor Steam Generator Examination Guidelines; and NEI 97-06, "Steam Generator Program Guidelines," Revision 2.3.1.3 Certification packages for examiners, data analysts, and equipment are available at Byron Station. Table A.1 and Table A.2 contained in Attachment "A", lists all personnel who performed, supervised, or evaluated the data during the current inspection.

3.1.4 CoreStar International Corporation OMNI-200 T M Remote Data Acquisition Units (RDAUs) with Westinghouse ANSER 8.4.3 Revision 378 computer software was used to acquire the eddy current data. Analysis was performed with Westinghouse ANSER 8.4.3 Revision 381 computer software.3.1.5 The bobbin coil examinations were performed with a 0.610 inch diameter bobbin coil eddy current probe. For low row U-Bend tubing, 0.590 inch diameter probes were utilized in rows 3 & 4 due to difficulty using the 0.610 inch diameter probe.3.1.6 The top of tubesheet, tubesheet region, baffle plate expansion, and special interest rotating coil examinations were performed with a 0.610 inch diameter three coil rotating +PointTM probe that contained a plus-point coil, a 0.115 inch diameter pancake coil and a 0.080 inch diameter pancake coil.3.1.7 The rotating coil examinations in the U-Bend region were performed with a 0.580 inch diameter rotating +PointTM probe.3.2 Personnel 3.2.1 The personnel who performed the SG eddy current inspection data acquisition were qualified to ECT Level II in accordance with the 1984 Edition of the ASNT Recommended Practice SNT-TC-1A, "Personnel Qualification and Certification in Nondestructive Testing" or the 1995 Page 6 of 41 Edition of ANSI/ASNT CP-189, "ASNT Standard for Qualification and Certification of Nondestructive Testing Personnel." A list of certified eddy current personnel who performed data acquisition for the examination are contained in Table A.1 of Attachment A.3.2.2 The personnel who performed the SG eddy current data analysis were qualified to a minimum of ECT Level II, with special analysis training (i.e., Level I IA) in accordance with the 1984 Edition of the ASNT Recommended Practice SNT-TC-1 A, "Personnel Qualification and Certification in Nondestructive Testing" or the 1995 Edition of ANSI/ASNT CP-189, "ASNT Standard for Qualification and Certification of Nondestructive Testing Personnel." A list of certified eddy current personnel who performed data analysis for the examination are contained in Table A.2 of Attachment A.3.2.3 All SG eddy current data analysts were qualified in accordance with EPRI Guidelines Appendix G for QDA's. In addition, all data analysts were trained and tested in accordance with a site specific performance demonstration program in both the bobbin coil and +PointTM inspection data analysis.

Resolution analysts were also trained and tested specifically for the performance of data resolution.

All analysts were required to achieve a minimum probability of detection of 80% with a 90%minimum confidence level on practical examinations and a minimum score of 80% on the written test prior to analyzing data.3.2.4 All SG eddy current data acquisition personnel were trained and tested in accordance with a written site specific performance demonstration program. The data acquisition operators were required to achieve a written test score of 80% or greater prior to acquiring data.3.2.5 The SG eddy current analysis was subject to two independent analyses.Primary analysis of all data was performed by personnel from Master-Lee, NDE Technology, and Westinghouse.

Secondary analysis was performed by personnel from Anatec, Engineering Inspection Unlimited (E & I), Maintenance

& Inspection Services (M & IS), and WAVE (Young)Technology Services.

Discrepancies between the two parties required ECT Level III concurrence between both parties for the final resolution.

3.2.6 Two independent SG eddy current ECT Level III QDA's who were not part of the resolution team were employed to serve as process control reviewers, in accordance with EPRI Guidelines, Section 6.3.3. The Independent Level Ill QDA's randomly sampled the data to ensure the resolution process was properly performed and that the field calls were properly reported.

The Independent Level III QDA's also provided data acquisition oversight to ensure that the data collection process was in compliance with appropriate procedures, that all essential variables were set in accordance with the applicable Examination Technique Specification Sheet (ETSS) and to provide a data quality check of acquired data. The Independent Level III QDA's reported directly to the EGC Eddy Current Level III QDA.Page 7 of 41 3.2.7 Personnel from Westinghouse Electric Company and System-One performed data acquisition.

3.2.8 Real time data quality verifications were performed by personnel qualified as data analysts.4.0 EXAMINATION TECHNIQUE AND EXAMINATION SCOPE All eddy current examination techniques used are qualified in accordance with Appendix H or Appendix I of the EPRI PWR SG Examination Guidelines.

Each examination technique was evaluated to be applicable to the tubing and conditions of the Byron, Unit 2 SGs.4.1 SG Tube Examination Techniques (TS 5.6.9.c)4.1.1 The bobbin coil examinations were performed with a 0.610 inch diameter bobbin coil eddy current probe described in Section 3.1.5. For low row U-Bend regions rows 3 & 4 a 0.590 inch diameter bobbin probe was utilized due to difficulty traversing the U-bend region. The nominal probe inspection speed was 40 inches per second for the 0.610 inch diameter probe and 24 inches per second for the 0.590 inch diameter probe.Sufficient sampling rates were used to maintain a minimum of 33 samples per inch. The bobbin coil probes were operated at frequencies of 550 kHz, 300 kHz, 130 kHz, and 20 kHz operating in the differential and absolute test modes. In addition, suppression mixes were used to enhance the inspection.

These mixes were as follows: 550/130 kHz differential mix, a 300/130 kHz absolute mix, and a 550/300/130 kHz differential mix.4.1.2 The +PointTM examinations at top of tubesheet and pre-heater baffle plate expansion transition regions, and special interest locations were performed with a 0.610 inch diameter three coil +PointTM eddy current probe described in Section 3.1.6. The nominal probe speed was 0.8 inches per second and 0.1 inches per second for dents and dings. A sampling rate was used to maintain a minimum of 30 samples per inch in the circumferential direction and 25 samples per inch in the axial direction.

For dents and dings, a sampling rate was used to maintain a minimum of 30 samples per inch in the circumferential direction and 30 samples per inch in the axial direction.

The rotating probes were operated at frequencies of 300 kHz, 200 kHz, 100 kHz and 20 kHz. In addition to the four base frequencies, four process channels were used to display circumferential indications in the positive trace and to provide a suppression mix for the support plates.4.1.3 The +PointTM examinations in the U-bend regions were performed with a 0.580 inch diameter +PointTM probe described in Section 3.1.7. The nominal probe speed was 0.4 inches per second. A sampling rate was used to maintain a minimum of 30 samples per inch in the circumferential direction and 30 samples per inch in the axial direction.

The +PointTM probe was operated at frequencies of 400 kHz, 300 kHz, 150 kHz, and 20 kHz for Rows 1 and 2. For U-bend rows greater than row 2, the +PointM probe was operated at frequencies at 400kHz, 300 kHz, 100 kHz and 20 kHz. In addition to the four base frequencies, four process channels were Page 8 of 41 used to display circumferential indications in the positive trace and to provide a suppression mix for the support structures.

4.1.4 The eddy current calibration standards used for the bobbin coil and+PointT inspections met the requirements of Section 6.2.3 of the EPRI PWR Steam Generator Examination Guidelines, Revision 7 and Sections V and Xl of the ASME B&PV Code, 2001 Edition through the 2003 Addenda.4.1.5 The SG eddy current examination techniques used during this inspection were equivalent to the EPRI Appendix H or Appendix I techniques listed in Table 4.1. Each Examination Technique Specification Sheet (ETSS) was evaluated and determined to be applicable to the site conditions.

Table 4.1 EPRI Appendix H Techniques AVE3 /Flaws 96043.2 Rev. 1 Bobbin Single Land TSP Wear 96005.2 Rev. 9 Bobbin Freespan Pitting 128411 Rev. 2 Bobbin Axial ODSCC Detection at Drilled TSP 128413 Rev. 2 Bobbin Axial ODSCC Detection at Sludge Pile / Freespan /Broached TSP 96511.1 Rev. 16 +Point'M Axial and Circumferential PWSCC at Low Row U-Bend 96703.1 Rev. 17 +-PointT M Axial PWSCC at Dent/ Ding 96910.1 Rev. 10 +Point'M Tapered TSP Wear / Foreign Object Wear / Free Span Volumetric Indications 20510.1 Rev. 7 +Point'M Circumferential PWSCC at TTS Expansion

/ Tubesheet

/Pre-Heater Expansion

/ Dent / Ding /20511.1 Rev. 8 +Point'M Axial PWSCC at TTS Expansion

/ Tubesheet

/ Pre-Heater Expansion

/ Dent / Ding /21410.1 Rev. 6 +PointT M Circumferential ODSCC at TTS Expansion

/ Dent / Ding /Pre-Heater Expansion 21998.1 Rev. 4 +Point'M Foreign Object Wear /Freespan Flaw Sizing 22401.1 Rev. 4 +Point'M Axial ODSCC at Dent / Ding 128424 Rev. 2 +Point" M Axial ODSCC Detection at Sludge Pile Region / Drilled TSPs / Baffle Expansions 128425 Rev. 2 +Point'M Axial ODSCC Detection at Top of Tubesheet

/ Expansion Transition Regions / Broached TSPs / Dent / Ding 128431 Rev. 1 +PointT M Axial ODSCC Sizing at Sludge Pile Region / Drilled TSPs /Baffle Expansions 128432 Rev. 1 +Point'M Axial ODSCC Sizing at Top of Tubesheet

/ Expansion Transition Regions / Broached TSPs / Dent / Dings PWSCC -Primary Water Stress Corrosion Cracking ODSCC -Outer Diameter Stress Corrosion Cracking TSP -Tube Support Plate TTS -Top of Tubesheet AVB -Anti-Vibration Bar Page 9 of 41 4.2 SG Tube Inspection Scope (TS 5.6.9.a)4.2.1 100% of the tubes in all four SGs were inspected full length, with a bobbin coil probe as described in Section 4.1.1, with the exception of the Row 1 and 2 U-Bend region where a 25% sample was performed with a+PointTM probe as described in Section 4.1.3.4.2.2 25% of the tubes in all four SG's were inspected in the hot leg tubesheet region from 3 inches above the top of tubesheet exNpansion transition to 18 inches below the top of tubesheet with a +Point probe as described in Section 4.1.2. This population included 25% of the hot leg bulges > 18 volts and over expansions

> 1.5 mils within the top 16.95 inches of the hot leg tubesheet.

4.2.3 100% of the tubes identified in all four SG's as having increased residual stress (total of 40 tubes) were inspected full length in the hot leg tubesheet region from 3 inches above the top of tubesheet expansion transition to 18 inches below the top of tubesheet with a +PointTM probe as described in Section 4.1.2. Additionally, all hot leg dents/dings

> 3.0 volts, (total of 4 tubes) and any wear indications (total of 8 tubes)identified, were inspected with a +PointTM probe as described in Section 4.1.2.4.2.4 25% of the pre-heater baffle plate expansion transitions

(+/- 3 inches) in all SG's were inspected with a +PointTM probe at baffle plates 02C and 03C as described in Section 4.1.2. Additional pre-heater baffle plate expansion transitions

(+/- 3 inches) were inspected as diagnostic inspections in the 2A, 2B and 2D SGs with a +PointTM probe as described in Section 4.1.2, at baffle plate 02C in the outer peripheral tubes near the flow blocking region of the pre-heater.

This location has historically been known as an area where secondary side foreign objects may collect due to the flow conditions in the region. Note: Since the 2C SG was visually inspected at the baffle plate 02C location diagnostic inspection was not performed for the 2C SG.4.2.5 25% of the hot leg dents/dings greater than 3.0 volts based on bobbin inspection results were inspected

(+/- 3 inches) in all four SGs with a+PointTM probe as described in Section 4.1.2.4.2.6 25% of the Row 1 and Row 2 U-Bends in all four SGs were inspected from the top support plate on the hot leg side to the top support plate on the cold leg side with a +PointTM probe as described in Section 4.1.3.4.2.7 100% +PointTM inspection of all hot leg and cold leg tubesheet expansions transitions significantly outside the tubesheet, and pre-heater baffle plate expansions significantly above or below the baffle plate, as determined by review of bobbin eddy current data. Note: No expansion Page 10 of 41 transitions significantly outside the tubesheet or pre-heater baffle plate were identified during the B2R1 5 SG inspection.

4.2.8 Diagnostic examinations were conducted on the following types of indications and conditions using a rotating probe described in Section 4.1.2 and 4.1.3: o Non-quantifiable indications that were detected by the bobbin coil examination o Hot leg dents and dings described in Section 4.2.6.o Tubes in the vicinity of potential foreign objects in order to determine the extent of tubes potentially affected by the objects.o All expansion transitions and bulges that are significantly outside the top of tubesheet o Diagnostic examinations were also performed in the 40 tubes that were identified with potentially high residual stress in the areas of hot leg dents and dings 3-volts or greater and areas of AVB tube wear.A total of 611 tubes were inspected as a result of these diagnostic examinations.

4.2.9 Attachment B contains tube sheet maps indicating the tube inspections that were performed during Unit 2, Refueling Outage 15.4.3 Recording of Examination Data The raw eddy current data and analysis results were recorded on optical disks and hard drives. The data was then loaded into the Westinghouse Eddy Current Data Management System, "ST Max," version 1.25.02. This system was used to manage and track the proper examination of all tubes, provide accurate reporting of the results and generate the final eddy current report summaries.

4.4 Witness and Verification of Examination Eddy current inspections were witnessed and/or verified by the Authorized Nuclear Inservice Inspectors, Mr. Jeff Hendricks and Mr. Lee Malabanan, of the Hartford Steam Boiler of CT of Hartford Connecticut, Chicago Branch, 2443 Warrenville Road, Suite 500, Lisle, Illinois 60532-9871.

The Unit 2, Refueling Outage 15 ASME Form NIS-1, "Owners Report for Inservice Inspections," is contained in Attachment D.The Unit 2, Refueling Outage 15 ASME Form NIS-2, "Owner's Report for Repair/Replacement Activity" for steam generator mechanical tube plugging activities is contained in Attachment E.Page 11 of 41 5.0 EXAMINATION RESULTS 5.1 Indications Found (TS 5.6.9.b)5.1.1 Anti-Vibration Bar (AVB) Wear -Tube degradation was found during the Unit 2, Refueling Outage 15 bobbin coil examination in the U-bend region due to fretting of the Anti-Vibration Bars on the tube. A total of 925 indications in 531 tubes were reported.

The EPRI Appendix H bobbin coil examination technique 96004.3, Rev. 12 was utilized in this inspection for the depth sizing of AVB wear. The largest indication found was 39%Through Wall (TIW) and was found in tubes: Row 34-Col 14 in SG 2B and Row 41 -Col 86 in SG 2D. This indication was below the 40% TS plugging/repair limit and was left in-service.

Table 5.1.1 provides a summary of AVB Wear degradation.

Attachment C provides a listing of all tube flaws containing measurable through wall depth and inservice indications, including AVB wear.Table 5.1.1 Iutaae 15 A 20-39% TW 62 91 92 138 79 112 52 73>= 40% TW 0 0 0 0 0 0 0 0 TOTAL* 109 192 177 324 144 243 101 166* Tubes may contain multiple indications and categories.

may be identified in multiple size 5.1.2 Foreign Obiect Wear -Tube degradation was found that was attributed to foreign object wear during the Unit 2, Refueling Outage 15 inspection.

Five (5) indications of foreign object wear were found in four tubes. The indications ranged from 17% TW to 31% TW as measured by the EPRI Appendix H +PointTm qualified examination technique 21998.1 Rev. 4.Table 5.1.2 provides a summary of the tubes that contained foreign object wear during Unit 2, Refueling Outage 15.Table 5.1.2 k 15 Foreiar 2A 45 67 TSP 02C+2.88" 21%Obiect Removed-B2R1 1- No chanae in flaw size 2A 45 67 TSP 02C+1.18" 23% Object Removed-B2R1 1- No change in flaw size 2B 7 7 TSP 05H+0.67" 28% Location Not accessible-Tube Plugged/Stabilized 2B 29 26 TSP 01 H+0.58" 17% Visually inspected, No foreign object was found.Adjacent tubes plugged due to foreign object wear in previous inspection and object was removed.2D 24 65 TSP 02C+0.95" 31% Object Removed-B2R1 1- No change in flaw size Page 12 of 41 Three of the indications were associated with loose parts that were removed during the B2R1 1 outage and the tubes were allowed to remain inservice based on being below the Technical Specification plugging limit and foreign object being removed in B2R1 1. The affected tubes were Row 45-Col 67 in SG 2A (2-indications) and Row 24-Col 65 in SG 2D.As a result, of the Eddy Current inspection, evidence of two newly identified foreign object wear (one in-accessible foreign object was found). The first foreign object was a legacy object previously identified at TSP 05H in the 2B steam generator.

This object appears to have moved from its location from B2R14. As a result, one (1) affected tube (2B SG Row 7 Col 7) was plugged and stabilized.

Tube Row 7 Col 7 contained a 28% TW flaw. If the part does move, experience and evaluation with this object indicates that potential wear on in-service tubes would be well below the tube's structural limit.The second foreign object wear was also in the 2B steam generator but located at TSP 01 H+0.58" in tube Row 29, Col 26 and caused a 17% TW flaw with a Possible Loose Part (PLP) signal. In this case the foreign object was removed in a previous inspection and was visually verified during B2R15 that no object was identified at this tube location.

As a result, the affected tube was left in service.All newly identified indications of secondary side foreign object wear received additional

+PointTM examinations of the surrounding tubes to make certain that the wear region was adequately bounded.5.1.3 Pre-Heater Wear/TSP Wear -Fifteen (15) tubes were found that contained indications of pre-heater baffle plate/TSP wear. The depth of the pre-heater wear ranged from 5% TW to 39% TW as measured by the EPRI Appendix H qualified bobbin coil examination technique 96043.2, Rev. 1, for single land quatrefoil wear, 96004.3, Rev. 12, for drilled hole baffle plate wear and 96910.1, Rev. 10, for tapered wear. No tubes required plugging as a result of pre-heater baffle plate/TSP wear. Table 5.1.3 below provides a summary of tubes that contain pre-heater baffle plate/TSP wear.TABLE 5.1.3 Unit 2, Refueling Outage 15 Pre-heater Baffle Plate/TSP Wear Summary 28 15-91 06C 5% Drill Hole 96004.3 / 12 2B 47-75 02C 8% Drill Hole 96004.3 / 12 2C 48-35 02C 6% Drill Hole 96004.3/12 2D 48-63 05C 6% Drill Hole 96004.3 /12 2B 46-50 07C 21% Single Land 96043.2 / 1 2B 48-50 07C 39% Single Land 96043.2/1 Page 13 of 41 2B 48-53 07C 29%Sinale Land 96043.2/ 1 2B 48-54 070 31% Single Land 96043.2 /1 2B 48-54 07C 31% Single Land 96043.2 / 1 2B 48-59 07C 32% Single Land 96043.2/1 2B 49-52 07C 30% Single Land 96043.2/1 2B 49-63 070 32% Single Land 96043.2 / 1 2C 49-65 07C 25% Single Land 96043.2 / 1 2C 49-70 07C 38% Single Land 96043.2 / 1 2C 49 07C 22% Tapered 96910.1 / 10 2D 48-63 07C 24% Tapered 96910.1 /10 5.2 Other SG Inspection Results 5.2.1 Inspection of Tubes that Potentially Contain Higher Residual Stress: Forty (40) tubes were previously found in the Byron Unit 2 SGs as a result of a special screening to identify tubes that potentially could contain higher residual stress. This screening was performed in response to a fabrication anomaly that was found at another plant containing thermally treated Alloy 600 tubing that resulted in higher residual stress in certain tubes. Several of these tubes at other plants developed stress corrosion cracking in tubes that contained higher residual stress resulting from the fabrication anomaly.As a result, the following inspections were performed on the 40 tubes in the Byron Station Unit 2 SGs that potentially could contain higher residual stress: o Full Length bobbin coil inspection as described in Section 4.1.1 o Hot Leg Top of tubesheet

(+3 inches to 18 inches) with +PointM probe as described in Section 4.1.2 o All hot leg dents and dings 3.0 volts and greater with +Point probe as described in Section 4.1.2 (total of 8 tubes that potentially contain higher residual stress)o All areas of AVB wear (total of 4) with +PointTM probe as described in Section 4.1.2 As a result of these inspections, no indication of stress corrosion cracking was found in the forty (40) tubes that were previously determined to contain higher residual stress.Refer to Attachment B for detailed locations and sizing for all indications identified within the tubes identified as having potentially higher residual stress.5.2.2 Tubesheet Region Inspection Results: 25% of the tubes in all four SG's were inspected in the hot leg tubesheet region from 3 inches above the top of tubesheet expansion transition to Page 14 of 41 18 inches below the top of tubesheet with a +PointTM probe as described in Section 4.1.2. This population included 25% of the hot leg bulges > 18 volts and over expansions

> 1.5 mils within the top 16.95 inches of the hot leg tubesheet.

No indications of stress corrosion cracking were identified in this inspection scope During B2R1 5 all hot leg and cold leg tubes were monitored for tube slippage within the tubesheet region in accordance with industry developed guidance.

Tube slippage monitoring was performed to ensure tubes had not severed within the tubesheet in regions of the tubesheet that were not required to be inspected with +PointTM .No tubes were identified as having tube slippage during B2R15 (TS 5.6.9.1).Prior to the start of B2R15, historical eddy current data was reviewed for all tubesheet expansion transitions to locate any significant deviations in the distance from the top of the tubesheet to the bottom of the expansion transition (BET). No significant BET measurements were identified 5.2.3 Visual Inspection of Installed Tube Plugs: All previously installed welded plugs and previously installed mechanical plugs were visually inspected for signs of degradation and leakage. A total of 25 welded plugs and 797 mechanical plugs were visually inspected.

In addition, all plugs installed during this outage (i.e., 2 mechanical plugs in 1 tube) were also visually inspected and the installation parameters were reviewed for acceptable installation.

No anomalies were found.5.2.4 Attachment C contains tube lists with axial elevations of all tube flaws that contain measurable through wall depth and inservice indications that were found during the Unit 2, Refueling Outage 15 eddy current inspection (TS 5.6.9.d).5.2.5 No tubes were identified with hot leg or cold leg tubesheet expansions transitions significantly outside the tubesheet, additionally no pre-heater baffle plate expansions were identified significantly above or below the baffle plate, as determined by review of bobbin eddy current data.5.2.6 Steam Generator Steam Drum Inspections:

During Refueling Outage 13 visual inspection areas of erosion were found in the primary moisture separator components in each of the four SG's inspected.

The extent of the erosion was similar to the previous Refueling Outage 12 inspection results. Additional ultrasonic thickness measurements were taken of the eroded areas in each of the SG's. This was the second inspection of the SG 2B and the first inspection of the other three SG's. Continued erosion of the components was identified in the SG 2B, while no indications of through wall erosion were identified.

Similar extent of erosion was found in the other three SG's. An analysis was performed that determined that significant margin remained in the eroded areas prior to the erosion penetrating through wall and affecting SG performance or possibly generating loose parts. The erosion in the affected areas was not projected to penetrate through wall or produce Page 15 of 41 loose parts over the next two operating cycles after which the next inspection is currently planned.During B2R15 the 2A & 2B steam generator (SG) moisture separator region were to be re-inspected to verify component condition and to gather information such as UT thickness measurements to determine actual rate of degradation.

Due to visual inspection scope expansion into the three remaining pre-heaters, the steam drum inspections for the 2A and 2B were removed from B2R15 in order to allow more time to inspect the critical areas of the pre-heater region of the SG's that would have potential impact to tube structural integrity.

Based on Westinghouse's evaluation, the steam drum components are acceptable for another 18 months with no adverse impact to SG thermal performance, structural adequacy, and no loose parts generated.

The 2A and 2B SG steam drum inspections have been added to the B2R16 scope in order to provide additional monitoring to verify degradation growth rate and take corrective actions if they become necessary.

5.2.7 Pre-Heater Visual Inspection Expansion:

The Byron Unit 2 SGs contain a pre-heater section. The main feedwater enters the vessel in the pre-heater waterbox between the 2nd and 3 rd TSP on the cold leg side. The feed flow impinges on a target plate that disperses to the 2 nd TSP where the flow begins to travel through the baffle plate region. The area of highest flow is located on TSP 02C underneath the feedwater nozzle. Consequently, this area would be susceptible to foreign object wear. During visual inspections of the 2C SG pre-heater it was noted that a four (4) gasket material pieces were found and removed. At the same time, the Site found the Unit-2 Startup Feedwater strainer flexitallic gasket unwound in the downstream pipe. At the time of discovery, it was believed that some portion of gasket material was missing. Based on information available, it was decided that the remaining pre-heaters, in the 2A, 2B, and 2D SGs, would be visually inspected.

Only two small pieces of gasket material was found and removed in the 2A SG pre-heater.

The 2B and 2D SG pre-heaters contained no gasket material.6.0 RESULTS OF CONDITION MONITORING (TS 5.6.9.g)A condition monitoring assessment was performed for each inservice degradation mechanism found during the Unit 2, Refueling Outage 15 inspection.

The condition monitoring assessment was performed in accordance with TS 5.5.9.a and NEI 97-06 using the EPRI Steam Generator Integrity Assessment Guidelines, Revision 3. For each identified degradation mechanism, the as-found condition was compared to the appropriate performance criteria for tube structural integrity, accident induced leakage and operational leakage as defined in TS 5.5.9.b. For each damage mechanism a tube structural limit was determined to ensure that SG tube integrity would be maintained over the full range of normal operating conditions and design basis accidents.

This Page 16 of 41 includes retaining a safety factor of 3.0 against burst under normal steady state full power operation primary to secondary pressure differential and a safety factor of 1.4 against burst under the limiting design basis accident pressure differential.

For Byron Station Unit 2, the limiting case is 3 times operating differential pressure, which is significantly higher than the most limiting accident condition (steam line break)with a 1.4 safety factor. In the case of uniform wall thinning, the remaining tube wall can still meet the applicable stress limit during normal and accident loading conditions.

With only wear/fretting damage mechanisms and application of the uniform wall thinning structural limit that meets ASME Code minimum tube wall requirements and Draft Regulatory Guide 1.121 margins of safety, a tube will not leak at normal operating or accident conditions.

Satisfying the structural limit ensures that the SG tube integrity performance criteria for structural integrity, accident induced leakage and operational leakage will be maintained.

The as-found condition of each degradation mechanism found during Refueling Outage 15 was shown to meet the appropriate limiting structural integrity performance parameter with a probability of 0.95 at 50% confidence, including consideration of relevant uncertainties.

No tube pulls or in-situ pressure testing was performed during Unit 2, Refueling Outage 15.Sections 6.1 through 6.3 provide a summary of the condition monitoring assessment for each degradation mechanism.

Section 6.4 provides a primary to secondary leakage assessment as required by TS 5.6.9.j and TS 5.6.9.k.6.1 AVB Wear The largest AVB wear indication found during the Unit 2, Refueling Outage 15 inspection was 39% TW as measured by the EPRI Appendix H qualified technique 96004.3, Revision 12. Considering technique and analyst uncertainties, the largest AVB wear indication found is corrected to 46.31% TW with a 0.95 probability at 50% confidence.

This is well below the AVB wear structural limit of 71.4% TW.6.2 Pre-Heater Baffle/TSP Wear The largest pre-heater baffle plate drilled hole baffle wear indication found during the Unit 2, Refueling Outage 15 inspection was 8% TW as measured by the EPRI Appendix H qualified technique 96004.3, Revision 12. As described in the Unit 2, Refueling Outage 15 Appendix H Qualification document, the site validation of EPRI Appendix H techniques indicates that for pre-heater wear, the signal to noise ratio may impact the detection of pre-heater wear flaws that are less than 16% TW. Therefore, even though a signal of 8% TW was detected for tube wear at a drilled hole TSP location, it will be conservatively assumed that a 16% TW indication may not have been identified and will be evaluated for condition monitoring purposes.

Considering technique and analyst uncertainties, Page 17 of 41 the largest baffle plate wear indication found is corrected to 24.23% TW with a 0.95 probability at 50% confidence.

This is well below the 0.75-inch baffle plate wear structural limit of 65.6% TW.The largest single land TSP quatrefoil wear indication found during the Unit 2, Refueling Outage 15 inspection was 39% TW as measured by the EPRI Appendix H qualified technique 96043.2, Revision 1. Considering technique and analyst uncertainties, the largest single land TSP wear indication found is corrected to 43.66% TW with a 0.95 probability at 50% confidence.

This is below the TSP wear structural limit of 60.7% TW.The largest TSP tapered wear indication found during the Unit 2, Refueling Outage 15 inspection was 24% TW as measured by the EPRI Appendix H qualified technique 96910.1, Revision 10. Considering technique and analyst uncertainties, the largest tapered TSP wear indication found is corrected to 40.83% TW with a 0.95 probability at 50% confidence.

This is below the TSP wear structural limit of 60.7% TW.6.3 Foreign Object Wear The largest foreign object wear indication found during the Unit 2, Refueling Outage 15 inspection was 31 TW as measured by the EPRI Appendix H qualified technique 21998.1, Revision 4. Considering technique and analyst uncertainties, the largest baffle plate wear indication found is corrected to 48.98% TW with a 0.95 probability at 50% confidence.

This is below the 58.1%TW freespan uniform wall thinning of unlimited length structural limit.6.4 Primary-to-Secondary Leakage Assessment (TS 5.6.9.k and TS 5.6.9.1)Byron Unit 2 did not observe any operational primary to secondary leakage greater than three (3) gallons per day over the cycle preceding the inspection.

Chemistry sampling of the Steam Jet Air Ejector and liquid SG blowdown sample locations did not detect any SG operational leakage that was above the detection threshold.

Therefore, it was determined that there was no quantifiable SG operational leakage.Byron Technical Specification 5.6.9.k reporting requirement states: "For Unit 2 following completion of an inspection performed in Refueling Outage 15 (and any inspections performed in the subsequent operating cycle), the calculated accident induced leakage rate from the portion of the tubes below 16.95 inches from the top of the tubesheet for the most limiting accident in the most limiting SG. In addition, if the calculated accident induced leakage rate from the most limiting accident is less than 3.11 times the maximum operational primary to secondary leakage rate, the report should describe how it was determined, and" For the Condition Monitoring assessment, Byron Unit 2 did not observe any measurable SG primary to secondary operational leakage, the calculated Page 18 of 41 accident leakage rate from flaws below 16.95 inches from the top of the tubesheet would also not be quantifiable.

For the Operational Assessment evaluation, Byron Unit 2 did not observe any measurable SG primary to secondary operational leakage during Cycle .15.Further, no degradation that may lead to leakage was detected above 16.95 inches from the top of the tubesheet region during B2R15. This is evidenced by all degradation modes identified during B2R1 5 being below the tube uniform wall thinning structural limits of unlimited length as described in Sections 6.1, 6.2 and 6.3. Therefore, the entire allowable accident induced leakage (0.5 gallons per minute Room Temperature (gpmRT)) at Byron Unit 2 can be allocated to the tubesheet expansion region over the next cycle of operation.

Using the calculation basis above, the allowable normal accident induced leakage from the tubesheet expansion region is 0.16 gpmRT (0.5 gpmRT divided by 3.11), which is greater than the 150 gpdRT (0.104 gpmRT) Technical Specification (TS)3.4.13 primary to secondary leakage limit for Byron Unit 2. Therefore, no adjustment of the TS 3.4.13 limit for normal operating leakage is required, and accident conditional leakage limits are maintained by adherence to TS 3.4.13.7.0 REPAIR

SUMMARY

(TS 5.6.9.1)Repairs were conducted in accordance with ASME Section XI, 2001 Edition through the 2003 Addenda. The tube plugging was performed by Westinghouse using Alloy 690 mechanical tube plugging process in accordance with ASME Section XI IWA-4713, "Heat Exchanger Tube Plugging by Expansion." The repairs were performed in accordance with approved Westinghouse procedures.

Table 7.1 depicts the repairs conducted during Unit 2, Refueling Outage 15. Table 7.2 lists the tube locations that were repaired in Refueling Outage 15.TABLE 7.1 Summary of Unit 2, Refueling Outage 15 Tube Plugging ,,REP).. S PERFORMED SG A S G. B SG.C. SG D TOTAL]Tubes Plugged* 0 1 0 0 1 Tubes Stabilized 0 1 0 0 1* Includes number of tubes stabilized and plugged.TABLE 7.2-rl n,firinn II 11I I / I Hlug I YeS/HL 1 261/ I 5I1- UblN+U.bi" Location not accessible tube was plugged and stabilized.

Page 19 of 41 8.0 DOCUMENTATION All original optical disks have been provided to Exelon Generation Company and are maintained at Byron Station. The final data sheets and pertinent tube sheet plots are contained in the Westinghouse Final Outage Reports for Byron Station, Unit 2, Refueling Outage 15 Steam Generator Inspection.

The report is also maintained at Byron Station.9.0 FIG URESITABLES/ATTACHM ENTS Attachment A Table A.1 Data Acquisition Personnel Certification List Table A.2 Data Analysis Personnel Certification List Figure A.1 Westinghouse Model D-5 Tube Support Configuration Attachment B Attachment B.1 Hot Leg Bobbin Coil Inspection Scope Attachment B.2 Cold Leg Bobbin Coil Inspection Scope Attachment B.3 Hot Leg Top of Tubesheet

+Point Inspection Scope Attachment B.4 Row 1 and Row 2 +PointTM Inspection Scope Attachment B.5 Baffle Plate Expansion

+Point Inspection Scope Attachment B.6 Special Interest +PointTM Inspection Scope, Including Hot Leg Dents and Dings Attachment C Attachment C.1 2A Steam Generator Inservice Indications Attachment C.2 2B Steam Generator Inservice Indications Attachment C.3 2C Steam Generator Inservice Indications Attachment C.4 2D Steam Generator Inservice Indications Attachment C.5 Tube(s) Repaired During Unit 2, Refueling Outage 15 Attachment D ASME Form NIS-1, "Owners Report for Inservice Inspections" Attachment E ASME Form NIS-2, "Owners Report for Repair/Replacement Activity" for 2B SG Tube Plugging Page 20 of 41 ATTACHMENT A PERSONNEL CERTIFICATIONS WESTINGHOUSE MODEL D-5 TUBE SUPPORT CONFIGURATION Page 21 of 41 TABLE A.1 DATA ACQUISITION PERSONNEL CERTIFICATIONS No.Njge CoMpany ~ Lqel Q#1 Greenawalt, LS System One I No 2 Lopez, PA System One I No 3 Chiplaskey, GA Westinghouse II No 4 Conner, MC Westinghouse II No 5 Estel, JW Westinghouse II No 6 Evering, DP Westinghouse II No 7 Fore, SK Westinghouse II No 8 Gault, WH Westinghouse II No 9 Mantich, SM Westinghouse I No 10 McElhinny, JW Westinghouse II No 11 Parris, JR Westinghouse II No 12 Scott, AW Westinghouse II No 13 Shipley, EB Westinghouse II No 14 Vernon, DP Westinghouse II No 15 Yenerall, RL Westinghouse I-L No EPRI Guideline Appendix G Qualified Data Analyst Page 22 of 41 TABLE A.2 DATA ANALYSIS PERSONNEL CERTIFICATIONS No Name Cormpany Level QA 1 Chizmar, DA Anatec IIA QDA 2 Ingenthron, GJ Anatec IIA QDA 3 Lancaster, ME Anatec IIA QDA 4 Rogers, GF Anatec III QDA 5 Chapmon, GL E&I III QDA 6 Emley, LE E&I IIA QDA 7 Owens, SD E&I IIA QDA 8 Anderson, DA NDE Technology IIA QDA 9 Black, CR NDE Technology lilA QDA*10 Brown, ME NDE Technology IliA QDA*11 Brown, MW NDE Technology IliA QDA 12 Dye, JE NDE Technology IIA QDA 13 Haynes, WR NDE Technology lilA QDA 14 Lewis, CL NDE Technology IIA QDA 15 Lohner, ET NDE Technology lilA QDA 16 Looper, VR NDE Technology lilA QDA 17 Mast, MS NDE Technology lilA QDA 18 Siegel, RA NDE Technology IliA QDA 19 Thompson, KA NDE Technology IIA QDA 20 Wheeler, CK NDE Technology IliA QDA 21 Wrubleski, AJ NDE Technology IliA QDA 22 Zevchak, JJ NDE Technology IIA QDA 23 Dlabik, AJ Master-Lee IiA QDA 24 Galmoff, Troy Master-Lee lilA QDA 25 Lynn, VS Master-Lee lilA QDA 26 Rehak, RD Master-Lee IIA QDA 27 Tarr, GM Master-Lee IIA QDA 28 Tommarello, DJ Master-Lee IIA QDA 29 Enloe, RK M&IS IIA QDA 30 Shaffer, KM M&IS III QDA 31 Vincent, BF M&IS III QDA 32 Bentzen, JT WAVE IIA QDA 33 Carlson, CD WAVE IIA QDA 34 Chevalier, WD WAVE IIA QDA 35 Circosta, SA WAVE lilA QDA 36 Ethridge, GJ WAVE lilA QDA 37 Gomez, A WAVE IIA QDA 38 Hover, LD WAVE lilA QDA 39 Premich, S WAVE IIA QDA 40 Stewart, KD WAVE IIA QDA 41 Stocklin, PK WAVE IIA QDA 42 Maurer, RS Westinghouse III QDA 43 Pocratsky, RJ Westinghouse III QDA 44 Popovich, RA Westinghouse III QDA 45 Skirpan, JR Westinghouse III QDA* Independent Qualified Data Analyst Page 23 of 41 FIGURE A.1 Westinghouse Model D-5 Tube Support Configuration And-vlbrardon-bars Feedwator ni el Nezzlo Manway Page 24 of 41 ATTACHMENT B INSPECTION SCOPE Page 25 of 41 ATTACHMENT B.1 Hot Leg Bobbin Coil Inspection Scope Page 26 of 41

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4 gotý1 12 12 12 12 12 12 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 33 33 38 38 38 38 38 38 38 38 38 38 43 43 43 44 44 44 44 44 44 44 44 45 45 46 46 46 46 48 48 48 48 48 48 52 52 52 52 52 52 NOD 4,71 180 ONG 7.17 181 DNG 2.29 179 DNT.18 148 DFS 2.26 67 MBN 1.90 181 INR 1.88 255 INR 2.58 180 ONG NOF NDF.47 166 DFS 2.18 177 ONG 3.32 177 DNG.58 167 DFS 2.23 173 DNT 3.13 175 DNT 2.20 176 DNG 2.11 176 ONG NDF HOF 3.46 186 ONG NDF NOF NDF NDF NOD NOD NDF NDF NDF 7.64 75 PLP NOD NOD NOD NOD NOD NOD NOD NDF NDF NDF 17.12 78 PLP NOD NOD NOD 3.56 184 DNM 3.35 185 DNG NDF NDF NOD 3.45 180 DNG 2.67 180 DNT 2.44 182 ONT 2.47 183 DNT NDF 3.81 186 DNG.24 148 DFS NDF NDF 3.53 179 ONT NDF P1 P1 P1 1 6 P1 6 P1 2 2 1 P1 P1 1 P1 P1 P1 P1 2 2 ION 1OH 11H 19C 09C 09C 69C 07C ItH l6H leH IOH 1H IH 11H 11H 16C 1OH ION 1 IH 40.92 41.89.17 35.85 11.24 12.16 12.18 38.20 40.92 41.89 36.65 37.74 39.80 40.83-.70-.50 38.26 38.52 39.80-.56 P1 I1H 24.52 2 16H 24.52 2 TSH -11.37 2 TSH -11.22 2 TSH -10.55 2 2 2 11 TSH TSH TSH 92C-12.00-8.88-7.56.31 TSH TSH .610 ZPSNM 11 HI TEC TEH ,616 SBACC 77 HI TEC TEH .610 SBACC 77 HI TEC TEN .610 SBACC 77 HI TEC TEH .618 SBACC 77 HI TEC TEN .610 SBACC 77 HI TEC TEH .618 SBACC 77 HI TEC TEN .610 SBACC 77 HI TEC TEH .610 SBACC 77 HI ION 11H .610 ZPSHM 165 HI ION 11H .610 ZPSNM 105 HI I TEC TEN .610 TBATC 61 HI TEC TEH .610 TBATC 61 HI TEC TEH .610 TBATC 61 HJ TEC TEN .616 TBATC 61 HI TEC TEN .610 TBATC 61 HI TEC TEH .610 TBATC 61 HI TEC TEH .610 TBATC 61 HI TEC TEN .610 TBATC 61 HJ 1OH 11N .610 ZPSNM 105 HI ISH IIH .610 ZPSHM 105 HI I TEC TEH .618 NBAZC 75 HI ION 11H .610 ZPSNM 105 HI I TSH TSH .610 ZPSNM 11 HI TSH TSH .618 ZPSNHM 11 HI TSH TSH .610 ZPSNM 11 HI 02C 02C .618 ZPSMM 14 Cl TEC TEH .610 SBACC 77 HI I TSH TSH .610 ZPSNM 11 HI TSH TSH .616 ZPSHM 11 HI TSH TSH .610 ZPSNM 11 HI B2C 02C .618 ZPSNM 16 CI TEC TEH .610 SBACC 77 HI I TSH TSH .610 ZPSNM 11 HI 92C 62C .610 ZPSNM 16 CI TEC TEN .610 SBACC 59 HI I TSH TSH .610 ZPSNM 11 HI 62C 82C .618 ZPSNM 14 Cl TEC TEN .616 TBATC 57 HI I TSH TSH .610 ZPSNM 11 HI TSH TSH .618 ZPSBA 11 HI TSH TSH .610 ZPSNA 57 HI B2C 92C .619 ZPSNM 16 Cl TEC TEH .610 TBATC 57 HI I 72C e2C .610 ZPSNM 16 CI TEC TEH .610 SBACC 59 HI I TEC TEN .610 TBATC 57 HI TEC TEH .610 TBATC 57 HJ E7H T8H .610 ZPSNA 105 HI 07H 68H .616 ZPSNM 165 HI I TSH TSH .610 ZPSNB 11 HI TEC TEH .610 SBACC 31 HI TEC TEH .610 SBACC 31 HI TEC TEH .610 SBACC 31 HI TEC TEH .610 SBACC 31 HI 07H 18H .610 ZPSNM 105 HI I TEC TEC .610 NBAZC 93 HI TEC TEH .610 NBAZC 93 HI 03H 05H .610 ZPSNM 105 HI 83H 05H .610 ZPSNM 107 NJ I TEC TEH .610 SBACC 31 HI I1H 11H .610 ZPSNB 105 HI 11C TEC .610 NBAZC 4 Cl 02C 02C .610 ZPSNN 14 Cl LIN TEH .610 SBACC 27 HI I 11C TEC .610 SBACC 2 C1 2 TSH 2 TSH 2 TSH 11 62C-13.19-16.86-5.51.34 P1 07H P1 07H 2 67H 2 B7H P1 07H P1 1OH P1 11C P1 16C 2 07H P1 03H 1 10C 2 B3H 2 03H 10.34 11.00 10.34 11.66 17.26.36-.25.74 17.26 23.60 37.74 23.00 23.60 P1 11H -.52 2 11H -.52 59 NDD 59 NDD 59 3.03 55 MBM 6 05H 1.96 3 59 NOD... .4 ... -.. .. ...- -.. 4. ... 4 .. ... .4 ... -.. .. ...4- -.. ....4--- --. .. ..- -.. ..+- --...- -.. ... .4 ....-- -.. ...-+ -...4 --ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI---------------------------------------------------------

SG -A B2R15 Special Interest +Point Inspection Results Byron 2 B2R15 CBE 28180401 94/29/2019 83:57:34 I ROW COL VOLTS BEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENOT POIA PTYPE CAL Li... ...-----------.----

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1 59 NOD 92C 82C .610 ZPSNN 14 Ci 1 3 59 NOD lIC TEH .590 SBUCC 85 HI 1 4 59 .23 356 INR P1 02C 31.25 11C TEC .610 NBAZC 4 C!4 59 NOD 02C 02C .610 ZPSNM 14 Ci I 4 59 NOD 11C TEN .599 SBUCC 83 HI I I 2 68 NOD IIC TEC .610 NBAZC 4 Ci 1 2 60 NOD O2C O2C .610 ZPSNM 14 C1 1 2 68 NOD 11H TEH .610 SBACC 25 HJ 3 60 NOD 11C TEC .610 SBACC 2 Ci 3 60 NDD 02C 02C .610 ZPSNM 14 CI 3 68 NOD 11C TEH .590 SBUCC 85 Ni 4 60 NOD 11C TEC .610 NBAZC 4 Ci 4 60 NOD 02C 02C .618 ZPSNM 14 C1 4 60 NOD 11C TEN .590 SBUCC 83 Hi 1 16 68 3.88 179 DNG P1 10H 41.57 TEC TEH .610 SBACC 25 NI 1 16 60 NOF 2 lam 41.57 ION 11N .610 ZPSNM 91 Hi 18 60 NDF 2 TSH -4.55 TSH TSH .610 ZPSNM 13 Hi 18 68 3.88 185 ONG P1 87H 35.75 TEC TEH .618 SBACC 29 Hi I18 60 NDF 2 07H 35.75 97H 88H .610 ZPSNM 91 H" I I 2 61 NOD IIC TEC .610 NBAZC 4 CI 2 61 NOD 92C 82C .610 ZPSNM 14 Ci 2 61 NOD 11H TEN .610 SBACC 27 HI 3 61 NOD 11C TEC .618 SBACC 2 C1 3 61 NDD 82C 82C .610 ZPSNM 14 Ci 3 61 NOD 11C TEH .698 SBUCC 85 Hi 4 61 NOD I1C TEC .618 NBAZC 4 Ci 4 61 NDD 82C 92C .610 ZPSNN 14 Ci 4 61 NDO 1IC TEH .598 SBUCC 83 Hi 1 45 67 NDOD TSH TSH .618 ZPSNM 11 Hi 45 67 .12 183 VOL P4 02C 1.17 92C 03C .618 ZPSNM 12 Ci 45 67 .28 279 PCT 23 2 02C 1.18 .31 .37 56 82C 03C .610 ZPSNM 12 C, 1 45 67 .17 86 PCT 21 2 02C 2.88 .31 .19 29 82C 83C .618 ZPSNM 12 C, 1 45 67 .19 88 PCT 22 2 82C 2.91 .31 .39 59 02C 03C .618 ZPSNM 12 Ci 1 45 67 .15 85 VOL P4 82C 2.92 82C 83C .610 ZPSNM 12 Ci 1 45 67 .86 155 OFS 1 02C 1.24 TEC TEH .618 SBACC 43 Hi 1 45 67 .23 156 DFS I 02C 3.15 TEC TEH .618 SBACC 43 Hi I I 1 1 71 3.33 177 ONT P1 11C .74 11C TEC .618 SBACC 2 Ci 1 71 11.77 179 DNT P1 87C -.22 11C TEC .618 SBACC 2 Ci 1 71 8.74 180 ONT P1 07C .74 11C TEC .610 SBACC 2 Ci 1 1 71 3.09 175 DNT P1 1IH -.07 11H TEN .610 SBACC 27 Hi 1 71 NOF 2 11H -.07 11H 11H .618 ZPSHM 91 Hi 1 24 73 3.85 178 DNT P1 88H .66 TEC TEN .618 SBACC 33 NI 1 24 73 2.30 177 ONG P1 TSC 5.57 TEC TEN .618 SBACC 33 Hi 1 24 73 NDF 2 88H .66 08H 1 8H .618 ZPSNM 183 Ni 46 74 3.01 187 DNG P1 09H 16.34 TEC TEN .618 TBATC 41 Ni 46 74 NDF 2 09H 16.34 09H ION .610 ZPSNM 103 Ni 21 75 NDOD 02C 02C .618 ZPSNH 14 Ci 21 75 3.19 175 ONG P1 AVI 3.41 TEC TEN .610 SBACC 35 Ni 22 75 18.37 77 PLP 11 02C .48 02C 02C .610 ZPSNM 16 Ci 22 75 NDD TEC TEN .610 SBACC 37 HN 21 76 NOD 82C 02C .610 ZPSNN 12 Ci 21 76 NDD TEC TEN .618 SBACC 39 HN I I 22 76 NDD 02C 92C .618 ZPSNM 12 Ci 22 76 NDD TSH TSH .618 ZPSNN 21 NI 22 76 NDO TEC TEN .618 SBACC 39 NI 9 79 3.88 189 DNG P1 ION 33.44 TEC TEN .610 SBACC 37 Ni 9 79 NDF 2 18N 33.44 ISH 11H .610 ZPSNM 91 Hi 1 36 79 3.15 180 ONG P1 IOH 39.97 TEC TEN .610 SBACC 37 NH 36 79 3.11 79 MOM 6 07C 23.71 TEC TEN .610 SBACC 37 NH 36 79 2.45 73 MBM 6 O5C 3.62 TEC TEN .610 SBACC 37 NJ 1 36 79 2.72 74 NBM 6 03C 12.10 TEC TEN .610 SBACC 37 NJ+ ..+.. .... ..+.. ..+.. .-----------..--

..----+ ... +...... +..... +..... ...+ ..----------

+.....-----.+-......+-......ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEUT ENDT POIA PTYPE CAL Li 3-- -----------------------

-- --------------------


S... .... ..oa iiLeresx +rotnt Lnspection Results Byron 2 B2R15 CBE 26160401 64/29/2610 63:57:34+.. ..+.....+..+...+..

...÷.. .....----------------

---+..---4....+--+.-.....+......-.+....................------

4----...--÷ ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI--------------- ---4---4--------------------------------+-----

+ -----4-- --- 4----------4----

j I 36 79 NOF 2 1OH 39.97 iSH 11H .616 ZPSNI4 103 HI I 38 79 3.56 186 ONG P1 16L1 46.17 TEC TEN .610 SBACC 37 HJ 38 79 4.22 177 DNT PI 11H -.63 TEC TEH .610 SBACC 37 HI 38 79- 10.03 183 DNT P1 11H .39 TEC TEH .610 SBACC 37 HI 38 79 NOF 2 16H 46.17 16H 111 .616 ZPSNM 163 HI 38 79 NOF 2 11H -.63 18H 11H .610 ZPSNM4 163 HI 38 79 NOF 2 11H .39 16H 111 .610 ZPSNM 103 HI 9 82 3.56 175 ONG P1 11H .83 TEC TEN .616 SBACC 39 HI 9 82 NOF 2 111 .83 111 11H .610 ZPSNM 105 HI 37 84 NOD TSH TSH .610 ZPSNM 19 NI 37 84 3.31 176 DNT P1 LIH .45 TEC TEH .616 SBACC 43 HI 37 84 NOF 2 11H ,45 11H 11H .616 ZPSNN 103 HI 31 86 3.25 183 0NG P1 TSH 4.19 TEC TEH .610 TBATC 41 HI 31 86 NDF 2 TSH 4.19 TSH 61 .616 ZPSNM 103 HI 44 88 NOD 92C 02C .610 ZPSNN 14 CI 44 88 .86 6 PCT 13 P2 AV2 .06 TEC TEN .610 TBATC 41 HI 44 88 1.84 0 PCT 23 P2 AV3 -.16 TEC TEH .610 TBATC 41 HI 44 88 1.99 6 PCI 24 P2 AV4 -.39 TEC TEH .610 TBATC 41 NI 43 89 NDOD 2C 02C .610 ZPSNN 16 CI 43 89 ODO TEC TEN .61B SBACC 47 HI 44 89 N0D 92C 02C .610 ZPSNM 16 CI 44 89 OD0 TEC TEH .610 SBACC 47 HI 43 90 NOD 02C 02C .610 ZPSNN 16 CI 43 90 OD0 TEC TEH .610 TBATC 45 HI 44 96 ROD 02C 02C .610 ZPSNM 16 CI 44 90 1.99 177 INR P1 1s" .68 TEC TEN .616 TBATC 45 HI 44 90 1.86 0 PCT 24 P2 AV2 .0B TEC TEH .610 TBATC 45 HI 44 90 3.73 B PCT 36 P2 AV3 .06 TEC TEH .610 TBATC 45 HI 44 90 1.96 174 INR P1 06C 13.62 TEC TEH .610 TBATC 45 HI 14 91 NOD TSH TSH .610 ZPSNM 17 HI 14 91 3.59 180 0NG P1 0914 39.15 TEC TEN .610 SBACC 55 HI I 14 91 NOB 2 69H 39.15 69H 16H .616 ZPSNM 103 HI I 43 91 OD 02C 02C .610 ZPSNM 16 CI 43 91 NOD TSH TSH .610 ZPSNM 19 HI 43 91 2.31 81 MOM 6 05H 2.65 TEC TEH .610 SBACC 47 HI 43 91 .64 67 OSS P1 07H -.08 TEC TEH .610 SBACC 47 HJ 43 91 3.76 183 0NG P1 67H 6.98 TEC TEH .610 SBACC 47 HJ 43 91 2.44 184 ONG P1 68H 26.84 TEC TEH .610 SBACC 47 HI 43 91 2.15 169 ONT P1 11H -.69 TEC TEN .610 SBACC 47 NJ 43 91 3.46 174 DNT P1 11H .34 TEC TEH .610 SBACC 47 HI 43 91 NOF 2 67H 6.98 07H 81H .610 ZPSNM 103 HI I I 11 92 NOD TSH TSH .610 ZPSNM 19 HI 11 92 .24 125 DFS 1 16H 41.89 TEC TEH .610 TBATC 53 HI 11 92 3.75 172 0NT P1 111 -.44 TEC TEH .610 TBATC 53 HI 11 92 NOF 2 111 -.44 111 111 .610 ZPSNN 165 HI 1 93 OD0 11C TEC .610 SBACC 2 CI 1 93 3.28 174 DNT P1 05H .02 11 TEH .610 TBATC 49 HJ 1 93 2.38 175 ONG PI 05H 1.09 114 TEN .618 TBATC 49 HI 1 93 NOF 2 05H .02 65H 05H .610 ZPSNM 105 HI 1 97 ND0 11C TEC .610 NBAZC 8 CI I 1 97 3.10 178 DNT P1 05H .07 11H TEH .610 TBATC 49 HI I 1 97 3.54 178 ONG P1 05H 1.15 11H TEN .610 TBATC 49 HN I 1 97 NOF 2 65H .07 95H 51H .610 ZPSNM 105 NI 1 1 97 NOF 2 05H 1.15 65H 65H .610 ZPSNM 105 NI 27 100 R0D TSH TSH .616 ZPSNM 19 HJ 27 160 2.03 179 ONG P1 09H 9.16 TEC TER .610 TBATC 45 NJ 27. 160 3.33 179 0NG P1 69H 16.18 TEC TEN .610 TBATC 45 NJ 27 100 4.05 179 ONG P1 1ON 41.54 TEC TEN .610 TBATC 45 HI 27 100 NDF 2 09H 16.18 69H 10H .610 ZPSNM 103 HI 26 103 4.32 181 ONG P1 80c 5.60 TEC TEN .616 SBACC 51 HJ 26 103 3.30 142 DFS 1 03C 9.61 TEC TEN .610 SBACC 51 HI 26 103 NOD TSH TSH .616 ZPSNM 169 HI I I 27 163 NOD TEC TEN .610 SBACC 51 HI--------------------------------------

44 + + 4"-+---+---+------------------~


4---------

I ROW COL VOLTS DEG IN0 PER CNN LOCH INCH1 INCH2 I CRLEN CRWI0 CEG BEGT ENOT POIA PTYPE CAL LI------------------------------

+ --- ------------


-4 ST Max

" .s0,, st, +roinX Lnspectton Results Byron 2 B2R15 CBE 20166461 64/29/2010 63:57:34-------------

+ ----------------------------------------+---4---------------------


+------I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI----- ...-.----------

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------- ----01 01 27 163 NOD 103 103 13 183 103 103 163 103 103 164 104 164 104 164 164 164 164 164 104 104 164 104 164 104 167 107 107 107 109 169 109 109 169 109 109 169 169 109 109 109 109 169 NOD NDD NOD NOD 1.39 0 PCT NDD 1.36 0 PCT 1.56 6 PCT NOD NDD NOD 1.39 0 PCT NDD.84 6 PCT NDD.98 6 PCT NDD.17 162 DFS.83 0 PCT NDD.82 186 INR 3.46 181 DNT 4.76 184 DNG NDD 3.14 175 ONT.81 6 PCT 1.34 0 PCT NDD HOF NOF.82 6 PCT 1.85 359 INR 1.89 180 INR 1.57 184 INR 1.69 183 INR.32 261 VOL NDF.77 0 PCT 1.46 6 PCT 3.10 187 DNT.36 161 VOL.32 118 VOL 23 P2 AV2 23 P2 AV2 24 P2 AV3 18 P2 AV2 12 P2 AV4 14 P2 AV3.17.so.06-.23.06-.26 1 IOH 39.60 12 P2 AV2 .00 P1 AV3 16.76 P1 AV4 .14 PI 9IC 2.99 TSH TSH .610 ZPSNM 169 HI I TEC TEH .610 SBACC 51 HI TSH TSH .616 ZPSNM 169 HI I TEC TEH .616 SBACC 51 HI TSH TSH .616 ZPSNM 169 HI I TEC TEH .610 SBACC 51 HI TSH TSH .610 ZPSNM 169 HI I TEC TEH .616 SBACC 51 HN TEC TEH .616 SBACC 51 HI TSH TSH .618 ZPSNN 109 HI I TEC TEH .610 TBATC 49 HI TSH TSH .610 ZPSNM 109 HI I TEC TEH .616 TBATC 49 HI TSH TSH .616 ZPSNM 109 HI I TEC TEH .610 TBATC 49 HI TSH TSH .610 ZPSNN 109 HI I TEC TEH .616 TBATC 49 HI TSH TSH .610 ZPSNM 109 HI I TEC TEH .610 TBATC 49 HI TEC TEH .610 TBATC 49 HI TSH TSH .618 ZPSNN 169 HI I TEC TEH .610 TBATC 49 HI TEC TEH .610 TBATC 49 HI TEC TEH .610 TBATC 49 HI TSH TSH .610 ZPSNM 109 HI TEC TEH .610 SBACC 51 HI TEC TEH .610 SBACC 51 HI TEC TEH .610 SBACC 51 HI TSH TSH .610 ZPSNC 109 H TSH TSH .619 ZPSN4 19 HI TSH TSH .616 ZPSNM 19 HI TEC TEN .610 SBACC 51 NI TEC TEN .610 SBACC 51 HI TEC TEH .610 SBACC 51 HI TEC TEN .610 SBACC 51 HI TEC TEA .615 SBACC 51 HI AV4 AV4 .588 ZPUN4 101 HI I TSH TSH .610 ZPSNM 17 NJ TEC TEH .610 TBATC 49 HI TEC TEH .610 TBATC 49 HI TEC TEN .610 TBATC 49 NJ AV1 AV1 ,580 ZPUN4 101 HJ AV4 AV4 .580 ZPUN4 101 NJ PI IIH 16 P2 AV2 22 P2 AV3 2 2 16 P2 P1 P1 P1 P1 P4 2 11 P2 18 P2 P1 P4 P4 TSH TSH AV4 06C 05C 65C 95C AV4 TSH AVI AV4 AV4 AVI AV4.62.60.00-15.52-18.23.00 4.25-.19 2.76 3.91.86-16.26-.17-.32-.14-,03-.83.....----

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--+--------1le 2 NOD TEC TEH .610 TBATC 19 HI 10 2 NDD 05H 95H .610 ZPSNM 103 HI 11 2 3.96 75' MBN 6 02C 14.16 TEC TEH .610 TBATC 19 HI 11 2 NOD 65H 65H .610 ZPSN4 103 HI 12 2 NOD TEC TEH .610 TBATC 19 HI 12 2 NDD 05H 05H .610 ZPSNM 103 HI I I 7 3 NDD TSH TSH .610 ZPSNM 7 HI 7 3 NOD TEC TEH .610 TBATC 17 HI 7 3 NDD 05H 05H .610 ZPSNM 103 HJ 8 3 NDD TSH TSH .610 ZPSNM 7 HI 8 3 NOD TEC TEH .610 TBATC 17 HI 8 3 NDD 05H 05H .610 ZPSNM 101 HJ 9 3 NDD TSH TSH .610 ZPSNM 7 HI 9 3 1.94 182 INR P1 05H 6.62 TEC TEH .610 TBATC 17 HI 9 3 NDD 05H 05H .610 ZPSNM 103 HI I I 10 3 NDD TSH TSH .610. ZPSNM 7 HJ i10 3 NOD TEC TEH .610 TBATC 19 HI 10 3 NOD 05H 05H .610 ZPSNM 101 HI 11 3 NDD TSH TSH .610 ZPSNM 7 HI 11 3 NOD TEC TEH .610 TBATC 17 HI 11 3 NDD OSH 05H .610 ZPSNM 101 Hi I 1I 1 12 3 NOF 2 TSH -2.95 TSH TSH .610 ZPSNM 7 HJ I12 3 NOF 2 TSH -2.83 TSH TSH .610 ZPSNM 7 HI I 12 3 8.60 76 MBN 6 07C 37.44 TEC TEN .610 TBATC 19 HI I 12 3 8.40 181 ONG P1 07C 37.88 TEC TEN .610 TBATC 19 HI 1 12 3 NDD 05H 05H .610 ZPSNM 101 HI 13 3 NOD TSH TSH .610 ZPSNM 7 HI 13 3 4.02 174 ONG P1 04C 10.27 TEC TEN .610 TBATC 19 HI 13 3 NDD 05H 05H .610 ZPSNM 101 HI 14 3 NDD TSH TSH .610 ZPSNM 9 HI 14 3 NOD TEC TEH .610 TBATC 19 HI 14 3 NOD 05H 05H .610 ZPSNN 101 HI 15 3 NOD TSH TSH .610 ZPSNM 9 HI 15 3 NDD TEC TEH .610 TBATC 19 HI 15 3 NDD 05H O5H .610 ZPSNM 101 HI I I 7 4 NDD TSH TSH .610 ZPSNM 5 HI 7 4 NOD TEC TEH .610 TBATC 19 HI 7 4 NOD 0 55H 5H .610 ZPSNM 103 HI 8 4 NDD TSH TSH .610 ZPSNN 5 HI 8 4 NOD TEC TEH .610 TBATC 19 HI 8 4 NDD 05H 05H .610 ZPSNM 101 HI I I 9 4 NDD TSH TSH .610 ZPSNM 5 HI 9 4 NOD TEC TEN .610 TBATC 17 HI 9 4 NDOD 05H 05H .610 ZPSNN 103 HI 10 4 NOD TSH TSH .610 ZPSNM 5 HI 10 4 NOD TEC TEH .610 TBATC 19 HI 10 4 NDD OSH 05H .610 ZPSNM 101 HI I I 11 4 NDD TSH TSH .610 ZPSNM 5 HI 11 4 NOD TEC TEN .610 TBATC 17 HI 11 4 NDD 05H 05H .610 ZPSNM 101 HI 14 4 NDD TSH TSH .610 ZPSNN 11 HI 14 4 NOO TEC TEN .610 TBATC 19 HI 14 4 NDD 05H 05H .610 ZPSNM 103 HI 15 4 NDD TSH TSH .610 ZPSNM 11 HI 15 4 2.11 171 ONG P1 19C 12.91 TEC TEN .610 TBATC 19 HI 15 4 .51 158 DFS 1 19C 14.83 TEC TEH .610 TBATC 19 HI 15 4 NDD 05H 05H .610 ZPSNN 103 HI 16 4 NDD TSH TSH .610 ZPSNM 11 HJ 16 4 NDD TEC TEH .610 TBATC 17 HI I 16 4 NOD 05H 05H .610 ZPSNM 101 HI I I--------------------------------

+------------,----+------4-----4---4.- -----4----+-----4


I ROW COL VOLTS DEG INO PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI------ ----------------------


----- ---- I ------------

I ST Max

-m%~ 1113pOcti~Of tesults Byron 2 B2R15 CBE 28100401 0412812010 21:28:11.---- -- * -----------------------------------------

+-. .+----- ------+------+-

4- .-------------

ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI...+.. .....+.. ..+.. .. ..÷....---------------

-....... -----....

+....-...+-.-------.


..------+- 4-+.... .-- 4.--, 17 4 NOD TSH TSH .610 ZPSNM 9 HI 17 4 NOD TEC TEN .610 TBATC 17 HI 17 4 NOD 05H 05H .610 ZPSNM 101 HI 4 5 NOD IIC TEC .610 SBACC 2 CI 4 5 NDD 11C TEN .590 SBUCC 75 HI 4 5 NDD 85H 05H .610 ZPSNM 101 NI 5 5 NOD TEC TEN .610 TBATC 17 HI 5 5 NDD 05H 05H .610 ZPSNN 103 NI 6 5 NDD TEC TEN .610 TBATC 17 NJ 6 5 NOD 05H 05H .610 ZPSNM 101 HI 7 5 NDD TEC TEH .610 TBATC 17 NJ 7 5 NOD 05H 05H .610 ZPSHM 103 NI 8 5 NOD TEC TEN .610 TBATC 17 NI 8 5 NOD 05H 05H .610 ZPSNM 101 NI 11 5 3.43 75 MBM 6 08H 32.58 TEC TEN .610 TBATC 17 HI 11 5 NOD 05H 05H .610 ZPSNM 101 HI 16 5 NOD TEC TEN .610 TBATC 17 NI 16 5 NOD 05H 05H .610 ZPSNM 101 NI 17 5 NOD TEC TEN .610 TBATC 19 HI 17 5 NOD 05H 05H .610 ZPSNM 103 NJ 4 6 NOD 11C TEC .618 SBACC 2 CI 4 6 NOD 11C TEN .590 SBUCC 75 HI 4 6 NOD 05H 05H .610 ZPSNM 101 NI 5 6 NOD TEC TEN .610 TBATC 19 "I 5 6 NOD 05H 05H .610 ZPSNN 103 NI 6 6 NOD TEC TEH .610 TBATC 19 NI 6 6 NOD 05H 05H .610 ZPSN14 101 NI 7 6 NOD TEC TEN .610 TBATC 19 NI 7 6 NOD 95H 05H .610 ZPSNM 103 NI I 8 6 2.23 182 ONG P1 02C 2.15 TEC TEN .610 TBATC 19 NI 8 6 NOD 05H 05H .610 ZPSNH 101 "I 11 6 2.69 77 MBN 6 03H 12.98 TEC TEN .610 TBATC 19 "I 11 6 2.31 173 DNG P1 8BC 39.01 TEC TEN .618 TBATC 19 NJ 11 6 NOD 05H 05H .610 ZPSNM 181 NI I I 12 6 NOD TSH TSH .610 ZPSNN 7 NI 12 6 NOD TEC TEN .610 TBATC 19 HI 12 6 NOD 05H 05H .610 ZPSNM 103 NI 13 6 4.48 180 ONG P1 08H 31.32 TEC TEN .610 TBATC 19 NI 13 6 NDD B5H 05H .610 ZPSNM 103 NI 16 6 NOD TEC TEN .610 TBATC 19 NI 16 6 NOD 05H 05H .610 ZPSNN 101 NI 17 6 NOD TEC TEN .610 TBATC 19 HI 17 6 NOD 05H 05H .610 ZPSNN 103 NI 4 7 NOD I1C TEC .610 SBACC 2 CI 4 7 NOD 1IC TEN .590 SBUCC 75 NI 4 7 NOD 05H 85H .610 ZPSNN 101 NI 5 7 HOD TEC TEN .610 TBATC 17 NI 5 7 NOD 05H 05H .610 ZPSNN 103 NI 7 7 .65 124 DSI P1 95H .79 TEC TEN .610 TBATC 17 NI 7 7 .13 286 PLP 7 05H 1.23 TEC TEN .610 TBATC 17 NI 7 7 2.79 180 INR P1 AV4 3.93 TEC TEN .610 TBATC 17 NI 7 7 .76 134 DSE P1 05H .79 TEC TEN .610 SBACC 93 NI 7 7 33.26 77 PLP 11 O5H .56 05H 05H .610 ZPSNM 101 NJ 7 7 .24 66 SVI P4 05H .66 05H 05H .618 ZPSNN 101 NI 7 7 .26 264 PCT 28 2 05H .67 .22 .50 77 05H 05H .610 ZPSNM 101 NI 7 7 TBP P4 05H .66 05H 05H .610 ZPSNM 105 NI 7 7 .17 92 PlO P4 05H .66 05H 05H .610 ZPSNM 105 NI 8 7 NDD TEC TEN .610 TBATC 17 NI+ ... + ... ÷ ....... + ... +.... ... + ... ÷ ... + ... 4--- +- -+....+....

..+.....----------+

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+ ----+--1 8 7 NDD 05H 05H .610 ZPSNM 101 HI 9 7 3.28 72 MBN 6 08H 1.48 TEC TEH .610 TBATC 17 HI 9 7 NDD 05H 05H .610 ZPSNM 103 HI i1 7 NOD TEC TEH .610 TBATC 17 NI i1 7 NOD 05H 05H .618 ZPSNM4 183 HI 11 7 NDD TEC TEH .610 TBATC 17 NI 11 7 NOD 95H 95H .610 ZPSNM 183 HI 12 7 NOD TEC TEN .610 TBATC 17 HI 12 7 NOD 05H 05H .618 ZPSNH 103 HI 13 7 4.62 173 ONG P1 09C 4.32 TEC TEN .610 TBATC 17 HI 13 7 NOD 05H 05H .610 ZPSN#4 183 HI 16 7 NOD TEC TEH .610 TBATC 17 HI 16 7 NOD 05H 05H .618 ZPSNM 101 NH 17 7 4.84 74 MBM 6 07C 18.61 TEC TEN .610 TBATC 17 HI I 17 7 NOD 65H 05H .610 ZPSNHM 103 HI 4 8 NOD 1IC TEC .610 SBACC 2 CI 4 8 NOD 11C TEN .590 SBUCC 75 NJ 4 8 NOD 05H 05H .610 ZPSNM 101 HI 5 8 NOD TEC TEN .610 TBATC 19 NI 5 8 NOD 05H 05H .610 ZPSNM 103 HI 8 8 2.85 182 ONT P1 siC .10 TEC TEN .610 TBATC 19 NI 8 8 NOD 05H 05H .610 ZPSNM 101 HI 9 8 NOD TEC TEN .610 TBATC 19 NI 9 8 NOD 05H 05H .610 ZPSNM 101 HI I10 8 NOD TEC TEN .618 TBATC 19 HI I1 8 NOD 05H 05H .610 ZPSNM 101 HI 11 8 NOD TEC TEN .610 TBATC 19 NI 11 8 NOD 05H 05H .610 ZPSNM 101 NI 12 8 NOD TEC TEN .610 TBATC 19 N4 12 8 NOD 05H 05H .610 ZPSNM 101 HJ 13 8 NOD TEC TEH .610 TBATC 19 NI 13 8 NOD 05H 05H .610 ZPSNM 103 NI 14 8 NOD TEC TEN .610 TBATC 19 HI 14 8 NOD 05H 05H .610 ZPSNM 103 HI 15 8 NOD TEC TEN .610 TBATC 19 HI 15 8 NOD 05H 85H .610 ZPSNM 103 HI 16 8 2.22 174 DNG P1 ION 38.02 TEC TEH .610 TBATC 19 HI 16 8 2.28 173 DNT P1 11H -.68 TEC TEN .618 TBATC 19 HI 16 8 2.46 173 DNT P1 lIC .59 TEC TEH .610 TBATC 19 HI 1 16 8 NOD 95H 05H .610 ZPSNM 103 HI 1 17 8 NOD TEC TEH .610 TBATC 19 HI 1 17 8 NOD 05H 05H .610 ZPSNM 103 HI 1 24 8 NOD TEC TEN .610 TBATC 17 HI 24 8 NOD *7H 07H .610 ZPSNM 101 HI 25 8 NOD TEC TEN .610 NBAZC 25 HI 25 8 NOD S7H 07H .610 ZPSNM 101 HI 26 8 .29 69 DFS 1 TSH 1.04 TEC TEN .610 NBAZC 25 HI 26 8 NOD 07H 07H .610 ZPSNM 101 HI 2 9 NOD 11C TEC .610 SBACC 2 CI 2 9 NOD TSH TSH .610 ZPSNM 7 H)2 9 3.35 175 DNT P1 11H .35 11H TEN .610 TBATC 19 NI 2 9 NDF 2 11H .35 11H LIN .610 ZPSNM 81 "1 4 9 2.79 176 ONG P1 04C 15.91 1IC TEC .610 SBACC 2 CI 4 9 NOD TSH TSH .610 ZPSNM 7 NI 4 9 NOD 11C TEN .590 SBUCC 75 NI 4 9 NOD 95H 95H .610 ZPSNM 101 NJ-----------------------


+----+----+----+----+----+-----------~+


+---------

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDOA PTYPE CAL LI---------------------------------


.----.-------------------------------------------


-+ -+ --------3 ST Max

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4----+-------, -+- 4-------5 9 HOD TSH TSH .610 ZPSNM 7 lil 5 9 NOD TEC TEH .616 TBATC 17 HI 5 9 NOD 05H 05H .610 ZPSNM 101 HI 6 9 NOD TSH TSH .610 ZPSNM 7 HI 6 9 NOD TEC TEH .610 TBATC 17 14 6 9 NOD 05H 05H .610 ZPSNN 101 HI J 7 9 NOD TSH TSH .616 ZPSNM 7 HI 1 7 9 NOD TEC TEH .610 TBATC 17 HJ 7 9 NOD 05H 05H .610 ZPSNM 103 HI 8 9 NOD TSH TSH .610 ZPSNN 7 HJ I 9 NOD TEC TEH .610 TBATC 17 HI 8 9 NOD 05H 05H .610 ZPSNN 103 HI 9 9 NOD TSH TSH .610 ZPSNHM 7 HI 9 9 NOD TEC TEH .610 TBATC 17 HI 9 9 NDD 65H 05H .610 ZPSNN 103 HI 12 9 NOD TSH TSH .610 ZPSNN 7 HI 12 9 NOD TEC TEN .610 TBATC 17 HI 12 9 NOD 05H 05H .618 ZPSNM 181 HJ 13 9 ODo TSH TSH .610 ZPSNM 7 HI 13 9 NOD TEC TEH .610 TBATC 17 HI 13 9 NOD 05H 05H .610 ZPSNM 101 HI 14 9 NOD TSH TSH .610 ZPSNM 7 HI 14 9 NOD TEC TEH .610 TBATC 17 HI 14 9 NOD 05H 05H .610 ZPSNN 101 HI 15 9 NOD TSH TSH .610 ZPSNM 7 HI 15 9 NOD TEC TEH .618 TBATC 17 HI i15 9 NOD 05H 05H .610 ZPSNM 101 HI 16 9 NOD TSH TSH .610 ZPSNM 7 HI 16 9 NOD TEC TEH .610 TBATC 17 HI 16 9 NOD 05H 85H .610 ZPSNH 101 HI I 17 9 NOD TSH TSH .610 ZPSNM 9 HI 17 9 NOD TEC TEH .616 TBATC 17 HI 17 9 NOD 05H 05H .610 ZPSNH 161 HI 23 9 NOD TSH TSH .610 ZPSNJ4 9 HI 23 9 NOD TEC TEN .610 TBATC 19 HI 23 9 NOD 07H 87H .610 ZPSNM 101 HI 24 9 NOD TSH TSH .610 ZPSNN 9 HI 24 9 NOD TEC TEH .610 TBATC 17 HI 24 9 NOD 07H 07H .610 ZPSNN 101 HI I I 25 9 NOD TSH TSH .610 ZPSNH 9 H" 25 9 NOD TEC TEH .610 TBATC 19 HI 25 9 NOD 07H 67H .610 ZPSNM 103 HI 26 9 NOD TSH TSH .610 ZPSNN 9 HI 26 9 2.85 76 NBN 6 AV1 8.53 TEC TEN .610 TBATC 23 HI 26 9 3.81 176 DNT P1 03C -.18 TEC TEH .610 TBATC 23 HI 26 9 HNO 07H 07H .610 ZPSNI 103 HI 27 9 NOD TSH TSH .610 ZPSNN 9 HI 27 9 2.65 174 DNT P1 111 .45 TEC TEH .610 TBATC 27 HI 27 9 NOD 87H 87H .610 ZPSNN 103 HI 28 9 NDF 2 TSH -16.55 TSH TSH .610 ZPSNN 9 HJ 28 9 .65 123 DFS 1 TSH 1.03 TEC TEH .610 TBATC 27 HJ 28 9 NOD 07H 07H .610 ZPSNH 101 HJ 4 10 NOD I1C TEC .618 SBACC 2 CI 4 18 NOD TSH TSH .610 ZPSNP 5 HI 4 16 NDOD 11C TEH .590 SBUCC 75 HI 4 10 NOD 05H 06H .610 ZPSNM 103 HI 5 10 NDD TSH TSH .610 ZPSNN 5 HI 5 18 2.66 62 4B4 6 09H 19.98 TEC TEH .610 TBATC 19 HI 5 10 2.21 62 MBM 6 161 28.02 TEC TEH .610 TBATC 19 HI 5 10 2.54 172 ONG P1 18H 35.23 TEC TEH .610 TBATC 19 HI 5 16 .60 354 INR P1 18C 36.13 TEC TEN .610 TBATC 19 NI 4-. ..÷ ..-+.. ... ..÷- ..-- ...-- ...-- ...-- .. + .. .. ..+ .. ..----- -. ....... .... ..-- -...-4---+- ...--.----

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+4 ST Max

--. ----,-- ---. -.; -.,, ,l.., ai3pU i iuon KI SU I1S Byron 2 B2R15 CBE 28100401 84/28/2010 21:28:11÷..÷......÷..÷..÷..÷....------------------


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-- -- -+A 5 10 2.87 172 ONG P1 leC 38.00 TEC TEH .610 TBATC 19 HI 5 10 NDD 05H 05H .610 ZPSNM 101 HI Ism I 6 18 NDD TSH TSH .610 ZPSN) 5 HJ 6 18 2.18 182 ONG P1 05C 12.49 TEC TEH .610 TBATC 19 HI 6 18 NDOD 5H B5H .618 ZPSNM 181 HI 7 10 NDD TSH TSH .618 ZPSNM 5 Nj 7 10 NOD TEC TEH .618 TBATC 19 HI 7 10 NDD 05H 05H .610 ZPSNM 101 HI 8 18 NDD TSH TSH .610 ZPSNM 5 HI 8 10 3.45 179 DNG P1 08H 27.78 TEC TEN .610 TBATC 19 NI 8 18 NDD 05H 05H .610 ZPSNM 181 HI 9 1@ NDD TSH TSH .610 ZPSNM 5 HI 9 18 2.01 173 ONG P1 05H 2.61 TEC TEN .610 TBATC 19 NI 9 18 NDD 05H 95H .618 ZPSNM 101 HI 23 18 NOD TSH TSH .618 ZPSNM 11 HI 23 10 NOD TEC TEN .610 TBATC 19 NI 23 18 NDOD 7H B7H .610 ZPSNM 101 NI 24 10 NDD TSH TSH .610 ZPSNM 11 NI 24 10 NDD TEC TEN .610 TBATC 19 NI 24 10 NDD 07H 87H .610 ZPSNM 103 NI 25 10 NDD TSH TSH .618 ZPSNM 11 NI 25 16 3.85 70 MBt 6 AV4 8.73 TEC TEN .610 TBATC 19 NJ 25 10 NDD 07H 07H .610 ZPSNM 183 NI 27 10 NDD TSH TSH .610 ZPSNM 11 NI 27 18 1.13 0 PCT 17 P2 AV2 .11 TEC TEN .610 NBAZC 25 NJ 27 18 13.26 181 DNT P1 83C -.39 TEC TEN .610 NBAZC 25 NJ 27 10 NDD 07H e7H .610 ZPSNM 101 NI 28 10 NOD TSH TSH .610 ZPSNM 11 NI 28 18 2.23 185 DNG P1 laC 38.23 TEC TEN .618 NBAZC 25 N1 28 18 NDD 07H 07H .610 ZPSNM 101 NJ 29 10 NDO TSH TSH .618 ZPSNM 11 NJ 29 18 2.16 172 DNT P1 03C -.44 TEC TEN .610 NBAZC 25 NJ 29 10 NDD 07H 07H .610 ZPSNM 103 HI 23 11 NDD TEC TEN .610 TBATC 17 NJ 23 11 NDD 07H 07H .618 ZPSNM 101 NJ 24 11 NDD TEC TEN .610 TBATC 27 NI 24 11 NOD 07H N7H .618 ZPSHM 183 NJ 28 11 .74 0 PCT 12 P2 AV2 .26 TEC TEN .618 TBATC 27 NJ 28 11 2.74 0 PCT 29 P2 AV3 .88 TEC TEN .610 TBATC 27 NJ 28 11 1.34 8 PCT 18 P2 AV4 -.03 TEC TEN .618 TBATC 27 NI 28 11 2.71 172 DNG P1 09C 20.76 TEC TEN .610 TBATC 27 NI 28 11 3.06 171 DNT P1 03C -.38 TEC TEN .610 TBATC 27 NI 28 11 NDD N7H 07H .610 ZPSNM 103 NI 29 11 HOD TEC TEN .610 TBATC 27 HI 29 11 NDD 07H 07H .610 ZPSNM 103 NJ 31 11 NDF 2 TSC .82 TSC TSC .610 ZPSNM 18 CI 31 11 3.66 15 BLG 1 TSC .82 TEC TEN .618 TBATC 27 NI 22 12 NDD 02C 02C .610 ZPSNM 10 CI 22 12 NOD TEC TEN .618 NBAZC 25 NI 23 12 .44 155 DFS 1 07C 16.28 TEC TEN .610 NBAZC 25 NI 23 12 NDD N7H 07H .618 ZPSNM 181 NI 24 12 NDD TEC TEN .610 NBAZC 25 NJ 24 12 NOD 87H 07H .610 ZPSNM 103 NI 25 12 2.13 180 DNG P1 07H 6.20 TEC TEN .610 NBAZC 25 Nj 25 12 NDD 07H 07H .610 ZPSNN 101 Nj 26 12 NDD TEC TEN .610 NBAZC 25 NJ 26 12 NDD 07H 07H .610 ZPSNM 101 NI 27 12 NDD TEC TEN .610 NBAZC 25 NI 27 12 NOD 07H 07H .610 ZPSNM 101 Nj---------------------------------

  • ----------.----+----.--..-.-------4-*4

+..--+ ----+ --+--------ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CROID CEG BEGT ENDT POIA PTYPE CAL Lj-- ------- ------- -------- -----------------------

--- --.5 ST Max

-- -a.,puiv, t .rumnl lftn3pecion KeSUliTS Byron 2 B2R15 CBE 21088481 84/28/2018 21:28:11..--- 4 ..+. .+..+.. ...+..-------.-.----+.----+-

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+ .....+.- +I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI--------------------------

+-.-+----+--------------------------+----4---+--------+


+-----+- + --4-..-28 12 1.26 8 PCT 19 P2 AV2 .11 TEC TEH .618 NBAZC 25 HI 28 12 9.87 182 ONT P1 83C -.41 TEC TEH .610 NBAZC 25 HI 28 12 NOD 87H 87H .618 ZPSNM 101 HI I 29 12 10.35 177 DNT P1 03C -.38 TEC TEH .610 NBAZC 25 HI 29 12 NDD 07H 87H .610 ZPSNM 183 HI I 23 13 "OD TSH TSH .618 ZPSNM 9 HI 23 13 NDD TEC TEH .610 TBATC 27 HI 23 13 NOD 87H 87H .618 ZPSNM 181 HI 24 13 NDD TSH TSH .618 ZPSNM 9 HI 24 13 NOD TEC TEH .610 TBATC 27 HI 24 13 NOD 87H 07H .618 ZPSNM 183 Hj 25 13 NOD TSH TSH .610 ZPSNM 9 HI 25 13 7.65 180 ONG P1 83H 18.44 TEC TEH .618 TBATC 27 HI 25 13 2.37 182 ONG P1 83H 17.41 TEC TEH .610 TBATC 27 HI 25 13 NOD 97H 07H .618 ZPSNM 103 HI 26 13 NOD TSH TSH .618 ZPSNM 9 HI 26 13 NDD TEC TEH .618 TBATC 27 Hi 26 13 NOD 87H 97H .618 ZPSNM 183 HI 27 13 NOD TSH TSH .610 ZPSNM 9 HI 27 13 2.71 173 DNT P1 83C -.18 TEC TEH .610 TBATC 27 HI 27 13 NDOD 7H 07H .618 ZPSNM 183 HI 28 13 NOD TSH TSH .618 ZPSNM 9 HI 28 13 NOD TEC TEH .610 TBATC 27 HI 28 13 NOD 07H 07H .618 ZPSNM 103 HI 29 13 NOD TSH TSH .618 ZPSNM 9 HI 29 13 2.83 174 ONT P1 11H .48 TEC TEH .618 TBATC 27 HI 29 13 .99 8 PCT 15 P2 AV3 -.08 TEC TEH .610 TBATC 27 HI 29 13 13.31 176 DNT P1 83C -.36 TEC TEH .618 TBATC 27 HI 29 13 NDD 87H 87H .610 ZPSNM 103 HI I 26 14 NOD 82C 82C .618 ZPSNM 18 C, 26 14 NOD TSH TSH .618 ZPSNM 11 HI AN I 26 14 2.67 182 ONG P1 02C 8.19 TEC TEH .610 NBAZC 21 HI I 7 16 NDF 2 TSC 1.15 TSC TSC .610 ZPSNM 18 CI 7 16 2.72 185 ONG P1 97H 7.08 TEC TEH .618 TBATC 27 HI 7 16 4.27 176 ONG P1 lC 37.95 TEC TEH .610 TBATC 27 HI 7 16 18.06 179 ONG P1 l1C 39.21 TEC TEH .610 TBATC 27 HI 7 16 3.86 178 ONG P1 l1C 48.80 TEC TEH .618 TBATC 27 HI 7 16 4.75 178 ONG P1 10C 41.78 TEC TEH .618 TBATC 27 HI 7 16 61.05 7 BLG 1 TSC 1.15 TEC TEH .610 TBATC 27 HI 23 18 NDD TEC TEH .618 NBAZC 21 HI 23 18 NOD 07H 07H .610 ZPSNM 181 HI 24 18 NOD TEC TEH .610 NBAZC 21 HI 24 18 NDD 07H 07H .618 ZPSNN 183 HI 25 18 HOD TEC TEH .610 NBAZC 21 HI 25 18 NDO 07H 07H .618 ZPSNM 101 HI 26 18 2.66 180 DNG P1 1IH 4.05 TEC TEH .618 NBAZC 21 HI 26 18 9.20 177 ONG P1 11H 5.27 TEC TEH .610 NBAZC 21 HI 26 18 .22 77 OFS 1 85C 16.73 TEC TEN .618 NBAZC 21 HI 26 18 NMD 87H 07H .610 ZPSNM 103 HI 27 18 NOD TEC TEH .618 NBAZC 21 HI 27 18 NOD 07H G7H .618 ZPSN4 183 HI 23 19 NOO TEC TEH .610 TBATC 23 HI 23 19 NOD 87H 07H .618 ZPSNM 181 HI I I 24 19 NDD TEC TEN .610 TBATC 23 HI 24 19 NOD 07H 87H .618 ZPSNM 103 HI 25 19 NDD TEC TEH .610 TBATC 23 HI 25 19 HOD 07H 97H .610 ZPSNM 101 HI I 26 19 NOD TEC TEH .618 TBATC 23 HI 26 19 NDO 07H 07H .618 ZPSNM 103 HI I+- --.. ....... ...- ... ...-.+..- .. ...--- ... .........

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4---+- -- ÷ ..-4... ÷ ..... ... ...÷ ... ..... .....÷ .... ÷- ÷27 19 NDD TEC TEH .610 TBATC 23 HJ 27 19 NOD 07H 87H .610 ZPSNN 103 HI 33 19 NOD 02C 82C .610 ZPSNN 18 CI 33 19 NOD TEC TEH .610 TBATC 23 HI 23 20 2.09 59 MBM 6 98C 4.75 TEC TEH .610 NBAZC 21 HI 23 28 2.89 68 NBM 6 a8C 16.70 TEC TEH .610 NBAZC 21 HI 23 28 NOD 87H 07H .618 ZPSNM 101 HI 24 20 NOD TEC TEH .618 NBAZC 21 HI 24 20 NOD 07H 07H .610 ZPSNM 103 HI 26 28 NOD TEC TEH .618 NBAZC 21 HI 26 28 NDD 87H 07H .610 ZPSNH 103 HI 27 28 NDD TEC TEH .610 NBAZC 21 HI 27 28 NOD 87H 07H .610 ZPSNM 103 HI 23 21 NOD TSH TSH .618 ZPSNH 9 HI 23 21 NDD TEC TEH .610 TBATC 23 HI 23 21 NOD 07H 87H .619 ZPSNM 101 HI 24 21 NOD TSH TSH .610 ZPSNH 9 HI 24 21 NOD TEC TEH .610 TBATC 23 HI 24 21 NOD 07H 07H .616 ZPSHN 103 HI 25 21 NOD TSH TSH .610 ZPSNI 9 HI 25 21 NOD TEC TEH .610 TBATC 23 HI 25 21 NOD 07H 07H .610 ZPSNM 181 HI 26 21 NOD TSH TSH .610 ZPSNM 9 HI 26 21 NOD TEC TEH .610 TBATC 23 HI 26 21 NOD 07H 07H .610 ZPSNHM 101 HI 27 21 NOD TSH TSH .610 ZPSNM 9 HI 27 21 2.29 80 INR 6 06C 15.07 TEC TEH .610 TBATC 23 HI 27 21 NOD 07H 07H .610 ZPSNM 103 HI 23 22 NOD TSH TSH .618 ZPSNM 11 HI 23 22 NOD TEC TEH .610 NBAZC 21 HI 23 22 NOD 07H 07H .618 ZPSNM 181 HI 24 22 NOD TSH TSH .610 ZPSNM 11 HI 24 22 NOD TEC TEH .610 NBAZC 21 HI 24 22 NOD 07H 87H .610 ZPSNM 103 HI 25 22 NOD TSH TSH .610 ZPSNK 11 HI 25 22 2.55 179 ONG P1 09C 19.21 TEC TEH .610 NBAZC 21 HI 25 22 NOD 07H 87H .618 ZPSNM 101 HI 26 22 NOD TSH TSH .610 ZPSNM 11 HI 26 22 NOD TEC TEH .610 NBAZC 21 HI 26 22 NOD 07H 07H .610 ZPSNM 103 HI 27 22 NOD TSH TSH .618 ZPSNM 11 HI 27 22 2.14 188 DNG P1 99H 19.41 TEC TEH .610 NBAZC 21 HJ 27 22 NOD 07H 07H .610 ZPSNN 183 HI 26 23 NOD TEC TEH .610 TBATC 23 HI 26 23 NOD 81H 811 .618 ZPSNM 103 HI 27 23 NOD TEC TEH .619 TBATC 23 HI 27 23 NOD 01H 01H .610 ZPSNN 101 HI 28 23 NOD TEC TEH .610 TBATC 23 HI 28 23 NOD G1N 11H .610 ZPSNM 101 HI 29 23 NOD TEC TEH .610 TBATC 23 HI 29 23 NOD 811 01H .610 ZPSNN 101 HI 26 24 NOD TEC TEH .610 NBAZC 21 HI 1 26 24 NOD 811 811 .610 ZPSNM 101 HI 27 24 .46 130 DSS P1 11C -.61 TEC TEH .610 NBAZC 21 HI 27 24 NOD 81H 811 .610 ZPSNN 103 HI 28 24 28.96 177 DNT P1 08C .47 TEC TEH .610 NBAZC 21 HI 28 24 NOD 81H 01H .610 ZPSNM 183 HI------------------------------------------------------

+-------+.

-+ +.----+- + ----+--I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI+----------------------4---4---------+--------


+---+---+


+ ----O Byron 2 B2R15 CBE 20180401 04/28/2010 21:28:11... .. ..---------------------------..-.--.-------------------------------------.-


.-----..


I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO' CEG BEGT ENOT POIA PTYPE CAL LI÷ ....-- ÷ ... .......÷ ... ÷....* ... ÷....÷ ... +....... .... ---+-..-.........

.+...--+----..

...÷ .. ----+ -.... ----1 29 24 NOD TEC TEN .610 NBAZC 21 NJ 1 29 24 NOD 011 SIN .610 ZPSNN 103 HI I I 30 24 NOD TEC TEN .610 NBAZC 21 NJ 30 24 NOD [IN 01N .610 ZPSHN 103 NJ 31 24 3.30 173 DNT P1 11H .32 TEC TEN .610 NBAZC 21 NJ 31 24 NDF 2 11H .32 11H 11H .610 ZPSNN 85 NI 31 24 NOD 01H 011 .610 ZPSNM 101 NJ 26 25 NOD TEC TEN .610 TBATC 23 NJ 26 25 NOD 01H 011 .610 ZPSNM 101 NI 27 25 NOD TEC TEN .610 TBATC 23 NI 27 25 NOD 011 011 .610 ZPSNK 103 Nj 29 25 NOD TEC TEN .610 TBATC 23 NI 29 25 NOD 011 011 .610 ZPSNN 101 NJ 30 25 NOD TEC TEN .610 TBATC 23 HI 30 25 NDD 0114 IN .610 ZPSNN 101 NJ I 1 31 25 2.02 85 MBN 6 03C 10.68 TEC TEN .610 TBATC 23 HI 31 25 NOD GIN 01H .610 ZPSNN 101 NJ I 26 26 NOD TEC TEN .610 NBAZC 29 Nj 26 26 NOD 011 011 .610 ZPSNN 101 HI I 27 26 NOD TEC TEN .610 NBAZC 29 NJ 27 26 NOD 011 01H .610 ZPSNN 103 Nj I 29 26 .23 137 DSS P1 011 .68 TEC TEN .610 NBAZC 29 NJ 29 26 2.22 172 ONG Pl 10H 41.92 TEC TEN .610 NBAZC 29 Nj 29 26 .20 143 DSS P1 011 .68 TEC TEN .610 SBACC 93 Nj 29 26 .12 80 VOL 2 011 .58 811 011 .610 ZPSNN 101 Nj 29 26 .12 80 PCT 17 2 011 .58 .19 .43 66 01H 011 .610 ZPSNN 101 Nj I 30 26 NOD TEC TEN .610 NBAZC 29 Nj 30 26 NOD 01H 011 .610 ZPSNN 103 Nj I 31 26 NOD TEC TEN .610 NBAZC 29 Nj 31 26 NOD 01H HIN .610 ZPSNN 103 Nj I 26 27 NOD TSH TSH .610 ZPSNM 9 Nj 26 27 NOD TEC TEN .610 TBATC 31 NJ 26 27 NOD 011 011 .610 ZPSNM 101 Nj I I 27 27 NOD TSH TSH .610 ZPSNM 9 Nj 27 27 2.60 181 DNT P1 02C -.14 TEC TEN .610 TBATC 31 Nj 27 27 NOD 01H 01H .610 ZPSNN 103 Nj I I 28 27 NOD TSH TSH .610 ZPSHN 9 NJ 28 27 .86 0 PCT 14 P2 AV2 .25 TEC TEH .610 TBATC 31 NJ 28 27 1.05 0 PCT 16 P2 AV3 -.10 TEC TEN .610 TBATC 31 Nj 28 27 2.20 75 INR 6 83C 8.90 TEC TEN .610 TBATC 31 Nj 28 27 NOD 011 GIN .610 ZPSNM 101 Nj I 29 27 NOD TSH TSH .610 ZPSNM 9 Nj 29 27 NOD TEC TEH .610 TBATC 31 Nj 29 27 NOD 01 0114 .610 ZPSN41 101 Nj I I I 30 27 NOD TSH TSH .610 ZPSHM 9 NJ 30 27 2.00 183 ONG P1 05H 13.13 TEC TEH .610 TBATC 31 Nj 30 27 NOD 011 011 .610 ZPSNM 101 NJ 31 27 NOD TSH TSH .610 ZPSNM 9 Nj 31 27 .25 66 DSS P1 liC .21 TEC TEN .610 TBATC 31 NJ 31 27 NOD 011 01H .610 ZPSNM 101 Nj 26 28 NOD TSH TSH .610 ZPSNM 11 Nj 26 28 NOD TEC TEN .610 NBAZC 29 NJ 26 28 NOD 011 011 .610 ZPSNM 101 Nj 27 28 NOD TSH TSH .610 ZPSNI 11 Nj 27 28 NOD TEC TEN .610 NBAZC 29 NJ 27 28 NOD 011 011 .610 ZPSNN 103 NJ 28 28 NOD TSH TSH .610 ZPSNN 11 Nj 28 28 NOD TEC TEN .610 NBAZC 29 Nj 28 28 NDD 0114 01 .610 ZPSNN 101 NJ 4------------------------------------+---4---..---+---+---+---+------+


+--4 ---.+ -+- 4-------ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDOA PTYPE CAL LI 8-- ---------------------------

+--- +------ ---------.


a ST Max Byron 2 B2RI5 CBE 20180401 04/28/2019 21:28:11..+ ... ....-------.----

+----+----+----.----4

÷....÷...........+.......+..-------.--.----,-.----

-. I -----------------

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4------------------------------+-----+--.-----,-----+------+-------+--+

-+ ------+---4 .- +-------I '29 28 NOD TSH TSH .610 ZPSNM 11 HI 29 28 NOD TEC TEH .610 NBAZC 29 HI 29 28 NOD 1IH 81H .618 ZPSNM 183 HI 30 28 NOD TSH TSH .610 ZPSNM 11 HI 38 28 .19 152 OFS 1 18C 3.13 TEC TEH .618 NBAZC 29 HI 30 28 NOD N1H G1H .610 ZPSNM 103 HI 31 28 HOD TSH TSH .610 ZPSNH 11 HI 31 28 NOD TEC TEH .610 NBAZC 29 HI 31 28 NOD 01H 91H .610 ZPSNM 103 HI I I 10 30 3.93 175 ONG P1 18H 21.61 TEC TEH .610 TBATC 27 HI 10 38 3.02 173 ONG P1 1H 23.02 TEC TEH .610 TBATC 27 HI 10 30 3.33 175 ONG P1 I@H 25,65 TEC TEH .618 TBATC 27 HI 10 30 .26 146 DFS 1 10C 18.28 TEC TEM .610 TBATC 27 HI 10 30 NDF 2 I1H 21.61 10H 11H .618 ZPSNM4 81 HJ 18 30 NDF 2 1H 23.02 IH 11H .610 ZPSNM 81 HI 18 38 NDF 2 1H 25.65 1H 11H .610 ZPSNM 81 HI 48 38 NOD 02C 02C .610 ZPSNM 12 CI 48 38 2,86 174 DNT P1 11H -.68 TEC TEH .610 NBAZC 29 HI 48 38 3.78 173 DNT P1 11H .37 TEC TEH .610 NBAZC 29 HI 48 38 NDF 2 11H .37 11H 11H .610 ZPSNM 95 HI 42 33 NOD 82C 02C .610 ZPSNM 18 Cl 42 33 NOD TEC TEH .618 TBATC 31 HI 44 33 3.88 173 DNT P1 11H .61 TEC TEH .610 TBATC 31 HI 44 33 NMF 2 11H .61 11H 11H .618 ZPSNM 95 HI 27 42 NOD 02C 02C .610 ZPSNM 18 C[27 42 NOD TEC TEH .618 TBATC 35 HI 28 42 NOD 02C 02C .618 ZPSNM 18 CI 28 42 2.22 85 MBM 6 11H 13.95 TEC TEH .618 TBATC 35 HI I I 31 43 .48 148 DFS 1 01H 22.89 TEC TEH .610 NBAZC 33 HI 31 43 3.10 172 DNG P1 83H 12.50 TEC TEH .610 NBAZC 33 HI 31 43 3.89 77 MBM 6 07C 27.87 TEC TEH .610 NBAZC 33 HI 31 43 NDF 2 03H 12.50 03H 05H .610 ZPSNM 95 HI 3 46 1.98 98 OTS P4 TSC -.11 11C TEC .610 SBACC 2 Cl 3 46 NDF 2 TSC -.11 TSC TSC .610 ZPSNM 18 CI 3 46 NOD 11C TEH .590 SBUCC 75 HI 25 47 NDF 2 03C -.37 03C 03C .610 ZPSNM 18 CI 25 47 .62 141 DSS P1 03C -.37 TEC TEH .618 NBAZC 33 HI 25 47 .63 142 DSS P1 03C -.57 TEC TEH .610 SBACC 93 HI 1 58 NOD 11C TEC .610 SBACC 2 CI 1 50 3.28 185 DNT P1 11H .74 11H TEH .618 NBAZC 41 HI 1 50 NDF 2 11H .74 11H 11H .610 ZPSNM 85 HI 1 46 50 .47 55 VOL P4 07C .16 07C 07C .618 ZPSNM 18 CI 1 46 50 2.39 0 RWS P2 07C .16 TEC TEH .610 NBAZC 37 HJ 1 46 50 1.44 8 PCT 21 P7 87C .19 TEC TEH .610 SBACC 93 HI 48 50 .93 63 VOL P4 *7C -.05 07C 07C .610 ZPSNM 18 Cl 48 50 6.09 8 RWS P2 87C -.05 TEC TEH .618 NBAZC 37 HI 48 50 4.80 8 PCT 39 P7 07C .14 TEC TEH .618 SBACC 93 HI 43 51 3.53 183 DNG P1 03H 22.65 TEC TEH .618 TBATC 39 HI 43 51 4.34 72 MBM 6 AV2 19.26 TEC TEH .610 TBATC 39 HI 43 51 2.42 68 MBM 6 88C 16.52 TEC TEH .610 TBATC 39 HI 43 51 NDF 2 83H 22.65 03H 05H .618 ZPSNM 95 HI 49 52 .84 62 VOL P4 07C .22 07C 07C .610 ZPSNM 18 CI 49 52 2.47 178 DNT P1 AV2 -.16 TEC TEH .610 NBAZC 37 HI 49 52 2.51 178 DNT P1 AV3 -.08 TEC TEH .610 NBAZC 37 HI 49 52 4.19 0 RWS P2 07C .22 TEC TEH .618 MBAZC 37 HI 49 52 2.37 0 PCT 30 P7 07C .28 TEC TEH .610 SBACC 93 HI 3 53 NOD 11C TEC .610 SBACC 4 CI 3 53 NOD 82C 02C .610 ZPSNM 18 CI 3 53 NOD 11C TEH .590 SBUCC 73 HI 1 17 53 3.29 178 DNG P1 TSH 1.09 TEC TEH .618 SBACC 89 HI 1 17 53 NDF 2 TSH 1.09 TSH 01H .610 ZPSNM 99 HI-----------------------------

4-------4-----+-----+------+-----+---4---4


4----+-----+-

4-----4- I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 9-- ---------------------------------

+ -----------


9 ST Max SG -0 B2R15 Speciel Interest +Point Inspection Results Byron 2 B2R15 CBE 20100401 04/28/2010 21:28:11---------------------------------------------

+..---- -------------------------------------------

+- -- + -..----+.. .------- -.-I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI-----------------------------------

+-----------+-----+--.-,-----,----+---4--, + -,---+----.+----- -,-48 53 NDD TSH TSH .610 ZPSNM 5 HI 48 53 .57 66 VOL P4 07C .34 87C 07C .618 ZPSNM 18 CI I 48 53 .26 143 DFS 1 89C 8.47 TEC TEH .610 TBATC 39 HI 1 48 53 3.52 8 RWS P2 87C .34 TEC TEH .610 TBATC 39 HI 1 48 53 2.04 176 DNG P1 05C 15.21 TEC TEH .610 TBATC 39 HI 1 48 53 2.31 0 PCT 29 P7 07C .39 TEC TEH .610 SBACC 93 HI 48 54 NDD TSH TSH .618 ZPSNW 7 HI 48 54 .93 59 VOL P4 07C -.08 07C 07C .610 ZPSNM 18 CI 48 54 .34 150 DFS 1 I1H 19.18 TEC TEN .610 NBAZC 37 HI 48 54 4.35 0 RUS P2 07C .08 TEC TEN .610 NBAZC 37 HI 48 54 .66 154 DFS I 02C 5.85 TEC TEN .618 NBAZC 37 HI 48 54 INF 1 02C 7.07 TEC TEN .618 NBAZC 37 HI 48 54 2.55 8 PCT 31 P7 07C .19 TEC TEN .610 SBACC 93 HI 12 57 HOO 02C 62C .618 ZPSNH 10 Cl 12 57 2.64 167 DNG P1 laC 35.39 TEC TEN .610 SBACC 67 NI 12 57 4.08 175 DNG P1 16C 36.50 TEC TEN .618 SBACC 67 NI 8 58 NDOD 2C 02C .610 ZPSNM 18 CI 8 58 NDO TEC TEN .618 TBATC 15 NJ 11 58 NOD 02C 02C .610 ZPSNM 18 Cl 11 58 NDD TEC TEN .610 TBATC 13 NI 8 59 NDOD 2C 02C .610 ZPSNW 18 Cl 8 59 NDD TEC TEN .610 TBATC 15 NI 15 59 NDD 82C 02C .610 ZPSNM 18 Cl 15 59 2.48 79 MBN 6 06C 9.72 TEC TEN .610 TBATC 13 NI 16 59 NDD 02C 02C .610 ZPSNM 18 Cl 16 59 2.43 181 DNG P1 TSH 2.33 TEC TEN .610 TBATC 15 NI 48 59 NDD TSH TSH .610 ZPSNH 5 NH 48 59 .78 62 VOL P4 07C .80 07C 87C .618 ZPSNW 18 CI 48 59 NDD 82C e2C .610 ZPSNM 12 CI 48 59 NOD 83C 83C .610 ZPSNM 12 CI 48 59 4.78 0 RWS P2 07C .80 TEC TEN .610 NBAZC 41 HI I48 59 2.69 8 PCT 32 P7 07C .80 TEC TEN .618 SBACC 93 HI 2 61 NOD IIC TEC .618 SBACC 2 CI 2 61 NDD 02C 02C .610 ZPSNW 18 Cl 2 61 NDO 11H TEN .610 TBATC 15 NI 3 61 NDD 11C TEC .610 SBACC 4 Cl 3 61 NDD 02C 82C .610 ZPSNM 18 CI 3 61 NDD 11C TEN .590 SBUCC 69 HI 1 62 NDD 11C TEC .610 SBACC 4 Cl 1 62 7.72 178 DNT P1 11H -.44 11H TEN .610 TBATC 13 NI 1 62 3.98 175 DNT P1 11H .25 11H TEN .610 TBATC 13 NI 1 62 NDF 2 11H -.44 1NH 11H .618 ZPSNW 85 NI 1 62 NDF 2 11H .25 11H 11H .610 ZPSNM 85 HI 3 62 NDOD 11C TEC .618 SBACC 4 Cl 3 62 NDD 02C 02C .610 ZPSNM 18 Cl 3 62 NOD 11C TEN .590 SBUCC 69 NI 4 62 NDD I1C TEC .610 SBACC 2 Cl 4 62 NDD 82C 82C .618 ZPSNM 18 Cl 4 62 2.32 180 DNG P1 09H 22.33 lIC TEN .590 SBUCC 71 NI 33 62 3.42 181 DNT P1 11H .74 TEC TEN .610 NBAZC 41 NI 33 62 NDF 2 11H .74 1NH 11H .610 ZPSNW 85 HI 4 63 NOD 11C TEC .610 SBACC 2 Cl 4 63 NOD 02C 02C .610 ZPSNN 18 CI 4 63 NDD 11C TEN .590 SBUCC 71 NI 1 49 63 .68 246 VOL P4 07C -.03 07C 07C .610 ZPSNW 18 CI 1 49 63 3.03 179 DNT P1 AV2 -.13 TEC TEN .610 SBACC 65 NI 49 63 5.01 8 RWS P2 07C -.03 TEC TEN .610 SBACC 65 NI 49 63 4.14 182 DNG P1 83C 13.58 TEC TEN .610 SBACC 65 NI 49 63 2.58 172 DNG Pl TSC 1.03 TEC TEN .610 SBACC 65 NI 49 63 2.69 0 PCT 32 P7 07C .14 TEC TEN .610 SBACC 93 NJ 45 67 2.12 172 DNT P1 11H -.50 TEC TEN .610 SBACC 67 NI 45 67 3.49 173 DNT P1 11H .55 TEC TEN .610 SBACC 67 NI+.--- + ....÷..--- +---- +---- .---- +.--------, -.--------.

+ ...... .. .... +.....-----

--...+..---- +....----+

-..+-...... + ------I ROW COL VOLTS DEG IND PER CNN LOCH INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDXA PTYPE CAL LI---------------------------

4---+---------------------+---------4------------, ---- -------- -+--------,.w as max au -0 DZK1O bpecIal interest +Point Inspection Results Byron 2 B2R15 CBE 20100401 04/28/2919 21:28:11...-..-- ....-+.. ..+.. ---------.......----.----

... ..----..--..---

.+ .............------

+--- .----+-..----.....+-......+-..

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI----------------------------

+-------+-----+------+---+-------+----------+----+-------

-+--------45 67 NDF 2 11H .55 111 11H .616 ZPSNN 95 HI I I 46 67 3.60 177 DNT P1 11H .24 TEC TEH .610 SBACC 67 HI 46 67 NDF 2 11H .24 11H 11H .610 ZPSNM 95 NI 33 68 3.22 181 ONT P1 1N .75 TEC TEN .610 NBAZC 45 HI 33 68 NDF 2 l1H .75 11H 11H .610 ZPSNN 85 HI 45 68 2.52 165 DNT P1 11H -.68 TEC TEH .610 SBACC 65 HI 45 68 3.50 176 DNT P1 11H .40 TEC TEH .610 SBACC 65 HI 45 68 1.53 176 INR P1 1IH 1.66 TEC TEH .610 SBACC 65 HI 45 68 NDF 2 11H .40 11H 11H .610 ZPSNM 95 NJ 29 71 NOD 62C 02C .610 ZPSNN 16 CI 29 71 NDD TEC TEH .610 TBATC 47 NI 36 71 NDO 02C 02C .610 ZPSHN 16 CI 30 71 NDD TEC TEH .610 TBATC 47 NI 39 71 3.23 178 DNG PI 69H 6.31 TEC TEH .610 TBATC 47 HI I 39 71 2.12 179 DNG P1 1ON 38.32 TEC TEN .610 TBATC 47 NJ 39 71 NOF 2 69H 6.31 9H 16OH .610 ZPSNN 95 HI 49 71 2.38 175 ONG P1 16O 32.56 TEC TEH .610 SBACC 65 HI 49 71 4.95 179 DNG P1 161 33.69 TEC TEH .610 SBACC 65 HI 49 71 2.00 176 DNG P1 16H 34.66 TEC TEH .610 SBACC 65 HI 1 49 71 3.29 179 DNG P1 161 35.73 TEC TEH .610 SBACC 65 NI I 49 71 NDF 2 16O 33.69 11H 114 .610 ZPSNM 95 HI 49 71 NDF 2 1OH 35.73 161 111 .610 ZPSNM 95 NI 29 72 NDD 02C 02C .610 ZPSNN 16 CI 29 72 NOD TEC TEN .610 NBAZC 45 NJ 30 72 NDOD 2C 02C .610 ZPSNM 16 CI 30 72 NDD TEC TEN .610 NBAZC 45 NI 40 74 NDOD 02C 02C .610 ZPSNN 16 CI 40 74 NOD TEC TEN .610 NBAZC 45 HI 41 74 NOD 02C 02C .610 ZPSNM 16 Cl 41 74 NDD TEC TEN .610 NBAZC 45 NI 39 75 NOD TSH TSH .610 ZPSNM 1 HI 39 75 3.33 174 DNG P1 01H 13.54 TEC TEN .610 TBATC 47 HI 39 75 3.10 174 ONG P1 11H 14.60 TEC TEN .610 TBATC 47 NI 39 75 5.80 179 DNG P1 64C 12.16 TEC TEH .610 TBATC 47 HI 39 75 NOF 2 611 13.54 61H 63H .610 ZPSNN 95 NI 39 75 NDF 2 61H 14.66 61 63H .610 ZPSNN 95 HI 46 75 NOD TSH TSH .610 ZPSNN 1 HI 46 75 NDD 02C 02C .616 ZPSNN 16 CI 46 75 NDD TEC TEN .610 TBATC 47 NH 47 75 NDD TSH TSH .610 ZPSNM 1 H" 47 75 .16 105 VOL P4 62C .63 02C 62C .616 ZPSNM 16 Cl 47 75 2.30 6 RUS P2 92C .63 TEC TEN .610 SBACC 67 NI 47 75 .42 6 PCT 8 P6 02C .40 TEC TEN .610 SBACC 93 NI 48 76 NDO TSH TSH .610 ZPSNN 3 NI 48 76 3.36 182 DNG P1 63H 16.55 TEC TEN .610 SBACC 65 NI 48 76 3.75 68 MBM 6 63H 11.46 TEC TEN .610 SBACC 65 HI 48 76 2.38 177 DNT Pl I1 -.68 TEC TEN .616 SBACC 65 HI 48 76 NDF 2 63H 4 1.55 63H 05H .610 ZPSNM 95 NJ 27 77 3.64 186 DNG P1 16O 29.61 TEC TEN .610 TBATC 47 HI 27 77 NDF 2 161 29.01 161 111 .610 ZPSNM 95 NI 42 77 2.01 187 DNT P1 69H .37 TEC TEN .610 SBACC 67 NI 42 77 2.35 174 DNG P1 16O 37.04 TEC TE1 .610 SBACC 67 NI 42 77 3.59 179 DNG P1 16O 37.54 TEC TEN .616 SBACC 67 NI 42 77 2.61 173 DNT P1 liC -.49 TEC TEN .610 SBACC 67 NI 42 77 6.87 186 DNT P1 11C .05 TEC TEN .610 SBACC 67 HJ 42 77 4.48 178 BNT P1 liC .60 TEC TE1 .616 SBACC 67 HJ 1 42 77 2.24 176 DNG P1 1OC 41.95 TEC TEN .610 SBACC 67 HJ 1 42 77 NDF 2 10H 37.54 16O 111 .610 ZPSNM 95 HI I I 1 46 77 3.48 182 DNG P1 09H 24.28 TEC TEN .616 SBACC 67 NI 1 46 77 .42 126 DSS P1 11H -.69 TEC TEN .610 SBACC 67 NI I 46 77 NDF 2 69H 24.28 69H 16O .610 ZPSNM 95 HI I I-----------------------------

,----+-----+-----+-----+------+---+---+--+-----+

---+ ------ -+--------I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENDT POIA PTYPE CAL LI÷ .... .... .+. ..+.. .+ .... ..+. .. ...+-------.........

---+ ---+.--+ .. ... ... .. ... ... ...-- ---+- --+-.--+ -+ -......+- ....11 ST Max 00 -o o4KxI bpeciau Interest +Point Inspection Results Byron 2 B2R15 CBE 28108481 04/28/2010 21:28:11+ ..+.. .... ..+.. ..+.. ----------

+..+.....--....-..

... +------- +- ......+....----,----, -+ ..+..----- -. + -......--+I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRUID CEG BEGT ENDT PDIA PTYPE CAL LI+. ...+. ....+. .+.. .+. .+. ...+. ....+. ....+ ...----------

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+-------------

-+. ..-.. ..- -.----- + . .... --, I 48 79 2.17 174 DNG P1 1H 15.66 TEC TEH .610 SBACC 67 HI I 48 79 7.01 179 ONG P1 16H 16.71 TEC TEH .619 SBACC 67 HI 48 79 3.19 176 ONT P1 11H .52 TEC TEH .610 SBACC 67 HI 48 79 4.26 174 DNG P1 19C 25.87 TEC TEN .610 SBACC 67 HI 48 79 18.70 180 DNG P1 10C 26.99 TEC TEH .610 SBACC 67 HI 48 79 ODF 2 11H .52 111 LIN .610 ZPSNM 95 HI i15 91 .16 51 VOL P4 06C -.16 86C 06C .610 ZPSNM 10 CI 15 91 1.29 8 RUS P2 86C -.16 TEC TEH .610 TBATC 59 HI 15 91 .24 0 PCT 5 P6 86C -.14 TEC TEH .610 SBACC 93 HI 28 93 NOD TSH TSH .610 ZPSNM 1 HI 28 93 NOD 02C 02C .610 ZPSNM 10 CI 28 93 NOD TEC TEH .610 TBATC 59 HI 28 94 NOD TSH TSH .618 ZPSNM 3 HI 28 94 NOD 82C 82C .610 ZPSNM 18 CI 28 94 NOD TEC TEH .610 NBAZC 57 HI I I 13 96 2.84 179 ONG P1 IOH 17.26 TEC TEH .610 NBAZC 57 HI 13 96 3.28 179 ONG P1 ION 17.32 TEC TER .610 NBAZC 57 HI 13 96 2.45 175 0NG P1 10C 3.68 TEC TEN .610 NBAZC 57 HI I 13 96 2.65 178 ONG P1 10C 6.26 TEC TEH .610 NBAZC 57 HI I 13 96 6.95 178 ONG P1 18C 7.42 TEC TEH .618 NBAZC 57 HI I 13 96 3.47 177 0NG P1 10C 10.58 TEC TEH .610 NBAZC 57 HI 1 13 96 3.15 172 DNG P1 I0C 11.82 TEC TEH .610 NBAZC 57 HI 1 13 96 5.45 178 ONG P1 16C 12.96 TEC TEH .618 NBAZC 57 HI 1 13 96 3.96 173 DNG P1 19C 13.65 TEC TEH .610 NBAZC 57 HI 1 13 96 4.92 178 ONG P1 16C 14.90 TEC TEH .618 NBAZC 57 HI 1 13 96 3.98 181 ONG P1 10C 15.36 TEC TEH .610 NBAZC 57 HI 13 96 6.38 180 DNG P1 10C 16.41 TEC TEH .610 NBAZC 57 HI 13 96 11.74 178 ONG P1 10C 17.44 TEC TEH .610 NBAZC 57 HI 13 96 12.67 177 ONG P1 10C 17.68 TEC TEN .618 NBAZC 57 HI 13 96 14.66 179 DOG P1 16C 18.32 TEC TEN .610 NBAZC 57 HI 13 96 14.66 179 ONG P1 10C 18.69 TEC TEH .610 NBAZC 57 HI 13 96 NOF 2 iOH 17.32 ION 11H .610 ZPSMI4 95 HI I 28 106 3.56 175 ONT P1 89H -.39 TEC TEN .618 MOAZC 61 28 186 3.36 177 ONT P1 09H .66 TEC TEN .610 NBAZC 61 HI 28 106 4.72 176 DNT P1 11H -.39 TEC TEN .610 NBAZC 61 HI 28 106 3.82 177 ONT P1 83C -.49 TEC TEN .618 NBAZC 61 HI II28 106 NDF 2 09H -.39 09H 09H .610 ZPSNM 95 HI 12 113 3.07 176 DNT P1 09H -.42 TEC TEN .618 NBAZC 61 NI 12 113 3.88 178 DNT P1 09H .63 TEC TEN .610 NBAZC 61 HI 12 113 3.14 176 DNT P1 11N -.52 TEC TEN .610 NBAZC 61 NI 12 113 4.45 176 DNT P1 11C -.29 TEC TEN .610 NBAZC 61 NI 12 113 2.28 172 DNT P1 11C .68 TEC TEN .610 NBAZC 61 HJ 12 113 MDF 2 09H -.42 09H 09H .610 ZPSHM 99 NI 12 113 NDF 2 09H .63 09H 09H .610 ZPSNM 99 HJ 12 113 HOF 2 LIN -.52 11N LIN .610 ZPSNM 99 NH 4-------------------------------4---+----4------4-----4-------4--, -----, -----4----4 --------I ROW COL VOLTS DEG INO PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4-----------------------------4-----+---4-----,-----4-----4--------4--. ----,----4 -----------

Tubes: 234 Records: 698 12 ST Max SG -C SPECIAL INTEREST +POINT INSPECTIONS Byron B2R15 CBE D5 X 174 TUBE TESTED FOR SPECIAL INTEREST WITH +POINT PROBE -SEE LIST FOR LOCATION(S)

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--...- calpeci inierest +Point Inspection Results Byron 2 B2R15 CBE 28180431 84/28/2018 21:28:11+.+------------------------------+------------

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+ -+ ---,--I 7 14 3.53 176 ONG P1 IOH 18.95 TEC TEN .610 MBAZC 49 HI I 7 14 2.73 177 ONG P1 19C 17.63 TEC TEN .619 NBAZC 49 NI 7 14 NOF 2 I8N 18.95 18H 11N .618 ZPSNM 103 NI 13 14 2.78 76 MBM 6 83H 25.92 TEC TEN .610 NBAZC 49 NI 13 14 4.34 179 ONG P1 10H 10.90 TEC TEH .610 NBAZC 49 NI 13 14 4.94 181 DNG P1 I1H 17.40 TEC TEN .610 NBAZC 49 HI 13 14 3.88 179 ONG P1 ION 28.74 TEC TEN .610 NBAZC 49 NI 13 14 2.73 179 ONG P1 1ON 22.23 TEC TEN .610 NBAZC 49 NI 13 14 3.65 179 0NG P1 ION 23.29 TEC TEN .610 NBAZC 49 NI 13 14 2.78 178 DNG P1 1ON 34.38 TEC TEN .610 NBAZC 49 NJ 13 14 .45 155 OFS 1 19C 19.59 TEC TEN .610 NBAZC 49 NJ 13 14 2.71 189 ONG P1 16C 28.49 TEC TEN .610 NBAZC 49 HI 13 14 5.94 189 DNG P1 19C 29.95 TEC TEN .610 NBAZC 49 Nj 13 14 4.78 180 0NG P1 16C 32.55 TEC TEN .610 NBAZC 49 NJ 13 14 3.62 179 ONG P1 10C 32.91 TEC TEN .610 NBAZC 49 Nj 13 14 2.66 177 0NG P1 lOC 35.13 TEC TEN .610 NBAZC 49 NI 13 14 2.98 184 ONG P1 lOC 35.60 TEC TEN .610 NBAZC 49 NJ 13 14 3.98 177 ONG P1 l9C 36.07 TEC TEN .618 NBAZC 49 NJ 13 14 4.92 177 ONG P1 19C 37.14 TEC TEN .610 NBAZC 49 Nj 1 13 14 3.74 78 MBM 6 88C 26.04 TEC TEN .610 NBAZC 49 NJ 13 14 NOF 2 IOH 23.20 ION 11H .610 ZPSNM 101 NI 30 15 NDO 02C 02C .610 ZPSNM 8 CI 38 15 .09 150 DFS 1 10C 22.13 TEC TEN .610 NBAZC 47 NJ 31 15 2.40 171 0NG P1 ION 40.88 TEC TEN .610 NBAZC 57 NI 31 15 3.93 178 DNT P1 11H -.50 TEC TEN .610 NBAZC 57 NJ 31 15 2.53 174 DNT P1 11H .59 TEC TEN .610 NBAZC 57 NJ 31 15 NOF 2 11H -.50 81H 11H .610 ZPSNM 189 NJ 33 15 4.42 183 DNT P1 11H .23 TEC TEN .610 NBAZC 57 NI 33 15 NDF 2 11H .23 11H 11H .610 ZPSNM 109 Nj 39 16 NDD 02C 02C .610 ZPSNM 8 CI 38 16 3.12 184 ONG P1 ION 3.87 TEC TEN .610 NBAZC 47 Nj 30 16 8.69 179 DNT P1 LIN .42 TEC TEN .610 NBAZC 47 Nj 6 18 NOD TSH TSH .610 ZPSNM 3 Nj 6 18 5.39 179 DNG P1 1ON 27.84 TEC TEN .610 NBAZC 49 Nj 6 18 2.57 181 DNG P1 ION 28.45 TEC TEN .610 NBAZC 49 NI 6 18 NDF 2 iON 27.84 ION 11H .619 ZPSNM 99 NJ 27 18 NMD TSH TSH .610 ZPSHM I NJ 27 18 .16 127 DFS 1 1O 13.45 TEC TEN .610 NBAZC 49 NJ 27 18 .37 141 DFS 1 ION 41.81 TEC TEN .618 NBAZC 49 NJ 27 18 11.67 179 DNT P1 11H .51" TEC TEN .610 NBAZC 49 NJ 27 18 11.54 178 DNT P1 11H .75 TEC TEN .610 NBAZC 49 NJ 27 18 8.50 179 DNT P1 11C .34 TEC TEN .610 NBAZC 49 NJ 27 18 2.62 175 DNG P1 l9C 29.98 TEC TEN .610 NBAZC 49 Nj 27 18 .44 44 DFS 1 l9C 41.28 TEC TEN .610 NBAZC 49 NJ 27 18 NDF 2 11H .51 1NH 11H .610 ZPSNM 109 Nj 27 18 NDF 2 11H .75 1NH 11H .618 ZPSNM 109 NJ 38 18 NDD TSH TSH .610 ZPSNM I NJ 30 18 3.12 175 0NG P1 ION 39.43 TEC TEN .619 NBAZC 49 NJ 30 18 3.75 173 DNT P1 liC .40 TEC TEN .610 NBAZC 49 Nj 30 18 .41 148 DFS 1 10C 27.04 TEC TEN .610 NBAZC 49 NI 38 18 5.61 175 ONG P1 19C 27.96 TEC TEN .610 NBAZC 49 Nj 30 18 .99 159 DFS 1 19C 30.39 TEC TEN .618 NBAZC 49 Nj 30 18 NDF 2 18N 39.43 ION 11H .610 ZPSNM 109 NJ 35 18 NDD TSH TSH .610 ZPSNM 1 NJ 35 18 .14 160 DFS 1 iON 30.49 TEC TEN .610 NBAZC 55 NJ 35 18 .33 162 DFS I ION 37.67 TEC TEN .610 NBAZC 55 NJ 35 18 3.18 179 DNT P1 11H -.52 TEC TEN .610 NBAZC 55 NJ 35 18 1.03 8 PCT 18 P2 AV2 .88 TEC TEN .610 NBAZC 55 NJ 35 18 .22 157 DFS 1 19C 41.38 TEC TEN .610 NBAZC 55 Nj 35 18 NDF 2 11H -.52 1NH 11H .618 ZPSNM 109 Nj 37 18 NOD TSH TSH .618 ZPSNM 1 Nj 37 18 3.12 180 DNT P1 11H -.61 TEC TEN .619 NBAZC 55 NJ 37 18 NDF 2 11H -.61 11H 11H .610 ZPSNM 189 Nj 7 29 2.77 172 DNG P1 1OH 7.34 TEC TEN .610 NBAZC 49 Nj 7 20 .21 143 INR 1 10H 10.86 TEC TEN .610 NBAZC 49 NJ 7 29 .41 145 DFS 1 iON 18.93 TEC TEN .610 NBAZC 49 NJ 7 29 3.28 176 DNG P1 18N 20.44 TEC TEN .618 NBAZC 49 NJ 7 20 1.18 166 INR 1 18N 29.98 TEC TEN .610 NBAZC 49 Nj 7 20 5.55 179 DNG P1 1ON 30.24 TEC TEN .610 NBAZC 49 NJ----------------------------------

+-------+---.+----+------+----+----+---4.------+


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.+.- ..I --1 7 29 2.48 171 ONG P1 leC 17.79 TEC TEH .610 NBAZC 49 NJ 7 20 3.53 177 ONG P1 l9C 18.85 TEC TEH .610 NBAZC 49 HI 7 29 16.42 189 ONG P1 19C 29.66 TEC TEH .610 NBAZC 49 NI 7 29 2.72 175 ONG P1 04C 5.13 TEC TEH .610 NBAZC 49 HJ 7 20 19.04 181 ONG P1 04C 6.22 TEC TEN .610 N8AZC 49 HI 7 20 NDF 2 19O 20.44 19O 11H .610 ZPSNM 99 HI 7 20 NDF 2 19O 30.24 19O 11H .610 ZPSNM 99 HI 14 20 3.14 180 ONG P1 19H 19.44 TEC TEH .619 NBAZC 49 HI 14 20 2.27 177 ONG P1 19H 24.69 TEC TEH .610 NBAZC 49 HI 14 20 .28 138 DFS I 16C 35.13 TEC TEH .610 NBAZC 49 HI 14 20 NDF 2 19H 19.44 19H 11H .610 ZPSNM 99 HI 3 22 NOD 1IC TEC .610 NBAZC 2 CI 3 22 3.18 189 ONG P1 01H 15.66 11C TEH .590 SBUCC 81 NI 3 22 NDF 2 81H 15.66 01H 03H .610 ZPSNM 99 HJ 7 22 .38 148 DFS 1 09H 40.95 TEC TEN .610 NBAZC 53 NI 7 22 .66 159 DFS 1 10H 13.30 TEC TEH .610 NBAZC 53 NJ 7 22 3.47 179 ONG P1 19O 14.43 TEC TEH .610 NBAZC 53 HI 7 22 NDF 2 191 14.43 191 11H .610 ZPSNM 99 NI I 24 22 .50 149 DFS 1 19H 1.61 TEC TEN .619 NBAZC 53 HJ 24 22 3.74 176 ONG P1 19H 33.83 TEC TEN .610 NBAZC 53 HJ 24 22 .22 66 DFS 1 19H 39.25 TEC TEN .610 NBAZC 53 NI 24 22 .52 69 DFS 1 19H 39.86 TEC TEN .610 NBAZC 53 NI 24 22 .77 44 DFS 1 19H 40.58 TEC TEH .610 NBAZC 53 HI 24 22 19.02 179 ONG P1 AV4 14.83 TEC TEN .610 NBAZC 53 NH 24 22 9.42 180 ONG P1 AV4 15.95 TEC TEN .610 NBAZC 53 NJ 24 22 NDF 2 19H 33.83 19H 11H .610 ZPSNH 109 "I 19 24 NDF 2 TSH -14.90 TSH TSH .610 ZPSNM 1 HJ 19 24 3.55 177 ONG Pl 19M 20.85 TEC TEN .610 NBAZC 53 NJ 19 24 2.56 176 DNG P1 19O 26.88 TEC TEN .610 NBAZC 53 NJ 19 24 6.99 179 DNG P1 19H 27.96 TEC TEN .610 NBAZC 53 NJ 19 24 NDF 2 19H 20.85 1O 111H .610 ZPSNM 99 Nj 30 24 NDF 2 TSH -10.43 TSH TSH .610 ZPSNM I HJ 30 24 .72 153 DFS 1 19O 34.62 TEC TEN .610 NBAZC 53 NJ 30 24 3.44 174 ONG P1 19H 35.78 TEC TEN .610 NBAZC 53 NJ 39 24 3.21 185 ONG P1 AVI 5.92 TEC TEN .610 NBAZC 53 NI 30 24 .36 134 DSS P1 1IC .11 TEC TEN .610 NBAZC 53 NJ 39 24 2.57 174 ONG P1 19C 39.58 TEC TEN .610 NBAZC 53 Nj 30 24 .77 162 DFS 1 05C 11.32 TEC TEN .610 NBAZC 53 NJ 30 24 NDF 2 191 35.78 10H 11H .610 ZPSNM 103 NI 35 24 NDF 2 TSH -3.65 TSH TSH .610 ZPSNM 1 NJ 35 24 9.50 179 ONG P1 19H 32.48 TEC TEN .610 NBAZC 53 NJ 35 24 4.22 177 DNG P1 1911 38.33 TEC TEN .610 NBAZC 53 NI 35 24 8.14 180 DNG P1 1MN 39.41 TEC TEN .610 NBAZC 53 NI 35 24 3.09 177 ONG P1 19O 41.92 TEC TEN .610 NBAZC 53 NI 35 24 .33 144 DFS 1 19C 24.22 TEC TEN .610 NBAZC 53 NJ 35 24 8.88 179 DNG P1 19C 26.37 TEC TEN .610 NBAZC 53 NI I 35 24 NDF 2 19H 32.48 1O 111H .610 ZPSNM 103 NJ 35 24 NDF 2 19H 38.33 1H 111H .610 ZPSNM 193 Nj 35 24 NDF 2 19O 39.41 19O 11H .610 ZPSNM 103 NI 35 24 NDF 2 19O 41.92 10H 11H .610 ZPSNM 103 HJ 7 25 7.73 179 ONG P1 19H 37.43 TEC TEN .610 NBAZC 51 NJ 7 25 7.73 179 ONG P1 19O 37.62 TEC TEN .610 NBAZC 51 NJ 7 25 7.92 178 ONG P1 ION 38.93 TEC TEH .610 NBAZC 51 NJ 7 25 3.94 181 ONG P1 191 41.10 TEC TEN .610 NBAZC 51 NJ 7 25 5.17 182 DNT P1 11C .27 TEC TEN .610 NBAZC 51 HI 7 25 2.81 177 ONG P1 10C 40962 TEC TEN .610 NBAZC 51 NJ 7 25 3.10 175 DNG P1 10C 41.77 TEC TEN .619 NBAZC 51 NJ 7 25 NDF 2 19H 41.19 19H 11H .610 ZPSNM 99 Nj 37 25 2.27 175 DNT P1 11H -.58 TEC TEN .610 NBAZC 51 NJ 37 25 3.28 176 DNT P1 11H .51 TEC TEN .610 NBAZC 51 NI 37 25 NDF 2 11H .51 11H 11H .619 ZPSNH 193 NJ 12 26 3.52 186 ONG P1 81H 10.35 TEC TEN .610 NBAZC 53 NJ 12 26 NDF 2 01H 10.35 91H 03H .610 ZPSNM 99 "1 31 26 3.05 182 ONG P1 TSH 6.88 TEC TEN .610 NBAZC 53 NJ 31 26 2.27 167 ONG P1 19O 41.92 TEC TEN .610 NBAZC 53 NJ 31 26 5.05 179 DNT P1 11H .06 TEC TEN .619 NBAZC 53 NJ 31 26 .51 86 DFS 3 AV2 6.16 TEC TEN .610 NBAZC 53 Nj 31 26 NDF 2 TSH 6.88 TSH 911 .619 ZPSNM 109 NI-------------------------

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..46 27 2.63 174 DNT P1 11H -.55 TEC TEH .610 NBAZC 57 HI 46 27 3.09 174 ONT P1 11H .53 TEC TEH .616 NBAZC 57 HI 46 27 .15 131 DFS 1 18C 21.85 TEC TEH .610 NBAZC 57 HI 46 27 NOF 2 11H .53 11H 11H .618 ZPSNM 103 HI I 13 28 3.29 176 ONG P1 87H 41.17 TEC TEH .610 NBAZC 53 HI 13 28 2.56 176 DNT P1 lIC -.56 TEC TEH .610 NBAZC 53 HI 13 28 .49 154 INR 1 s8C 28.90 TEC TEH .610 NBAZC 53 HI 13 28 2.58 180 DNT P1 SiC -.48 TEC TEH .610 NBAZC 53 HI 13 28 2.92 181 ONG PI TSC 6.98 TEC TEH .610 NBAZC 53 HI 13 28 RBOD 07H 08H .610 ZPSNM 99 HI 13 28 NOF 2 07H 41.17 07H 98H .610 ZPSNM 101 HI 13 28 NDF 2 07H 41.17 07H 08H .616 ZPSNH 101 HI I 14 30 NOD TSH TSH .610 ZPSNM 3 HI 14 30 2.21 177 DNG PI 1H 37.03 TEC TEH .610 NBAZC 55 HI 14 30 3.86 180 DNG PI 1H 41.53 TEC TEH .618 NBAZC 55 HI 14 30 NDF 2 10H 41.53 1OH 11H .610 ZPSNM 99 HI I 32 31 NOD 02C 02C .610 ZPSNM 8 Cl 32 31 NMD TEC TEH .610 NBAZC 57 HI I 49 31 NOD TSC TSC .610 ZPSNM 8 CI 49 31 1.87 178 INR PI AV3 .80 TEC TEN .618 NBAZC 55 HI I 38 34 NOD 82C 02C .610 ZPSNM 8 CI 38 34 NDD TEC TEH .610 NBAZC 55 HI I 39 34 NOD 02C 92C .610 ZPSNM 8 CI 39 34 .20 147 DFS 1 l9C 9.52 TEC TEH .610 NBAZC 55 HI I 40 34 NOD 02C 02C .610 ZPSNM 8 CI 40 34 NOD TEC TEH .610 NBAZC 55 HI I 41 34 NOD 02C 02C .610 ZPSNM 8 CI 41 34 2.33 182 ONG P1 95H 11.55 TEC TEN .610 NBAZC 55 HI I 38 35 NOD 02C 02C .610 ZPSNM 8 CI 38 35 NOD TEC TEH .610 NBAZC 61 HI I 39 35 NOD 82C 02C .618 ZPSNM 8 CI I 39 35 1.22 0 PCT 17 P2 AVI .00 TEC TEN .616 NBAZC 61 HI 39 35 4.03 0 PCT 35 P2 AV2 -.83 TEC TEH .610 NBAZC 61 HI 39 35 4.22 0 PCT 36 P2 AV3 .90 TEC TEH .618 NBAZC 61 HI 40 35 NOD 02C 02C .610 ZPSNM 8 CI 40 35 NOD TEC TEH .610 NBAZC 57 HI I 41 35 NOD 02C 02C .610 ZPSNMN 8 CI 41 35 NOD TEC TEH .610 NBAZC 57 HI I 48 35 .25 274 VOL P4 02C .57 02C 02C .610 ZPSNM 8 Cl 48 35 1.41 0 RWS P2 62C .57 TEC TEN .610 NBAZC 57 HI 48 35 .31 8 PCT 6 P6 02C .57 TEC TEH .610 NBAZC 95 HI I 1 36 MOO IIC TEC .616 NBAZC 4 C1 1 36 3.24 170 INR P1 05H 35.84 11H TEH .610 NBAZC 67 HI 1 36 3.24 170 DNT P1 07H -.71 11H TEN .618 NBAZC 67 HI 1 36 4.91 177 DNT P1 LIN .31 LIN TEN .610 NBAZC 67 HI 1 36 NDF 2 07H -.71 07H 07H .610 ZPSNM 99 HI 23 37 NOD TSH TSH .610 ZPSNM 7 HI 23 37 3.19 176 0NG P1 1OH 38.46 TEC TEH .618 NBAZC 69 HI 23 37 6.68 180 DNG P1 ISH 39.57 TEC TEH .618 NBAZC 69 HI 23 37 3.47 178 DNT P1 11H -.22 TEC TEH .610 NBAZC 69 HI 23 37 8.27 181 DNT P1 11H .53 TEC TEH .610 NBAZC 69 HI 23 37 9.46 179 DNT P1 1iC .56 TEC TEH .610 NBAZC 69 HI 23 37 4.89 178 DNG P1 16C 34.87 TEC TEH .610 NBAZC 69 HI 23 37 2.55 174 DNG P1 l1C 38.36 TEC TEH .610 NBAZC 69 HI 23 37 2.55 174 ONG P1 19C 39.83 TEC TEH ,610 NBAZC 69 HI 23 37 3.13 175 DNG P1 16C 39.32 TEC TEH .610 NBAZC 69 HI 23 37 10.14 180 ONG P1 19C 39.96 TEC TEH .610 NBAZC 69 HI 23 37 14.71 180 DNG P1 10C 40.30 TEC TEH .610 NBAZC 69 HI 23 37 14.30 181 DNG P1 16C 41.31 TEC TEH .618 NBAZC 69 HI 23 37 NDF 2 11H .53 11H I1H .618 ZPSNM 99 HI I 37 41 NOO 02C 02C .610 ZPSNM 8 CI 37 41 ODO TEC TEH .610 NBAZC 61 HI I 44 43 NDF 2 TSH -8.52 TSH TSH .610 ZPSNM 7 HI--------------------------------

4---------4-.--4-----+--------4---+---+


+.----,--.-4

-+ --------I ROW COL VOLTS OEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI+ .. +... ......................-----------.........

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  • -o£: OpOCial interest +Point Inspection Results Byron 2 B2R15 CBE 28100401 04/28/2018 21:28:11.................

+---- .... + .... 4-.-,-- .... ....------------

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+.-... 4-. -- +I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENOT POIA PTYPE CAL LI+- -..4.. .-.. ...÷. ... .÷. ..----- --+---- ... ..----- --+".-- -.+--+- ......+ ...........--

--.----... ... +... ..---- .. .. ..--..-+44 44 44 44 44 44 31 31 31 32 32 32 32 32 32 32 32 32 33 33 33 38 38 38 31 31 32 32 21 21 37 37 37 37 21 21 4 4 4 16 16 16 1 1 1 1 1 17 17 18 18 43 43 43 43 43 43 17 17 18 18 19 43 43 43 43 43 43 44 44 44 44 44 44 44 44 44 44 44 44 44 44 44 44 44 44 45 45 45 45 58 50 so 58 50 50 51 51 52 52 52 52 52 52 53 53 53 53 53 54 54 54 54 54 54 54 54 54 54 55 55 55 55 55 3.08 175 DNG 4.59 188 ONG 3.72 179 DNT NDF NDF NDF NDD NOD NDD NOD NDD 4.88 178 DNG 8.08 182 ONG.86 2 INR 2.59 183 ONG 2.51 181 ONG 3.22 182 DNG 6.92 188 ONG NDD NDD NDD NDD 3.82 182 DNG NOF NDD 2.46 75 MBM NDD NDD 3.82 6 BLG NDF 3.27 174 ONG 1.46 0 PCT 3.94 88 NBM NOF NOD 2.23 180 ONG NOD NDD NOD 3.86 182 ONG 2.22 172 ONG NOF 4.37 176 DNT 12.75 177 DNT 3.27 175 ONT 2.24 178 DNT NOF NOD NDD NOD NOD NDD 1.91 176 INR 2.96 177 DNG 3.15 177 ONG 4.87 178 DNT NOF NOD 3.17 183 DNG NDD NOD NOD P1 1OH P1 ION P1 11H 2 18H 2 IOH 2 11 21.57 22.62.75 21.57 22.62.75 P1 04C P1 84C P1 84C P1 04C P1 04C P1 84C P1 04C 5.54 6.65 7.58 8.03 8.56 9.08 9.61 P1 1ON 9.95 2 10H 9.95 6 87C 1.56 1 TSH 2 TSH P1 18H 22 P2 AV2 6 AV3 2 I1H 2.88 2.08 2.01-.31 7.19 2.81 TEC TEN .618 NBAZC 61 NI TEC TEN .610 NBAZC 61 NI TEC TEN .618 NBAZC 61 NI 18H 11H .618 ZPSNN 183 NJ IOH 11H .610 ZPSNM 183 NJ 18H 11H .618 ZPSNP4 103 HI I 02C 82C .610 ZPSNN 8 C1 TSH TSH .619 ZPSNM 11 NI TEC TEN .610 NBAZC 63 NJ I 82C 02C .610 ZPSNH 8 C1 TSH TSH .610 ZPSNH 11 Nj TEC TEN .618 NBAZC 63 NI TEC TEN .610 NBAZC 63 NJ TEC TEN .618 NBAZC 63 NJ TEC TEN .610 NBAZC 63 NJ TEC TEN .610 NBAZC 63 HI TEC TEN .618 NBAZC 63 NJ TEC TEN .618 NBAZC 63 NJ I 02C 02C .610 ZPSNN 8 CI TSH TSH .618 ZPSNM 11 NJ TEC TEN .610 NBAZC 63 NJ I TSH TSH .618 ZPSNN 5 NI TEC TEN .610 NBAZC 59 Nj 10H 11H .610 ZPSNM 163 NI I 02C 02C .618 ZPSNN 8 CI TEC TEN .610 NBAZC 65 NJ I 82C 02C .610 ZPSNN 8 C1 TEC TEN .610 NBAZC 65 Nj I TEC TEN .618 NBAZC 91 Nj TSH TSH .610 ZPSNN 113 NJ I TEC TEN .618 NBAZC 59 Nj TEC TEN .618 NBAZC 59 Nj TEC TEH .619 NBAZC 59 HJ 101 111 .610 ZPSNM 103 Nj I 82C 82C .610 ZPSNH 16 Cj TEC TEN .610 NBAZC 91 NJ I 11C TEC .610 NBAZC 4 Cl 02C 02C .610 ZPSNH 16 Cj 11C TEN .598 SBUCC 79 Hj I TEC TEN .618 NBAZC 91 NJ TEC TEN .618 NBAZC 91 Nj IN 831H .610 ZPSNM 99 NI I I1C TEC .610 NBAZC 2 Cl 11C TEC .618 NBAZC 2 Cl 11H TEN .618 NBAZC 73 Hj 11H TEN .610 NBAZC 73 NJ 11H 11H .610 ZPSNM 89 HJ I 82C 02C .610 ZPSNM 16 Cj TEC TEN .610 NBAZC 93 Nj I T2C 02C .610 ZPSNN 16 Cj TEC TEN .610 NBAZC 91 Nj I TSH TSH .610 ZPSNA 5 Nj TEC TEN .618 NBAZC 59 NJ TEC TEN .610 NBAZC 59 Nj TEC TEN .610 NBAZC 59 Nj TEC TEN .618 NBAZC 59 Nj LOH 11H .610 ZPSNM 103 HJ I 02C 02C .610 ZPSNN 16 CI TEC TEN .610 NBAZC 93 NJ I 02C 02C .610 ZPSNM 16 Cl TEC TEH .610 NBAZC 91 NJ I 02C 92C .610 ZPSNM 16 CI P1 TSH 6.02 P1 81H P1 1OC 2 01H P1 11C P1 liC P1 11C P1 LIN 2 LIN P1 09H P1 1014 P1 liC 2 1OH 1.19 39.92 1.19-.20.69-.20.53-.20 18.92 20.02 8.28.65 8.28 P1 05C 13.38...4" ...4 ...- ...4 ...4" -... -. .. -" ... .. ... ..4".........--

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.. ........" 19 55 3.56 179 DNG P1 10C 35.92 TEC TEH .618 NBAZC 93 HI 19 55 11.67 188 DNG P1 lOC 37.81 TEC TEH .610 NBAZC 93 HI I 46 55 NOD 02C 02C .610 ZPSNM 12 CI 46 55 NDOD 03C 03C .618 ZPSNM 12 CI 46 55 3.28 179 OKG P1 18H 8.77 TEC TEN .610 NEAZC 65 HI 46 55 NDF 2 1OH 8.77 LOH 11H .610 ZPSNN 103 HI I 43 56 2.14 178 ONG P1 09H 14.54 TEC TEN .610 NBAZC 63 HI 43 56 3.62 178 DNG P1 1H 6.75 TEC TEH .610 NBAZC 63 HI 43 56 2.13 180 DNG P1 11H 38.82 TEC TEH .618 NBAZC 63 HI 43 56 NOF 2 iH 6.75 INH I1H .610 ZPSN14 103 Hi 13 57 NOD 82C 02C .610 ZPSNN 10 CI 13 57 NOD TEC TEH .610 NBAZC 93 HI I 12 60 RBD 82C 02C .610 ZPSNN 8 CI 12 68 NOD 02C 0ZC .610 ZPSNM 18 CI 12 60 NDD TEC TEH .618 NBAZC 19 HI 13 60 NOB 02C 02C .610 ZPSNH 8 CI 13 60 3.49 177 DNT P1 IiC -.17 TEC TEH .610 NBAZC 21 HI 13 60 2,34 177 DNG P1 10C 24.65 TEC TEN .610 NBAZC 21 HI 13 60 2.14 74 MBN 6 05C 6.10 TEC TEH .610 NBAZC 21 HI 14 60 RBD 02C 02C .610 ZPSNM 8 CI 14 60 NOD 02C 02C .610 ZPSHN 10 CI 14 60 NOD TEC TEN .610 NBAZC 19 HI 15 60 R8D 02C 02C .610 ZPSNN B Cl 15 68 NOD 82C B2C .610 ZPSNN 10 Cl 15 60 NDD TEC TEN .610 NBAZC 21 HI I 16 60 RBOD 02C 02C .610 ZPSNN 8 CI 16 60 NOD 82C 02C .618 ZPSNN 18 CI 16 60 NOD TEC TEN .610 NBAZC 19 HI I 3 61 NOD 11C TEC .618 NBAZC 2 CI 3 61 NOD 02C 02C .610 ZPSNN 8 CI 3 61 NOD 1IC TEH .590 SBUCC 77 HI 4 61 NDO 1IC TEC .610 NBAZC 4 CI 4 61 NOD 02C 02C .610 ZPSNN 8 CI 4 61 NOD 1IC TEN .590 SBUCC 75 HI I 12 61 NOD 02C 02C .610 ZPSNK 18 CI 12 61 2.17 176 DNT P1 liC .00 TEC TEN .610 NBAZC 19 HI I 13 61 RBD 02C 02C .610 ZPSNM 8 CI 13 61 NOD 02C 02C .618 ZPSNN 18 CI 13 61 NOD TEC TEN .610 NBAZC 21 HI I 14 61 RBD 02C 02C .610 ZPSNM 8 CI 14 61 HOD 02C 02C .610 ZPSNN 10 Cl 14 61 NDD TEC TEN .610 NBAZC 19 HI I 15 61 ROD 02C 02C .610 ZPSNH 8 Cl 15 61 NOD 02C 02C .610 ZPSNN 18 Cl 15 61 2.77 67 MBN 6 11N 10.24 TEC TEN .610 NBAZC 21 HI 15 61 3.11 52 MB14 6 11H 13.67 TEC TEN .610 NBAZC 21 HI I 16 61 RBD 02C 02C .610 ZPSNN 8 CI 16 61 HOD 02C 02C .610 ZPSNH 10 CI 16 61 NDO TEC TEN .610 NBAZC 19 HI I 25 61 NOD TSH TSH .610 ZPSNM 11 NI 25 61 3.30 171 DNT P1 11H .17 TEC TEN .610 NBAZC 71 HI 25 61 NDF. 2 11H .17 1NH 11H .618 ZPSNN 111 HI I 27 61 NDD TEC TEN .610 NBAZC 71 HI 27 61 NDD TSH TSH .610 ZPSNM 113 HI I 31 61 NDD TEC TEN .610 NBAZC 59 HI 31 61 NDD 68H GBH .618 ZPSNM 113 HI 32 61 3.57 68 NBM 6 AVI 15.26 TEC TEN .610 NBAZC 59 HI 32 61 2.81 187 DNG P1 AVI 15.27 TEC TEN .610 NBAZC 59 HI 32 61 NOD 68H 08H .610 ZPSNM 113 HI I 33 61 NDO TEC TEN .618 NBAZC 25 HI---------------------------------------------

4+ 4 + 4 +--------4--, ----4.-.-4 ------+ -+---4--I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI-----------------------------------------------------

-- --------------

--7 ST Max bb -t UZKlb SpecIal interest +Point Inspection Results Byron 2 82R15 CBE 20100401 04/28/2010 21:28:11.. ... +. .. ...+ ....+. ..+ ....÷. .. .. ....----------..--

-.-- ,- .. ..+ ....... .... .... .... ...-- --.. ......- +.- .....--,+..I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI----------------

+--- --------------------------------------

,---4---4--------+


------ ------ -----, 33 61 NOD 08H N8H .610 ZPSNN 113 HI 34 61 NDD TEC TEN .610 NBAZC 25 HI 34 61 NDD 08H N8H .610 ZPSNM 113 HI 35 61 NOD TEC TEN .610 NBAZC 25 HI 35 61 NDD N8H 08H .610 ZPSNM 113 HI 36 61 NOD TEC TEN .610 NBAZC 25 HI 36 61 NOD N8H SON .610 ZPSNM 113 HI 3 62 .28 148 OFS 1 10C 27.38 11C TEC .610 NBAZC 2 CI 3 62 NDD 02C 02C .610 ZPSNM 8 CI 3 62 4.47 79 MBN 6 @ON 27.24 11C TEN .590 SBUCC 77 NJ 4 62 NDD 11C TEC .610 NBAZC 4 CI 4 62 NDOD 02C 02C .610 ZPSNN 8 CI 4 62 NDD 11C TEN .590 SBUCC 75 HI 31 62 .07 126 DFS 1 05H 25.12 TEC TEN .610 NBAZC 61 NI 31 62 3.30 187 ONG P1 11H 15.05 TEC TEN .610 NOAZC 61 NI 31 62 .46 155 DFS 1 09C 23.70 TEC TEN .610 NBAZC 61 NI 31 62 NDD N8H S8H .610 ZPSNM 113 NI 32 62 .15 59 OFS 1 16C 18.23 TEC TEN .610 NBAZC 23 HI 32 62 NDD N8H N8H .610 ZPSNN 113 NI 33 62 NDD TEC TEH .610 NBAZC 23 NI 33 62 NOD 08H SOH .610 ZPSNHM 113 NI 34 62 NOD TEC TEN .610 NBAZC 23 NI 34 62 NOD 08H 08H .610 ZPSNN 113 NI 35 62 NOD TEC TEN .610 NBAZC 23 NI 35 62 NDD N8H 08H .610 ZPSNM 113 NI 36 62 NDD TEC TEN .610 NBAZC 23 NI 36 62 NDD N8H N8H .610 ZPSNN 113 NI 31 63 NDD TSH TSH .610 ZPSNM 9 NI 31 63 NDD TEC TEN .610 NBAZC 25 NI 31 63 NDD S8H N8H .610 ZPSNM 113 NI 32 63 NOD TSH TSH .610 ZPSNM 9 NI 32 63 NDD TEC TEN .610 NBAZC 25 NI 32 63 NOD 08H N8H .610 ZPSNM 113 NI 35 63 NOD TSH TSH .610 ZPSNM 9 NJ 35 63 NOD TEC TEN .610 NBAZC 25 NI 35 63 NOD 68H S8H .610 ZPSNM 113 NI 36 63 NOD TSH TSH .610 ZPSNH 9 NJ 36 63 NDD TEC TEN .610 NBAZC 25 NI 1 36 63 NDD BON 08H .610 ZPSNM 113 NI 29 64 NDD 02C 02C .610 ZPSNN 8 CI 29 64 NDD TSH TSH .610 ZPSNN 11 NI 29 64 NOD TEC TEN .610 NBAZC 73 NI 31 64 NDD TSH TSH .610 ZPSNN 11 HI 31 64 .84 S PCT 16 P2 AV2 .93 TEC TEN .610 NBAZC 23 NI 31 64 NOD 88H N8H .610 ZPSNM 113 NI 32 64 NDD TSH TSH .610 ZPSNN 9 NI 32 64 3.53 179 ONG P1 19C 15.05 TEC TEN .619 NBAZC 23 NI 32 64 NOD S8H S8H .610 ZPSNN 113 NI I I 35 64 NOF 2 TSH -17.68 TSH TSH .610 ZPSNM 11 NI 35 64 NOD TEC TEN .610 NBAZC 23 NI 35 64 NDD S8H S8H .610 ZPSNN 113 NI 36 64 NOD TSH TSH .610 ZPSNM 11 NI 36 64 .19 142 DFS I I0C 2.42 TEC TEN .610 NBAZC 23 NI 36 64 NOD S8H 68H .610 ZPSNM 113 NI 42 64 NOD TSH TSH .610 ZPSNN 11 NI 42 64 3.19 174 ONG P1 ION 16.13 TEC TEN .610 NBAZC 23 NI 42 64 3.18 176 DNG P1 AON 17.80 TEC TEN .610 NBAZC 23 NI 42 64 2.16 165 ONG P1 19C 5.27 TEC TEN .610 NBAZC 23 NI 42 64 8.48 180 DNG P1 19C 6.37 TEC TEN .610 NBAZC 23 NI+ .. ...÷.. .. ....÷.. .+ .. ...÷.. ... .. .÷.. ... .° ÷ .----------

+. .. -.. ... + .. + ...÷ ...4-.. ..--- 4 ...- .-.. ÷ .. ... +I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI------------------------------------------------------------------------------------


-----+---+. .+ ---- -- ----------------

+8 ST Max a" -L; ZKlb Special Interest +Point Inspection Results Byron 2 82R15 CBE 20188481 8412812818 21:28:11 4---- ...........--. .4 ..-- -- ..4 .....-. ...--- -. ....-. .-- -.--, -+--. ..---- ,----- .----. 4 -+4. .....4 ...--- - 4 I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4 ..4. .......÷. ...4. ..-----------.

.....---4 ----- --4. .---.........

4--4 ...-. ....-+ -.... ....--. ...----+ --. .--- -+-4.. .--1 42 64 .37 134 DFS 1 16C 7.58 TEC TEH .610 NBAZC 23 HI 42 64 .32 161 DFS I 89C 25.81 TEC TEH .610 NBAZC 23 HI I 42 64 .16 137 DFS 1 89C 37.72 TEC TEH .610 NBAZC 23 HI 42 64 NDF 2 181 16.13 l8H 11 .610 ZPSNN 189 HI 42 64 NOF 2 LOH 17.80 181 11H .610 ZPSNM 109 HI 48 64 NDD 92C 82C .610 ZPSNN 8 CI 48 64 NDD TSH TSH .618 ZPSNN 9 HI 48 64 NOD TEC TEH .610 NBAZC 23 HI 49 64 NDD 82C 82C .610 ZPSNN 8 CI 49 64 NOD TSH TSH .610 ZPSNM 9 HI 49 64 2.88 174 DNG PI 11H .83 TEC TEH .610 NBAZC 23 HJ 49 64 2.37 179 DNT P1 AV2 .09 TEC TEH .618 NBAZC 23 HI 49 64 3.98 177 ONT P1 AV3 .89 TEC TEH .610 NBAZC 23 HI 49 64 .59 158 DFS 1 09C 37.83 TEC TEH .610 NBAZC 23 HI 49 64 3.28 175 ONG P1 09C 38.90 TEC TEH .618 NBAZC 23 HI 31 65 NDD TEC TEH .610 NBAZC 25 HI 31 65 NOD B8H 88H .610 ZPSNM 113 HI 36 65 49.55 88 PLP 11 ISH .14 TSH TSH .610 ZPSNM 9 HI 36 65 .18 162 DFS I e5C 12.21 TEC TEH .618 NBAZC 25 HI 36 65 NOD 8SH 8 8H .610 ZPSNM 113 HI 48 65 NOD 02C 02C .610 ZPSNM 8 CI 48 65 NDD TEC TEH .610 NBAZC 25 HI 49 65 NDD 82C 82C .610 ZPSNM 8 C1 49 65 .43 267 VOL P4 87C -.58 07C 87C .618 ZPSNN 8 CI I 49 65 .26 104 VOL P4 *7C -.34 87C 07C .610 ZPSNM 8 C1 1 49 65 NOD 82C 02C .610 ZPSNN 12 Cl 49 65 NDD 03C 03C .618 ZPSNM 12 CI 49 65 3.67 0 RWS P2 87C -.58 TEC TEH .610 NBAZC 25 HI 49 65 .66 8 PCT 25 P7 87C -.31 TEC TEH .610 NBAZC 95 HI I I 13 66 3.51 175 DNT P1 11H -.17 TEC TEH .610 NBAZC 21 HJ 13 66 NDF 2 11H -.17 11 11H .618 ZPSNM 87 HI 31 66 NDO TEC TEH .618 NBAZC 23 HI 31 66 NDD 88H 88H .618 ZPSNM 113 HI I36 66 44.32 87 PIP 11 TSH .87 TSH TSH .610 ZPSN 9 HI 36 66 45.55 87 PLP 11 TSH .12 TSH TSH .610 ZPSNN 17 HI 36 66 NDO TEC TEH .610 NBAZC 23 HI 36 66 NDOD 8H e8H .618 ZPSNM 113 HI 34 78 1.84 182 INR P1 01H 20.51 TEC TEH .618 HBAZC 23 HI 34 70 3.21 182 DNG P1 08H 2.22 TEC TEH .618 NBAZC 23 HI 34 70 NDF 2 88H 2.22 08H 09H .610 ZPSNM 109 HI 46 78 3.35 176 DNG P1 181 17.45 TEC TEH .610 NBAZC 23 HI 1 46 70 2.15 174 ONG P1 18O 28.21 TEC TEH .610 NBAZC 23 HI 1 46 70 .26 147 DFS 1 02C 12.53 TEC TEH .618 NBAZC 23 HI 46 70 NDF 2 181 17.45 18H 11H .610 ZPSNM 109 HI 49 70 .96 270 VOL P4 07C -.49 07C 07C .610 ZPSNM 8 CI 49 70 NDD 02C 02C .610 ZPSNM 12 C1 49 78 NDOD 3C 03C .618 ZPSNM 12 Cl 49 78 6.11 179 DNG P1 81 13.88 TEC TEH .610 NBAZC 23 HI 49 70 1.18 172 INR P1 10H 27.78 TEC TEH .610 NBAZC 23 HI 49 70 5.88 180 0NG P1 181 28.73 TEC TEH .610 NBAZC 23 HI 49 70 2.02 178 DNT P1 AV3 .07 TEC TEH .618 NBAZC 23 HI 49 70 1.86 177 INR P1 AV4 .15 TEC TEH .618 NBAZC 23 HI 49 70 5.80 79 RWS P2 87C -.49 TEC TEH .618 NBAZC 23 HI 49 70 1.48 0 PCT 38 P7 07C -.49 TEC TEH .610 NBAZC 95 HJ I I 39 71 NDD TSH TSH .610 ZPSNN 9 HJ 39 71 4.62 177 0NT P1 111 .56 TEC TEN .610 NBAZC 25 HI 39 71 NDF 2 11H .56 11H 11H .610 ZPSNN 109 HI 38 73 NDD B2C 82C .610 ZPSNM 8 CI 30 73 2.61 177 DNG P1 03C 14.61 TEC TEN .618 NBAZC 29 HI 1 46 73 3.45 173 DNT P1 11H .64 TEC TEN .618 NBAZC 29 HI 1 46 73 4.84 74 HEBM 6 11H 27.12 TEC TEH .618 NBAZC 29 HI 46 73 1.27 5 INR P1 02C 15.84 TEC TEH .610 NBAZC 29 HI 46 73 NDF 2 11H .64 11H 11H .618 ZPSNM 189 HI 49 73 .64 0 PCT 22 P4 87C -.44 .71 .23 35 07C 07C .618 ZPSNM 8 CI-----------------

4 -----4-----4-- -------------------------4---4--------4

---4 4 ----------

4 -.......I ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI----------------------------------------------


------ -----4--9 ST Max SU -U BZR15 Special Interest +Point Inspection Results Byron 2 82R15 CBE 28180481 84/28/2010 21:28:11-..-..- ....+.. ..-----------

+--- ..---+.----.-------+

.... ----------------------------

4 -. -------------------

+---- ---++.- ---.-I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI+.--- 4 -I -----------------------------------------------------------------

..-..-..--------------------------

--- 4--+49 73 .37 277 VOL P4 87C -.43 07C 87C .610 ZPSNM 8 CI 49 73 2.23 183 ONT P1 AV2 -.09 TEC TEH .610 NBAZC 25 NI 49 73 2.28 8 RWS P2 07C -.17 TEC TEH .618 NBAZC 25 HI 49 73 2.25 132 RWS P2 87C -.17 TEC TEN .610 NBAZC 95 NJ 46 74 2.87 175 DNG P1 81H 9.69 TEC TEH .618 NBAZC 27 NI 46 74 2.28 176 ONG P1 SIN 18.35 TEC TEN .619 NBAZC 27 1I 46 74 4.74 176 DNG P1 81H 18.74 TEC TEH .618 NBAZC 27 NI 46 74 4.43 177 DNG P1 01H 11.04 TEC TEH .610 NBAZC 27 NI 46 74 4.14 175 DNG P1 81H 11.40 TEC TEH .618 NBAZC 27 NI 46 74 14.58 188 DNG P1 81H 12.15 TEC TEH .610 NBAZC 27 NI 46 74 2.54 178 DNG P1 09H 20.35 TEC TEH .610 NBAZC 27 HI 46 74 3.20 178 ONG P1 IOH 1.96 TEC TEH .610 NBAZC 27 HI 46 74 2.74 177 DNG PI 18C 11.46 TEC TEN .618 NBAZC 27 HI 46 74 NDF 2 IOH 1.96 10H 11H .610 ZPSNM 109 HI I I 47 76 3.10 173 ONG P1 01H 8.00 TEC TEH .610 NBAZC 27 HI 47 76 4.02 174 DNG P1 81H 9.08 TEC TEH .610 NBAZC 27 NI 1 47 76 3.78 174 DNG P1 01N 9.69 TEC TEH .610 NBAZC 27 HI 47 76 1.92 175 INR P1 01H 10.25 TEC TEN .610 NBAZC 27 HI 1 47 76 3.09 175 INR P1 811 18.97 TEC TEN .618 NBAZC 27 NI 1 47 76 9.67 178 ONG P1 01H 11.58 TEC TEN .618 NBAZC 27 NI 1 47 76 7.54 180 ONG P1 SIN 12.00 TEC TEN .610 NBAZC 27 HI 47 76 17.34 180 ONG P1 01H 12.69 TEC TEN .618 NBAZC 27 HI 1 47 76 .48 164 DFS 1 0881 32.03 TEC TEN .618 NBAZC 27 HI 1 47 76 1.87 184 INR P1 11H 21.79 TEC TEN .618 NBAZC 27 NI 1 47 76 2.02 178 ONG P1 AV4 25.89 TEC TEN .610 NBAZC 27 HI 1 47 76 2.54 178 ONG P1 AV4 26.93 TEC TEN .610 NBAZC 27 NI 47 76 NOF 2 @IN 8.88 HIN 03H .610 ZPSNM 109 NI 47 76 NOF 2 11H 9.08 01H 03H .610 ZPSNM 189 HI 47 76 NOF 2 01H 9.69 81H 03H .610 ZPSNM 189 NI 47 76 NDF 2 811 11.58 01H 03H .610 ZPSNM 109 NI 47 76 NDF 2 0IH 12.00 01H 03H .610 ZPSNM 109 NI 47 76 NDF 2 SIN 12.69 011 03H .610 ZPSNM 189 NI 10 77 NOD TSH TSH .610 ZPSNM 9 HI 10 77 NOF 2 TSC .00 TSC TSC .610 ZPSNM 1i CI 10 77 11.26 45 DTS P4 TSC .08 TEC TEN .610 NBAZC 41 HI 48 79 3.61 177 DNG P1 ION 3.56 TEC TEN .610 NBAZC 29 HI I48 79 NOF 2 1SH 3.56 ION 111 .610 ZPSNM 111 NH 25 81 .29 146 DFS 1 SIN 24.26 TEC TEN .610 NBAZC 33 NH 25 81 3.05 178 DNT P1 03H .73 TEC TEN .610 NBAZC 33 NH 25 81 NOF 2 03H .73 03H 03H .610 ZPSNM 111 NJ 45 82 3.20 176 DNG P1 SIN 10.81 TEC TEN .610 NBAZC 27 NJ 45 82 4.04 177 DNG PI 01H 11.84 TEC TEN .610 NBAZC 27 NI 45 82 HDF 2 01H 10.01 81H 03H .610 ZPSNM 111 NJ 45 82 NOF 2 SIN 11.04 01H 03H .610 ZPSNM 111 NJ I I 49 82 9.88 177 DNG P1 01H 10.19 TEC TEN .618 NBAZC 27 NI 49 82 15.18 178 ONG P1 81H 11.21 TEC TEN .610 NBAZC 27 NI 49 82 2.90 174 DNG P1 811 12.85 TEC TEN .610 NBAZC 27 NI 49 82 3.09 175 DNG P1 811 13.21 TEC TEN .610 NBAZC 27 HI 49 82 1.29 170 INR P1 091 38.99 TEC TEN .610 NBAZC 27 NI 1 49 82 3.21 176 DNG P1 09H 40.18 TEC TEN .610 NBAZC 27 NI 1 49 82 1.91 183 INR P1 03C 9.34 TEC TEN .610 NBAZC 27 NI 49 82 NOF 2 09H 40.10 89H 18H .610 ZPSNU 111 NI 1 84 NDD 11C TEC .610 NBAZC 2 CI 1 84 4.11 184 DNT P1 111 .36 11H TEN .618 NBAZC 43 NH 1 84 NOD 11H lIC .580 NPUM8 85 NI 1 84 NOF 2 1114 .36 11H 11H .618 ZPSNM 89 NI 22 89 3.77 177 DNG P1 9814 34.54 TEC TEN .610 NBAZC 37 HJ 22 89 HDF 2 08H 34.54 68H 09H .618 ZPSNM 111 HI 1 93 NDD I1C TEC .610 NBAZC 2 CI 1 93 3.29 174 DNT P1 05H -.44 11H TEN .610 NBAZC 43 HI 1 93 2.74 174 DNT P1 05H .66 11H TEN .610 NBAZC 43 NI 1 93 1.08 176 INR P1 11H .84 11H TEN .618 NBAZC 43 HI 1 93 HOF 2 85H -.44 85H 85H .610 ZPSNM 89 NI 1 98 NDD 11C TEC .610 NBAZC 2 CI 1 98 3.28 183 DNT P1 111 -.14 11H TEN .610 NBAZC 43 HI 1 98 NOF 2 111 -.14 11H 11H .610 ZPSNM 89 HI 1 23 98 2.43 185 DNG P1 01H 19.20 TEC TEN .610 NBAZC 35 HI 1 23 98 3.74 182 DNG P1 01H 25.95 TEC TEN .618 NBAZC 35 HI S.... ÷.... ........+ .... +.... ... .. .... + .....-- -----+. + .. ..... .+.. .+ .. +. ..÷ ... ÷.. ....-- -----------4 4--.I ROW COL VOLTS DEG IND PER CNU LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 1-- ----------------------------------------------

--18 ST Max S- ~D~. Kou apeclal Interest +Point Inspection Results Byron 2 B2R15 CBE 20100481 0412812018 21:28:11.. .... ... .... +.. .... ...-- -+---- +---- -.. .. .÷ .. .. .+ .+. .. ..+ ... .------ -...--- -+ .....-- -.. ..÷ ... .-.----, -...-- 4-- , I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI S+----------------------------------4----,--.-,------,---+------*


+ -----,----,- 4 -+---+....1 23 98 NOF 2 S1H 19.20 114 83H .610 ZPSNH 111 HI 1 23 98 NDF 2 811 25.95 G1H 83H .610 ZPSNM 111 HI 15 101 NOD TSH TSH .619 ZPSNM 15 HI 15 181 3.29 178 DNG P1 83H 27.78 TEC TEN .610 NBAZC 41 HI 15 101 2.46 175 DNG P1 65C 2.02 TEC TEN .619 NBAZC 41 HI 15 101 NDF 2 83H 27.78 83H 85H .618 ZPSN4 111 HI 23 102 NOD 02C 02C .618 ZPSNM 1 Cj 23 102 NOD TSH TSH .610 ZPSNM 13 NI 23 182 NOD TEC TEN .618 NBAZC 39 HI 24 182 NDD 02C 02C .610 ZPSNM 18 CI 24 102 NOD TSH TSH .610 ZPSNM 13 NI 24 182 NOD TEC TEN .610 NBAZC 39 NI 25 102 NOD 02C 82C .610 ZPSNM 18 CI 25 182 NOD TSH TSH .618 ZPSNM 13 NI 25 102 NOD TEC TEN .610 NBAZC 39 HI 23 103 NOD 82C 92C .618 ZPSNM 10 CI 1 23 103 NOD TEC TEN .618 NBAZC 41 NI I I 1 24 103 NOD 02C 02C .610 ZPSNM 18 CI 1 24 103 NOD TEC TEN .618 NBAZC 41 NI 25 103 NOD 02C 02C .618 ZPSNM 18 CI 25 103 NOD TEC TEN .610 NBAZC 41 NI 24 184 NOD 02C 02C .610 ZPSNM 18 CI 24 104 NOD TEC TEN .610 NBAZC 39 HI 31 104 3.17 177 DNT P1 111 -.47 TEC TEN .618 NBAZC 39 NJ 31 184 6.49 181 DNG P1 11H 3.70 TEC TEN .618 NBAZC 39 NH 31 184 7.99 181 ONG P1 LIN 4.88 TEC TEN .610 NBAZC 39 NI 31 104 NDF 2 11H -.47 1N 11H .618 ZPSNM 111 HI 26 105 3.31 185 DNG PI 03H 24.42 TEC TEN .610 NBAZC 41 HI 26 105 3.12 184 DNG P1 07H 1.66 TEC TEN .610 NBAZC 41 NI 26 105 2.66 185 ONG P1 07H 8.72 TEC TEN .610 NBAZC 41 NI 26 105 2.89 184 DNG P1 87H 15.86 TEC TEN .618 NBAZC 41 HI*h 26 105 3.34 184 ONG P1 07H 22.77 TEC TEN .610 NBAZC 41 NI 26 105 3.19 184 DNG P1 07H 29.86 TEC TEN .618 NBAZC 41 HI 26 185 3.18 184 DNG P1 07H 36.88 TEC TEN .610 NBAZC 41 HI 26 105 2.87 184 DNG P1 88H .97 TEC TEN .618 NBAZC 41 NI 1 26 185 3.89 184 DNG P1 88H 7.97 TEC TEN .618 NBAZC 41 NI 26 105 3.52 184 DNG P1 88H 15.11 TEC TEN .610 NBAZC 41 HI 26 185 2.99 184 DNG P1 88H 22.05 TEC TEN .610 NBAZC 41 NI 26 105 3.42 183 DNG P1 881 36.22 TEC TEN .618 NBAZC 41 NI 26 105 3.41 177 DNT P1 09H -.47 TEC TEN .610 NBAZC 41 NI 26 185 2.69 184 DNT P1 09H .25 TEC TEN .618 NBAZC 41 NI 26 105 2.21 173 DNT P1 09H .61 TEC TEN .610 NBAZC 41 NI 26 105 2.44 184 DNG P1 89H 7.29 TEC TEN .610 NBAZC 41 NI 26 185 3.11 183 ONG P1 09H 21.44 TEC TEN .610 NBAZC 41 NI 1 26 105 2.74 184 DNG P1 09H 35.52 TEC TEN .610 NBAZC 41 HI I 26 105 2.89 184 DNT P1 18O -.39 TEC TEN .618 NBAZC 41 NI 1 26 105 2.47 184 ONG P1 1N 20.83 TEC TEN .610 NBAZC 41 NI I 26 105 2.23 184 ONG P1 ION 27.83 TEC TEN .610 NBAZC 41 HI 1 26 105 2.53 184 ONG P1 LIN 20.19 TEC TEN .610 NBAZC 41 NI 1 26 105 2.49 185 ONG P1 11H 27.57 TEC TEN .610 NBAZC 41 NI I 26 185 2.18 181 DNG P1 AV2 -1.97 TEC TEN .610 NBAZC 41 NI 1 26 105 2.32 182 ONG P1 AV2 28.33 TEC TEN .618 NBAZC 41 NI I 26 105 2.45 182. ONG PI AV4 5.87 TEC TEN .618 NBAZC 41 NI I 26 185 2.07 186 DNT P1 87C -.17 TEC TEN .618 NBAZC 41 NI 1 26 105 NDF 2 07H 1.66 07H ION .610 ZPSNN 111 NI I 26 185 NDF 2 87H 8.72 87H 181 .618 ZPSNM 111 NI 1 26 185 NDF 2 07H 22.77 07H ION .610 ZPSNM 111 NI 1 26 105 NDF 2 07H 29.86 07H 184 .618 ZPSNM 111 NI 1 26 105 NDF 2 07H 36.88 07H IOH .610 ZPSNN 111 NI 1 26 105 NDF 2 98H .97 07H 1N .618 ZPSNN 111 NI 26 185 NDF 2 88H 7.97 87H 18O .618 ZPSNH 111 "I 26 105 NDF 2 88H 15.11 07H ION .610 ZPSNN 111 NI 26 105 NDF 2 88H 22.85 07H ION .618 ZPSNM 111 NI 26 105 NDF 2 88H 36.22 7H 1ION .610 ZPSNM 111 Ni 26 185 NDF 2 09H -.47 07H 18O .610 ZPSNN 111 NI 26 105 NDF 2 89H .25 07H 18H .610 ZPSNK 111 NI 26 185 NDF 2 09H .61 07H 181 .610 ZPSNM 111 NI 26 105 NDF 2 89H 7.29 07H ION .610 ZPSNM 111 NI 26 105 NDF 2 99H 21.44 07H 181 .610 ZPSNM 111 NI 26 105 NDF 2 89H 35.52 07H 181 .618 ZPSNI 111 NI+4. ..÷ ...+ ... ... +... +... ÷... +... ÷... ÷... .. ..-- -.........

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11 ST Max OLIl1i *pectai Interest *Point Inspection Results Byron 2 B2R15 CBE 20180401 84/28/2010 21:28:11..----------------------

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+.....- -I ROW COL VOLTS DEG IND PER CNN LOCH INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI 4* .. .4* ... -. ..- .. ..* ..4 .....-----------.

+- ---+ ....-- -. -----+-+... .4 .... -.... 4---- .. ...+-- --+.-- ... ..--- 4*I ST Max Byron 2 B2R15 CBE 20100401 04/30/2010 07:48:13÷ ... -.... + --4-- ... ...----++. ---+.... -.. -.----+-.- " ......+ ---- ---+". ....-----+-.. .." .-------". .- .- .-.. ...-- 4" I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI*.. ....4. .1. .1. ..-----------.

..---- .---- .. .. .. .... ... ..-I---+- ---.. ..- -.. 1. ..+ -.----+- ---+ ...----- +-+.-.. ...-- 4" 15 46 NOF 2 11H -.25 53 53 53 53 53 53 53 53 53 53 54 54 54 54 54 54 54 54 54 54 54 54 54 54 54 54 55 55 NOD NDD NOD NDD NDD NOD NOD.32 137 DFS NOD NOD NOD NOD 2.22 169 DNT 2.93 171 DNT 3.55 170 DNT 4.58 173 DNT NDF NDF NDF NOD NOD 1.55 173 INR 1,87 176 INR 1 03C 13.90 P1 03H P1 03H P1 05H P1 05H 2 03H 2 05H 2 05H P1 05H P1 05H-.30 70-.30 60.70-.30 60-,41.48 11H 11H .610 ZPSNN 111 HI I 11C TEC .610 NBAZC 4 CI 06C 06C .610 ZPSNM 12 CI 11H TEH .610 SBACC 73 HI 11H I1C .580 NPUM8 99 HI IIC TEC .610 NBAZC 4 CI 06C 06C .610 ZPSNM 12 CI 11H TEN .610 NBAZC 75 HI 11C TEC .610 NBAZC 4 CI 06C 06C .610 ZPSNM 12 CI 11C TEH .590 SBUCC 81 Hf 11C TEC .610 NBAZC 4 CI 06C 06C .610 ZPSNM 12 CI 11H TEH .610 SBACC 73 HI 11H TEH .610 SBACC 73 HI 11H TEH .610 SBACC 73 Hf 11H TEH .610 SBACC 73 HI 03H 03H .610 ZPSNN 113 HI 05H 05H .610 ZPSNM 113 HI 05H 05H .610 ZPSNN 113 HI 11C TEC .610 NBAZC 4 Cl 06C 06C .610 ZPSNM 12 CI 11H TEH .610 NBAZC 75 HI 11H TEH .610 NBAZC 75 HI 11C TEC .610 NBAZC 4 Cl 06C 06C .610 ZPSNM 12 CI 11C TEH .590 SBUCC 81 HI I1C TEC .610 SBACC 2 CI 06C 06C .610 ZPSNM 12 CI NOD NOD NOD 2 2 NOD NOD 1 2 55 3.37 177 DNT P1 03H .69 11H TEH .610 NBAZC 31 HI 1 2 55 1.95 176 INR P1 05H -.52 11H TEH .610 NBAZC 31 HI 1 2 55 5.86 178 DNT P1 05H .69 11H TEH .610 NBAZC 31 HI 1 2 55 4.39 73 MBM 6 08H 32.57 11H TEH .610 NBAZC 31 HI 3 55 NOD 11C TEC .610 SBACC 2 CI 3 55 NOD 06C 06C .610 ZPSNM 12 Cl 3 55 NOD 11C TEH .590 SBUCC 81 HI 49 55 2.86 14 PVN P1 TSH 1.19 TEC TEH .610 NBAZC 55 HI 1 49 55 4.02 179 DNT P1 AV2 .10 TEC TEH .610 NBAZC 55 HI 1 49 55 NDF 2 TSH .06 TSH TSH .610 ZPSNM 103 HI I I 1 56 NOD 11C TEC .610 NBAZC 4 CI 1 56 NOD 06C 06C .610 ZPSNM 12 Cl 1 56 8.49 178 DNT P1 03H -.25 11H TEH .610 NBAZC 29 HI 1 56 11.68 178 DNT P1 03H .75 11H TEH .610 NBAZC 29 HI 1 56 10.28 178 DNT P1 05H -.22 11H TEH .610 NBAZC 29 HI 1 1 56 13.84 179 DNT P1 05H .75 11H TEH .610 NBAZC 29 HI 1 1 56 2.27 174 DNT P1 07H .75 11H TEH .610 NBAZC 29 HI 1 1 56 NDF 2 03H -.25 03H 03H .610 ZPSNM 113 HI I 1 56 NOF 2 03H .75 03H 03H .610 ZPSNN 113 HI 1 56 NDF 2 05H -.22 05H 05H .610 ZPSNM 113 HI 1 56 NOF 2 05H .75 05H 05H .610 ZPSNM 113 HI 2 56 NOD 11C TEC .610 NBAZC 4 CI 2 56 NOD 06C 06C .610 ZPSNM 12 CI 1 2 56 3.39 176 DNT P1 03H -.38 IlH TEH .610 NBAZC 27 HI 1 2 56 6.18 177 DNT P1 03H .67 11H TEH .610 NBAZC 27 HI 1 2 56 5.48 177 DNT P1 05H -.19 11H TEH .610 NBAZC 27 HI 1 2 56 6.04 176 DNT P1 05H .72 11H TEN .610 NBAZC 27 HI I I 3 56 NOD 11C TEC .610 NBAZC 4 Cj 3 56 NOD 06C 06C .610 ZPSNM 12 Cl 3 56 2.02 176 DNT P1 03H .69 11C TEH .590 SBUCC 81 HI 3 56 2.90 177 DNT P1 05H .69 11C TEH .590 SBUCC 81 HI 1 57 NOD 11C TEC .610 NBAZC 4 CI 1 57 NOD 06C 06C .610 ZPSNM 12 CI 1 1 57 NOD 02C 02C .610 ZPSNM 14 CI 1 1 57 8.89 178 ONT P1 03H -.22 11H TEH .610 NBAZC 25 HI 1 1 57 8.89 177 DNT P1 03H .58 11H TEH .610 NBAZC 25 HI J 1 57 8.49 178 ONT P1 05H -.22 11H TEH .610 NBAZC 25 HI 1 1 57 9.62 176 DNT P1 05H .52 11H TEH .610 NBAZC 25 HI 1.. ..." ... 1......1..

..-----------.

.... ----+ ...................

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-+.. 1+----+--

-...--+ -+--. .4..- ÷I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI*1.. 1 .-....... .... ." .1 .1 .1. ...-----------

+----+--..

... .-- ÷ ....-- ... .1+. .-- -. .-- -. ..- ..-- -- ---+ -+ .- --....- -÷2 ST Max Byron 2 B2RI5 CBE 20109401 04/30/2010 07:48:13------------------

+------ ---------------------

+------------------+------------


---.-+ -----------

I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI÷ ...÷ .. ÷ .. .. .. -- ..-- .. .-- ...-- ...÷- ..--- ... ...-- ... .. ..-- .- .. ...-÷ .. .. .t .. -...÷ .. ÷ .. .. ÷ ..-- -... -÷ ......-÷- °-M 1 57 4.60 185 INR P1 11H .37 11H TEH .610 NBAZC 25 HI O 2 57 NOD 11C TEC .610 SBACC 2 CI 2 57 NDD 06C 06C .610 ZPSNHM 12 CI 2 57 NDD 02C 02C .610 ZPSNM 14 CI 2 57 5.66 178 DNT PI 03H -.19 11H TEH .610 NBAZC 27 J 2 57 6.54 177 DNT P1 03H .66 11H TEN .610 NBAZC 27 HI 2 57 6.61 177 DNT P1 95H -.28 11H TEN .610 NBAZC 27 HI 2 57 2.74 173 DNT P1 05H .69 11H TEH .610 NBAZC 27 HI 2 57 2.64 174 DNT P1 67H -.38 11H TEN .610 NBAZC 27 HI 2 57 2.33 176 DNT P1 67H .72 11H TEN ,610 NBAZC 27 NI 3 57 NOD 11C TEC .610 SBACC 2 CI 3 57 NOD 06C 06C .610 ZPSNM 12 CI 3 57 NOD 02C 02C .610 ZPSNM 14 CI 3 57 2.04 180 DNT P1 03H .69 11C TEN .590 SBUCC 81 HJ 3 57 1.84 178 INR P1 05H -.41 11C TEN .590 SBUCC 81 NI 1 58 NDD 11C TEC .610 NBAZC 4 Cl 1 58 NOD 02C 02C .610 ZPSNM 14 CI 1 58 7.66 179 DNT P1 03H -.19 11H TEN .610 NBAZC 25 HN 1 58 11.75 178 DNT P1 03H .58 11H TEN .610 NBAZC 25 NI 1 58 12.24 179 DNT P1 05H -.22 11H TEN .610 NBAZC 25 NI 1 1 58 13.55 178 DNT P1 05H .55 11H TEN .610 NBAZC 25 HI 1 1 58 2.88 175 DNT PI 07H -.25 11H TEN .610 NBAZC 25 NI 1 1 58 2.69 173 DNT P1 07H .74 11H TEN .610 NBAZC 25 NI 1 2 58 NOD 11C TEC .610 NBAZC 4 Cl I 2 58 NOD 02C 02C .610 ZPSNM 14 CI 1 2 58 2.74 173 DNT P1 03H -.38 11H TEN .610 NBAZC 27 NI 1 2 58 4.96 176 DNT P1 03H .69 1lH TEN .610 NBAZC 27 HI 2 58 4.82 175 DNT P1 05H -.30 11H TEN .610 NBAZC 27 NI 1 2 58 6.04 176 ONT P1 05H .69 11H TEN .610 NBAZC 27 NI 3 58 NOD 11C TEC .610 NBAZC 4 Cl 3 58 NOD 02C 02C .610 ZPSNM 14 CI 3 58 2.93 179 ONT P1 03H .71 11C TEN .590 SBUCC 77 NI 3 58 3.19 179 DNT P1 05H -.41 11C TEN .590 SBUCC 77 HJ I 3 58 3.84 179 DNT P1 05H .69 11C TEN .590 SBUCC 77 NJ 1 59 NOD 11C TEC .610 NBAZC 4 Cl 1 59 NOD 02C 02C .610 ZPSNN 14 CI 1 59 7.26 180 DNT P1 03H -.19 11H TEN .610 NBAZC 25 NI 1 59 10.79 178 DNT P1 03H .55 11H TEN .610 NBAZC 25 NI 1 59 8.23 180 DNT P1 65H -.19 11H TEN .610 NBAZC 25 HI 1 1 59 10.60 177 DNT P1 05H .52 11H TEN .610 NBAZC 25 NI 1 1 59 2.13 177 DNT P1 07H -.22 11H TEN .610 NBAZC 25 NI 1 1 59 3.81 184 DNT P1 11H -.17 11H TEN .610 NBAZC 25 NJ 1 1 59 4.64 177 DNT P1 11H .40 11H TEN .610 NBAZC 25 NI 2 59 NOD 11C TEC .610 SBACC 2 CI 2 59 NOD 02C 02C .610 ZPSNM 14 Cj 2 59 1.78 175 INR P1 03H -.47 11H TEN .610 NBAZC 25 NI 2 59 4.20 176 DNT P1 03H .55 11H TEN .610 NBAZC 25 NI 2 59 6.87 178 DNT Pi 05H -.25 11H TEN .610 NBAZC 25 NI 2 59 6.87 178 DNT P1 05H .60 11H TEN .610 NBAZC 25 NI 3 59 NDD 11C TEC .610 SBACC 2 CI 3 59 NOD 62C 02C .610 ZPSNN 14 CI 3 59 2.04 179 DNT P1 03H .69 11C TEN .590 SBUCC 77 NI 3 59 3.74 181 DNT P1 05H -.38 11C TEN .590 SBUCC 77 NI 3 59 2.63 177 DNT P1 05H .69 11C TEN .590 SBUCC 77 NI 1 48 63 .44 81 VOL P4 07C .34 07C 07C .610 ZPSNM 12 CI 1 48 63 .70 0 PCT 24 P4 07C .37 1.04 .33 50 07C 07C .610 ZPSNM 12 CI 1 48 63 .18 95 VOL P4 05C .00 05C 05C .610 ZPSNN 12 CI 1 48 63 2.58 0 RWS P2 07C .00 TEC TEN .610 NBAZC 63 NI 1 48 63 1.51 0 RWS P2 05C .00 TEC TEN .610 NBAZC 63 NI 1 48 63 3.26 101 RWS P2 07C -.17 TEC TEN .610 SBACC 91 NI 1 48 63 .23 0 PCT 6 P6 05C .03 TEC TEN .610 SBACC 91 NI 24 65 .26 80 VOL P4 02C .94 02C 03C .610 ZPSNM 12 CI 24 65 .32 91 PCT 31 2 02C .95 .29 .19 29 02C 03C .610 ZPSNM 12 CI 24 65 .49 152 OFS 1 02C 1.17 TEC TEN .610 NBAZC 59 NI 24 67 NOD TEC TEN .610 NBAZC 59 NI 24 67 NOD 05H 05H .610 ZPSNM 95 NJ 25 67 NOD TEC TEN .610 SBACC 57 NI 25 67 NOD 65H 65H .610 ZPSNM 95 NJ-------------------------------

+----+-----+-----+-----+------.------+

.4 -----+-----+-----+

-.-.--------

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI.4-..-- +. ... ---.--------.----.----

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-ST Max Byron 2 82R15 CBE 20100401 04/30/2010 07:48:13-------------------------

+---------+-----+------+----+-----+--------+--+

-+ -----+-----+-----+-

+ ------- +--I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI--------------------------------

+---------+-----+-----+-----+-----+----+---+--+

-+ -----+----+- + ---- +--26 67 NOD TEC TEH .610 SBACC 57 HI 26 67 NOD 65H 05H .610 ZPSNM 95 HI 24 68 NOD TEC TEH .610 NBAZC 59 HI 24 68 NOD 05H 05H .610 ZPSNM 95 HI 25 68 NOD TEC TEH .610 NBAZC 59 HI 25 68 NOD 05H 05H .610 ZPSNM 95 HI 26 68 NOD TEC TEH .610 NBAZC 59 HI 26 68 NOD 05H 05H .610 ZPSNM 95 HI 25 69 NDF 2 TSH -16.48 TSH TSH .610 ZPSNM 11 HI 25 69 3.51 70 MBM 6 09C 38.70 TEC TEH .610 SBACC 57 HI 25 69 NOD 05H 05H .610 ZPSNN 95 HI 26 69 NOD TSH TSH .610 ZPSNM 11 Hf 26 69 NOD TEC TEH .610 SBACC 57 HI 26 69 NOD 05H 05H .610 ZPSNN 95 Hf 22 70 NOD TSH TSH .610 ZPSNM 9 Hf 22 70 NOD TEC TEH .610 NBAZC 63 Hf 22 70 NOD 05H 05H .610 ZPSNM 95 Hl 23 70 NOD TSH TSH .610 ZPSNN 9 Hf 23 70 NOD TEC TEH .610 NBAZC 63 Hf 23 70 NOD 05H 05H .610 ZPSNM 95 HI I 24 70 NOD TSH TSH .610 ZPSNM 9 HI 24 70 NOD TEC TEH .610 NBAZC 59 HI 24 70 NOD 05H 05H .610 ZPSNM 95 Hf I 25 70 NOD TSH TSH .610 ZPSNM 9 HI 25 70 NOD TEC TEH .610 NBAZC 59 HI 25 70 NOD 05H 05H .610 ZPSNN 95 Hf 26 70 NOD TSH TSH .610 ZPSNM 9 Hf 26 70 1.80 0 PCT 25 P2 AV2 .00 TEC TEH .610 NBAZC 59 Hf 26 70 1.19 0 PCT 20 P2 AV3 .00 TEC TEH .610 NBAZC 59 Hf 26 70 NOD 05H 05H .610 ZPSNM 95 Hf 22 71 NOD TEC TEH .610 SBACC 61 Hf 22 71 NOD 05H 05H .610 ZPSNN 95 Hf 23 71 .40 76 DFS 3 11H 1.29 TEC TEH .610 SBACC 61 Hf 23 71 NOD 05H 05H .610 ZPSNM 95 Hf 24 71 NOD TEC TEH .610 SBACC 61 Hf 24 71 NDD 05H 05H .610 ZPSNN 95 Hf 25 71 NOD TEC TEH .610 SBACC 57 Hl 25 71 NOD 05H 05H .610 ZPSNM 95 HI I.26 71 1.81 182 INR P1 03H 21.00 TEC TEH .610 SBACC 57 HI 26 71 .32 118 DFS 1 02C 3.24 TEC TEH .610 SBACC 57 Hf 26 71 3.57 169 ONG P1 02C 5.13 TEC TEH .610 SBACC 57 HI 26 71 NOD 05H 05H .610 ZPSNM 95 HI I 24 77 3.21 178 ONG P1 05H 18.85 TEC TEH .610 NBAZC 29 Hf 24 77 NOF 2 05H 18.85 05H 07H .610 ZPSNN 119 Hf I 36 79 3.20 177 DNG P1 09H 1.18 TEC TEH .610 NBAZC 33 HI 36 79 2.37 66 MBM 6 07C 31.79 TEC TEH .610 NBAZC 33 HI 36 79 NDF 2 09H 1.18 09H 10H .610 ZPSNM 119 Hf I 18 80 NDF 2 TSC .46 TSC TSC .610 ZPSNM 18 Cf 18 80 28.94 186 OXP P1 TSC .46 TEC TEH .610 NBAZC 31 Hf I 39 80 NOD 02C 02C .610 ZPSNM 14 Cf 39 80 2.80 185 ONG P1 AVI 20.46 TEC TEH .610 SBACC 61 HI 39 80 1.54 0 PCT 20 P2 AV2 .18 TEC TEH .610 SBACC 61 HI 39 80 3.63 0 PCT 32 P2 AV3 .10 TEC TEH .610 SBACC 61 HI 40 80 NOD 02C 02C .610 ZPSNN 14 Cf 40 80 2.24 182 ONG P1 AV3 2.19 TEC TEH .610 NBAZC 63 Hf 47 81 3.05 187 ONG PI 07H 19.06 TEC TEH .610 SBACC 61 HI 47 81 2.11 180 DNT P1 AV3 -.06 TEC TEH .610 SBACC 61 Hf 47 81 NDF 2 07H 19.06 07H 08H .610 ZPSNN 115 HI 4. .-- ...- -.. .. ..- "...-----------+..

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4 ST Max Byron 2 B2R15 CBE 20100401 04/30/2010 07:48:13----------------------------------

+-----+-----+-----+-----+-.--+----+---+--+

-+ ----+ ----+ --+-----...I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDI PDIA PTYPE CAL LI".. ". .- .. ..... ". ...4" ..----------

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.. .. .-- .--+ -- -- --....--.-.-.

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......- ---+ -. .-....4-- ÷45 45 45 29 29 29 29 29 29 82 82 82 87 87 87 87 87 87 3.37 179 ONG 2.15 170 DNT NDF P1 08H 8.79 P1 liC .36 2 08H 8.79 TEC TEN .610 SBACC TEC TEH .610 SBACC 08H 09H .610 ZPSNM 2.25 3.16 2.57 2.43 2.76 184 177 71 185 176 ONG ONG MBM ONG ONG NDF P1 P1 6 P1 P1 2 10H 16H bec bec bec ION 22.48 38.33 10.84 11.53 37.86 38.33 TEC TEC TEC TEC TEC 10H TEH TEN TEN TEN TEN UlN.610.610.610.610.610.610 NBAZC NBAZC NBAZC NBAZC NBAZC ZPSNM 37 89 37 89 43 93 43 93 43 93 42 94 42 94 42 94 42 94 42 94 13 98 13 98 13 98 2 100 2 100 2 100 NOD.69 123 DFS NOD 13.86 13 BLG NDF 3 11H .89 1 TSH 1.00 2 TSH 1.00 02C 02C -.610 ZPSNM TEC TEN .610 NBAZC 02C 02C .610 ZPSNM TEC TEN .610 SBACC TSH TSH .610 ZPSNM 17.13 6.21 1.74 11 179 175 NOD BLG DNT INR NDF 1 P1 P1 2 TSH AV1 AV4 TSH 1.06.00-.09 1.06 02C TEC TEC TEC TSH 02C TEN TEN TEN TSH.610.610.610.610.610 ZPSNM NBAZC NBAZC NBAZC ZPSNM.51 146 DFS 3.02 172 DNG NDF NOD 9.97 179 DNG NDF 1 10H 33.40 P1 10H 34.58 2 10H 34.58 TEC TEN .610 SBACC TEC TEN .610 SBACC ION 1NH .610 ZPSNM 11C TEC .610 NBAZC 11H TEN .610 SBACC 11H 11H .610 ZPSNM P1 11H 2 11H 3 3 3 3 3 3 19 19 19 19 19 19 19 19 19 19 19 19 29 29 29 29 29 28 28 28 28 28 26 26 26 26 26 26 27 27 27 27 27 27 27 27 100 100 100 100 100 100 104 104 104 104 104 104 104 104 104 104 104 104 105 105 105 105 105 106 106 106 106 106 107 107 107 107 107 107 107 107 107 107 107 107 107 107 3.21 8.14 4.58 3.11 8.29 3.58 5.16 3.58 5.16 2.20 6.88 2.20 6.88 179 180 178 178 179 173 177 173 177 168 173 163 172 PBC PBC ONG ONG ONT NOF ONG ONG ONG ONG ONG DNG ONG ONG NDF NDF NOF NDF P1 PI P1 P1 P1 2 P1 P1 P1 P1 P1 P1 P1 P1 2 2 2 2 1 P1 P1 P1 2 2.25 18 8LG 2.24 173 ONG 2.70 172 ONG 1.96 174 INR NOF 4.77 15 BLG 2.47 174 DNT 1.59 172 INR 3.01 172 DNT NDF 11C 1 1C 11H lic 1iC 11H 10H ION ION 10H bec 10C bec lec 10C 10H ION ION ION 10H TSH 10C bec 08C TSH TSH 11H 08C 08C TSH TSH 11H 11H AV3 AV4 TSH TSH 11H 11H 11H AVI AV1 08C 08C 1 P1 P1 P1 2 1 P1 P1 25 P2 19 P2 2.89.89-.63.20.82-.95.15.82 25.55 25.98 27.32 28.04 11.77 12.81 23.92 24.98 25.55 25.98 27.32 28.04 1.24 37.75 39.90.69 1.24 1.00.67-.41.52 1.00 1.20-.31.72-.28-.11 1.20 1.12.70 24.43 24.96.48 1.12-.41.47 lic 11C liC 11C 11C 11H TEC TEC TEC TEC TEC TEC TEC TEC TEC ION 19H 10H TEC TEC TEC TEC TSH TEC TEC TEC TEC TSH TEC TEC TEC TEC TEC TSH TEC TEC TEC TEC TEC TEC TEC TEC TEC TEC TEN TEN TEN 11H TEN TEN TEH TEN TEN TEN TEN TEN 11H 11H 11H 11H TEN TEN TEN TEN TSH TEN TEN TEN TEN TSH TEN TEH TEN TEN TEN TSH TEN TEN TEN TEN TEN TEN TEN TEN.610.610.590.590.590.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610 NBAZC NBAZC SBUCC SBUCC SBUCC ZPSNM SBACC SBACC SBACC SBACC SBACC SBACC SBACC SBACC ZPSNN ZPSNM ZPSNM ZPSNN NBAZC NBAZC NBAZC NBAZC ZPSNM SBACC SBACC SBACC SBACC ZPSNN SBACC SBACC SBACC SBACC SBACC ZPSNM NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC 1 61 NI 61 NI 115 NJ 1 33 NI 33 NI 33 HJ 33 NI 33 NI 115 NI 1 12 Cl 35 NI I 10 Cl 65 NI 101 NI 10 CI 67 NI 67 NI 67 NI 103 NI 69 HI 69 NI 119 NI 8 Cl 69 NI 121 HI 1 8 Cl 8 CI 83 HI 83 NI 83 HI 121 NI 73 NJ 73 HN 73 HJ 73 NI 73 N)73 HJ 73 NH 73 NH 119 HI 119 HI 119 HI 119 HI 75 NI 75 NJ 75 HI 75 NI 101 NI 73 NH 73 NI 73 NI 73 NI 103 NI 7 NI 73 NI 73 NI 73 NI 73 NI 73 HJ 101 HI 75 NI 75 NI 75 NI 75 NI 75 HI 75 HI 75 HI 75 HI 8.58 2.09 4.52 2.10 1.31 13.32 2.91 3.20 2.38 3.20 2.38 1.63 2.21 17 169 171 0 0 14 177 179 182 179 182 173 176 BLG DNT DNT PCT PCT NOF BLG DNT ONG ONG DNT ONG INR DNT 1 P1 P1 P1 P1 P1 P1 P1-+ .... -- .... -+ .. .. .. -.... -" .... -" .... -- ---------- --+-+ -+---- ------ -.+ -.+- -. .--. ----- -I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4--. ..4-.. .----------.----.


. ----.----+ ----. -+..... ... ..... ...----.-.-

.-.----+..---. .---------

---+ ------ --+- -- ------ ----5 ST Max Byron 2 B2Rl5 CBE 26100401 04/30/2010 07:48:13 Byron 2 .. R1. CBE .... ÷.... .... ..... .... .........

... 26100 401 .. ..0". ..... .....4 ...410- .. .. 074 8:3- ....----I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI.4--- +. ..----4-..---.----+----


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.27 107 NDF 2 TSH 1.12 TSH TSH .610 ZPSNM 103 HI 24 108 5.02 13 BLG 1 TSH 1.23 TEC TEH .610 SBACC 73 HI 24 108 2.62 170 DNT P1 11H -.52 TEC TEH .610 SBACC 73 HI 24 108 3.89 170 ONT P1 11H .51 TEC TEH .610 SBACC 73 H1 24 108 NDF 2 TSH 1.23 TSH TSH .610 ZPSNM 103 HI I 25 108 17.09 12 BLG 1 TSH 1.22 TEC TEH .610 NBAZC 75 HI 25 108 2.34 87 MBM 6 01H 14.67 TEC TEH .610 NBAZC 75 HI 25 108 2.31 84 MBM 6 01H 15.09 TEC TEH .610 NBAZC 75 HI 25 108 .09 148 DFS 1 08H 17.09 TEC TEH .610 NBAZC 75 HI 25 108 4.36 177 DNT P1 11H -.30 TEC TEH .610 NBAZC 75 HI 25 108 9.32 178 DNT P1 11H .73 TEC TEH .610 NBAZC 75 HN 25 108 1.50 0 PCT 21 P2 AVI .00 TEC TEH .610 NBAZC 75 HI 25 108 .68 0 PCT 12 P2 AV2 .00 TEC TEH .610 NBAZC 75 HI 25 108 1.40 0 PCT 20 P2 AV4 .00 TEC TEH .610 NBAZC 75 HI 25 108 3.30 176 BNT P1 08C .58 TEC TEH .610 NBAZC 75 H)25 108 NDF 2 TSH 1.22 TSH TSH .610 ZPSNM 103 HI I 18 111 1.11 14 BLG 1 TSH 1.17 TEC TEH .610 NBAZC 75 HI 18 111 1.56 176 INR P1 10H -.39 TEC TEN .610 NBAZC 75 HI 18 111 4.39 179 DNT P1 11H -.39 TEC TEH .610 NBAZC 75 HI 18 111 3.22 179 DNT P1 11H .73 TEC TEH .610 NBAZC 75 HI i18- 111 2.84 182 ONT P1 18C -.36 TEC TEH .610 NBAZC 75 HI 18 111 NOF 2 TSH 1.17 TSN TSN .610 ZPSNM 103 HI.... --.- .-...-..-.......----------

"-- .......---.......--

+-.......----4-.----.4-"......4-...----

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI------------------------------

+---------+----+----+-----+----+---+--+

-+ -----+-----+------

-+---------

Tubes: 81 Records: 345 6 ST Max ATTACHMENT C Steam Generator Inservice Indications Page 32 of 41 Attachment C.1 2A Steam Generator Inservice Indications Page 33 of 41 SG -A Wear Indications Attributed to Foreign Objects Byron 2 B2R15 CBE 28180461 04/29/2010 03:56:09 4. .. 4 ... ... .. .+... ....+ .. +... ÷.. ... .. .. 4 .. .. .. 4-----------

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--, I 45 67 NOD TSH TSH .616 ZPSNM 11 HI 45 67 .12 103 VOL P4 02C 1.17 82C 03C .610 ZPSNM 12 Cf 45 67 .28 279 PCT 23 2 02C 1.18 .31 .37 56 02C 03C .610 ZPSNM 12 CI 45 67 .17 86 PCT 21 2 02C 2.88 .31 .19 29 02C 03C .618 ZPSNM 12 Cf 45 67 .19 88 PCT 22 2 *2C 2.91 .31 .39 59 82C 83C .610 ZPSNM 12 CI* 45 67 .15 85 VOL P4 82C 2.92 82C 83C .616 ZPSNM

  • 12 CI 45 67 .86 155 DFS 1 02C 1.24 TEC TEN .616 SBACC 43 HI I 45 67 .23 156 OFS 1 02C 3.15 TEC TEH .610 SBACC 43 HI.. ... ..---------------------

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+-+....÷...- -4 I ROW COL VOLTS DEG IND PER CHN LOCN INCHi INCH2 I CRLEN CRWID CEG BEGT ENOT POIA PTYPE CAL Lf--------------------------

4--------------------------,---4----,---+---4---4 ------ -4--------Tubes: 1 Records: 8 I ST Max SG -A Prehestor Wear Indications Byron 2 B2R15 CBE 2SlS4MS1 04129/2801 04:05:29--------------------------------------

+-------+-----+---+---4--, -+ -----4-----4-----+-

4-----4- I ROW COL VOLTS DEG IND PER CHN LOCK INCHI INCH2 I CRLEN CRWID CEG BEST ENOT POXA PTYPE CAL LI----------


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4-----4----,-------------+


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--------4 --- -----I ROW COL VOLTS DEG IND PER CHN LOCH INCHi 1NCH2 I CRLEN CRWID CEG BEST ENDT PDOA PTYPE CAL LI.. -------------------------

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4 -+ ---- ----- -------- - 4------ --Tubes: 0 Records: 0 ST Max 1 SG -A Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28188481 84/29/2810 83:58:23+ .... + .... + .........

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. ..---- --- ---4.--I NOW 19 5 .82 8 PCT 15 P2 AV4.81 1.83.64 3.66.71 1.13.97 1.57 1.31 1.83 1.15 1.35 1.20 1.66.84 1.39.83 1.13 1.57 1.78 1.61 1.02 1.68 1.76 1.43 2.47 1.29.83 1.48 1.21.87 1.02 1.14 1.65.83 1.31 1.42.73 1.68 2.22 2.13 1.08 1.32 1.32.95 1.17 1.31 1.11 2.85 1.12 8 PCT 8 PCT 8 PCT 0 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 0 PCT* PCT 8 PCT 0 PCT* PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 0 PCT 8 PCT 8 PCT 8 PCT 8 PCT 0 PCT 0 PCT 0 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 8 PCT 0 PCT 8 PCT 9 PCT 8 PCT 8 PCT 8 PCT 0 PCT 0 PCT 8 PCT 8 PCT 0 PCT 0 PCT 8 PCT P2 AV2" P2 AV3 P2 AV4 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV4 P2 AV3 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV3 P2 AV4 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV4 P2 AV4 P2 AV3 P2 AV4 P2 AV3 P2 AVI P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV4 P2 AVI P2 AV3 P2 AV4 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV3 P2 AV4 P2 AV3 P2 AVI P2 AV3 P2 AV3 P2 AV4.83.03.88.88.88.11-.21.00.80.80.05.88.85.88.88.88-. 03.08.88.00.00.00-.08.03.03.88.08.83.08.60.83-. 05.06.08-.13.05.13.85.00.03.88-.3-.16-.08.83..16-.13.00-.21.80 TEC TEN .618 SBACC TEC TEH TEC TEN TEC TEH TEC TEN TEC TEH TEC TEN TEC TEN TEC TEN TEC TEH TEC TEN TEC TEH TEC TEN TEC TEH TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEH TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN.610 SBACC.610 NBAZC.610 NBAZC.618 NBAZC.618 SBACC.610 SBACC.610 NBAZC.610 NBAZC.618 NEAZC.610 NBAZC.610 SBACC.610 NBAZC.618 NBAZC.610 NBAZC.610 NBAZC.618 SBACC.610 SBACC.610 SBACC.618 SBACC.618 NBAZC.618 NBAZC.610 NBAZC.610 SBACC.618 SBACC.610 SBACC.618 SBACC.610 TBATC.618 NBAZC.618 NBAZC.618 NBAZC.618 SBACC.618 SBACC.618 SBACC.610 SBACC.618 SBACC.610 SBACC.610 SBACC.618 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.618 SBACC.618 SBACC.610 SBACC.610 SBACC.618 SBACC.610 SBACC.618 SBACC 71 HI 71 HI 73 HI 73 H 73 H 71 H 71 H 73 H 73 H 73 HI 73 HI 71 HI 73 NI 73 HI 73 H 73 H 71 H 71 H 71 H 71 H 73 H 73 H 73 HI 71 HI 71 HI 71 I 71 HI 69 HI 73 HI 73 HI 73 HI 71 NI 71 HI 67 HI 67 HI 67 HI 67 HI 67 NI 65 HN 65 HI 65 HI 65 HI 65 HI 65 H 67 HI 67 H 67 NI 67 HI 67 HI 67 HI 67 HI 65 HI 38 22 1.36 S PCT 19 P2 AV2 TEC TEN .618 TBATC+-----------


4+~~---4---+------------------4 -I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4STx---+------


aI ST Max SG -A Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28100401 04/29/2818 03:58:23---+----------+----

4----4----------


4------4-----4


-- 4-- ---4-----------


----- I-I ROW COL VOLTS DEG IND PER CHN LOCH INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI.-----------------------------------------------------------------------------

,--------,------------+

-.. --.----------

+- ----38 22 .76 8 PCT 12 P2 AV3 .88 TEC TEH .610 TBATC 65 HII I 41 22 3.47 0 PCT 34 P2 AV2 .88 TEC TEN .610 TBATC 65 HI 37 23 2.08 8 PCT 27 P2 AV2 .08 TEC TEN .618 SBACC 67 HI 37 23 1.94 8 PCT 26 P2 AV3 .88 TEC TEN .610 SBACC 67 HI 37 23 .82 8 PCT 16 P2 AV4 -.22 TEC TEH .618 SBACC 67 HI 38 23 1.25 0 PCT 21 P2 AVI .11 TEC TEH .618 SBACC 67 NI 38 23 .94 8 PCT 17 P2 AV2 -.03 TEC TEN .610 SBACC 67 HJ 38 23 2.57 8 PCT 30 P2 AV3 -.13 TEC TEN .618 SBACC 67 HI 38 23 1.98 0 PCT 26 P2 AV4 -.05 TEC TEH .618 SBACC 67 HI 39 23 1.55 0 PCT 23 P2 AV2 .00 TEC TEN .610 SBACC 67 HI 39 23 2.88 8 PCT 27 P2 AV3 -.10 TEC TEH .618 SBACC 67 HI 39 23 .90 8 PCT 17 P2 AV4 -.11 TEC TEN .610 SBACC 67 NI 8 2I 38 24 1.53 0 PCT 21 P2 AV2 .88 TEC TEN .610 TBATC 65 HI 38 24 1.86 0 PCT 16 P2 AV3 .05 TEC TEN .610 TBATC 65 HI 42 25 .84 8 PCT 16 P2 AV2 .08 TEC TEN .610 SBACC 67 HI 42 25 3.62 8 PCT 35 P2 AV3 .12 TEC TEN .610 SBACC 67 HI 1 42 25 1.36 8 PCT 22 P2 AV4 -.12 TEC TEN .610 SBACC 67 HI I I I45 25 1.16 8 PCT 26 P2 AV3 -.88 TEC TEH .618 SBACC 67 HI 1 45 25 1.18 0 PCT 28 P2 AV4 -.13 TEC TEH .618 SBACC 67 HI I I 1 38 26 1.23 0 PCT 18 P2 AV2 .05 TEC TEN .610 TBATC 65 NI I38 27 182 0 PCT 18 P2 AV3 -.16 TEC TEN .610 SBACC 67 NI 47 28 .88 8 PCT 13 P2 AV4 .08 TEC TEN .618 TBATC 65 NI 29 29 .76 8 PCT 15 P2 AV3 .03 TEC TEN .610 SBACC 63 NI 38 30 1.73 0 PCT 23 P2 AV3 .88 TEC TEN .610 TBATC 61 HI 37 31 .74 0 PCT 15 P2 AV2 .08 TEC TEN .618 SBACC 63 NI 41 33 .86 0 PCT 16 P2 AV2 -.83 TEC TEN .610 SBACC 63 NI 41 33 1.25 0 PCT 28 P2 AV3 .08 TEC TEN .610 SBACC 63 NI 1 29 34 .99 0 PCT 15 P2 AV3 -.11 TEC TEN .610 TBATC 61 NI Iw I 1 38 34 .94 8 PCT 15 P2 AV2 .08 TEC TEN .610 TBATC 61 NI 38 34 1.32 8 PCT 19 P2 AV3 -.05 TEC TEN .618 TBATC 61 NI 29 36 .81 0 PCT 15 P2 AV3 -.05 TEC TEN .610 SBACC 63 NI 42 42 .72 0 PCT 12 P2 AV2 .00 TEC TEN .610 TBATC 61 NI 40 46 .94 0 PCT 13 P2 AVI .00 TEC TEN .610 TBATC 57 NJ 40 46 2.41 0 PCT 26 P2 AV3 -.25 TEC TEN .610 T8ATC 57 NI 48 56 2.50 0 PCT 28 P2 AV3 .08 TEC TEN .618 TBATC 41 NI 48 56 1.35 0 PCT 18 P2 AV4 .00 TEC TEN .610 TBATC 41 HI 44 59 1.12 0 PCT 21 P2 AV3 .51 TEC TEN .610 SBACC 59 HI 47 59 .94 0 PCT 19 P2 AVI .05 TEC TEN .610 SBACC 59 NI 9 61 .87 0 PCT 17 P2 AV4 .36 TEC TEN .610 SBACC 27 NI 42 61 .78 8 PCT 16 P2 AVI .06 TEC TEN .610 SBACC 43 NI 38 63 1.04 0 PCT 16 P2 AV2 .16 TEC TEH .610 SBACC 33 NJ 38 63 .69 0 PCT 12 P2 AV4 .08 TEC TEN .610 SBACC 33 NI 20 64 1.41 0 PCT 21 P2 AVI -.26 TEC TEN .610 SBACC 29 NI 40 64 .89 0 PCT 17 P2 AVI .08 TEC TEN .618 SBACC 35 NI 46 64 .73 0 PCT 11 P2 AV2 .08 TEC TEH .619 TBATC 41 I I46 64 2.73 8 PCT 11 P2 AV2 .8 TEC TEN .618 TBATC 41 NI 46 64 2.48 0 PCT 28 P2 AV3 .88 TEC TEN .610 TBATC 41 NI I46 64 3.73 0 PCT 35 P2 AV4 .08 TEC TEN .618 T8ATC 41 NI 40 66 1.24 0 PCT 21 P2 AVI .08 TEC TEN .610 SBACC 35 NI 40 66 .69 8 PCT 14 P2 AV2 .80 TEC TEN .610 SBACC 35 NI 31 67 1.41 8 PCT 18 P2 AV4 .03 TEC TEN .610 SBACC 33 HI........................----------------------------------------------.

+......- .............----

4 ------+----.-----.

.+----. .-ROW COL VOLTS DEG IND PER CNN LOCH INCHi INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 2----------------------------


+ ------ +----- 4 ---- +-- +--2 ST Maxc SG -A Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28188461 84/29/2010 03:58:23.. .....----------

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..--÷I ROW COL VOLTS DEG INO PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI-------------------


4-----,----.----,-----+---4.-

-+ ------+-----+------+ -, IjM 36 69 1.28 8 PCT 17 P2 AV2 .68 TEC TEH .618 SBACC 33 HI I 38 69 1.00 8 PCT 14 P2 AV3 -.06 TEC TEH .618 SBACC 33 HI 38 78 .86 0 PCT 17 P2 AV2 .26 TEC TEN .618 SBACC 35 HI S38 72 1.93 8 PCT 27 P2 AV3 .88 TEC TEN .610 SBACC 35 NJ 38 72 1.89 8 PCT 18 P2 AV4 .00 TEC TEN .610 SBACC 35 NJ 38 73 .70 9 PCT 12 P2 AV2 -.03 TEC TEH .610 SBACC 33 HJ 38 73 2.67 0 PCT 28 P2 AV3 -.12 TEC TEN .610 SBACC 33 NI I I 32 76 1.49 8 PCT 25 P2 AV3 .00 TEC TEH .610 SBACC 39 HI 32 79 1.88 8 PCT 25 P2 AV4 -.14 TEC TEN .618 SBACC 37 NJ 44 81 2.92 6 PCT 32 P2 AV2 .09 TEC TEN .616 SBACC 43 NJ 44 81 1.38 0 PCT 22 P2 AV3 .00 TEC TEH .610 SBACC 43 NJ 4 8I 48 82 1.93 8 PCT 28 P2 AV2 -.03 TEC TEH .610 SBACC 39 NJ I48 82 1.86 8 PCT 21 P2 AV3 .88 TEC TEN .618 SBACC 39 HI S39 84 1.18 8 PCT 16 P2 AY2 .60 TEC TEN .618 TBAIC 41 NI 41 84 1.19 0 PCT 17 P2 AV2 .00 TEC TEN .610 TBATC 41 NJ 41 84 1.33 8 PCT 18 P2 AV3 .80 TEC TEN .610 TBATC 41 NJ 27 85 .81 B PCT 15 P2 AVI .88 TEC TEN .610 SBACC 43 HI S27 85 2.75 8 PCT 31 P2 AV2 .09 TEC TEN .610 SBACC 43 NJ 27 85 .76 8 PCT 16 P2 AV3 .05 TEC TEN .610 SBACC 43 HI 39 85 1.86 0 PCT 19 P2 AV2 .00 TEC TEN .610 SBACC 43 NJ 48 85 1.86 0 PCT 19 P2 AV3 .05 TEC TEN .610 SBACC 43 NJ 41 85 1.50 0 PCT 23 P2 AV2 .41 TEC TEN .618 SBACC 43 NJ 41 85 1.34 8 PCT 22 P2 AV3 -.03 TEC TEN .610 SBACC 43 NJ 41 85 .60 0 PCT 13 P2 AV2 .88 TEC TEN .610 SBACC 43 NJ 41 88 ..92 PCT 14 P2 AV2 .83 TEC TEN .610 IBAIC 41 NJ 44 88 .86 0 PCT 13 P2 AV2 .00 TEC TEN .610 SBAIC 41 NJ 44 88 1.84 8 PCI 23 P2 AV3 -.16 TEC TEN .618 IBAIC 41 NJ 44 88 1.99 0 PCT 24 P2 AV4 -.30 TEC TEN .610 TBATC 41 NJ 39 89 2.39 0 PCT 29 P2 AV2 .00 TEC TEN .610 SBACC 47 NJ 39 89 3.86 0 PCT 36 P2 AV3 .16 TEC TEN .610 SBACC 47 NJ 39 89 1.12 0 PCT 19 P2 AV4 -.18 TEC TEN .610 SBACC 47 NJ 45 89 1.38 0 PCT 21 P2 AV4 .16 TEC TEN .618 SBACC 47 NJ I34 90 1.13 8 PCI 15 P2 AV3 -.16 TEC TEN .610 IBAIC 45 NJ I46 96. 2.05 6 PCI 26 P2 AV2 .03 TEC TEN .618 TBATC 45 NJ 48 90 1.98 8 PCT 25 P2 AV3 -.05 TEC TEN .610 TBACC 45 NJ 34 98 1.10 0 PCT 17 P2 AV4 -.08 TEC TEN .610 TBATC 45 NJ 44 98 1.86 0 PCT 24 P2 AV2 .16 TEC TEN .610 SBAIC 45 NJ 44 96 3.73 8 PCT 36 P2 AV3 .16 TEC TEN .610 TBATC 45 NJ I I 48 91 1.14 8 PCI 19 P2 AV2 .88 TEC TEN .610 SBACC 47 NJ 40 91 2.54 0 PCT 38 P2 AV3 .18 TEC TEN .610 SBACC 47 NJ 41 91 3.29 6 PCI 34 P2 AV2 -.10 TEC TEN .610 SBACC 47 NJ 41 91 .91 8 PCI 17 P2 AV3 -.16 TEC TEN .610 SBACC 47 NJ 40 92 1.89 0 PCT 17 P2 AV2 -.13 TEC TEN .610 TBATC 45 NJ 40 92 .87 8 PCT 12 P2 AV3 -.13 TEC TEN .610 TBATC 45 NJ I41 92 1.88 8 PCI 25 P2 AV2 -.05 TEC TEN .610 IBAIC 45 NJ 41 92 1.32 0 PCT 26 P2 AV3 .14 TEC TEN .610 TBATC 45 NJ 41 92 1.75 0 PCT 24 P2 AV4 .22 TEC TEN .610 TBATC 45 NJ I I I39 94 1.36 8 PCI 28 P2 AVI -.93 TEC TEN .610 IBAIC 45 NJ 39 94 1.83 0 PCT 14 P2 AV2 -.83 TEC TEN .610 SBAIC 45 NJ 39 94 4.83 0 PCT 37 P2 AV3 .88 TEC TEN .618 IBAIC 45 NJ 34 95 .79 6 PCT 15 P2 AV2 .60 TEC TEN .610 SBACC 47 NJ 36 95 1.86 0 PCT 18 P2 AV3 -.83 TEC TEN .618 SBACC 47 NJ------------------, --------+-----+------+-------+

---4--,-+- -+-.......4--........, -.....- ...- .IROW COL VOLTS DES IND PER CNN LOCH INCHI INCN2 I ORLEN CRWID CEG BEST ENDI PDIA PTYPE CAL Ul--------------------------------

+--------+-----4-----,--------+---4--+


+ ----+-----+-----4 -, 3 ST Max SG -A Anti-Vibration Bar Wear Indications Byron 2 82R15 CBE 26100401 04/29/2010 63:58:23... ..÷.---------------.----.-------+--

-- -------------


-+ -+....-+-...+..---

I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENDT PDIA PTYPE CAL LI..--- 4 ..÷... ..÷..÷. .÷..---.....--.-4--.....---4---

4. .. ..---4--4 .... ..-----.---..----

... 4 ------4 ----- 4---.-36 95 .73 0 PCT 14 P2 AV4 .06 TEC TEN .616 SBACC 47 NI I 40 95 1.75 6 PCT 25 P2 AVI -.63 TEC TEN .619 SBACC 47 NI f 46 95 3.14 0 PCT 33 P2 AV2 .06 TEC TEN .610 SBACC 47 HI 40 95 2.75 0 PCT 31 P2 AV3 .00 TEC TEN .619 SBACC 47 NJ 46 95 2.37 0 PCT 29 P2 AV4 -.11 TEC TEH .610 SBACC 47 NI 36 96 1,92 0 PCT 25 P2 AV2 .00 TEC TEN .616 TBATC 45 NJ 39 96 .96 0 PCT 13 P2 AV3 -.65 TEC TEN .619 TBATC 45 NI 39 96 1.16 0 PCT 17 P2 AV4 -.05 TEC TEH .610 TBATC 45 NI 37 98 2.51 6 PCT 29 P2 AV2 .11 TEC TEN .610 TBATC 45 NI 37 98 2.76 0 PCT 36 P2 AV3 .03 TEC TEH .616 TBATC 46 HI I I 38 98 1.24 6 PCT 19 P2 AVI -.03 TEC TEN .610 TBATC 45 NI 38 98 2.74 6 PCT 31 P2 AV2 .00 TEC TEN .618 TBATC 45 NJ 38 98 1.71 0 PCT 23 P2 AV3 -.19 TEC TEN .616 TBATC 45 NJ 28 99 .77 6 PCT 15 P2 AV1 .08 TEC TEN .616 SBACC 47 NJ 37 99 1.35 6 PCT 21 P2 AV3 -.22 TEC TEN .610 SBACC 47 Nj I I 35 100 1.25 0 PCT 19 P2 AV3 -.16 TEC TEN .610 TBATC 45 NJ 31 161 1.61 6 PCT 23 P2 AV2 .16 TEC TEN .610 SBACC 47 NJ 31 101 2.37 6 PCT 29 P2 AV3 .66 TEC TEN .610 SBACC 47 NI 3 1I 36 103 1.39 0 PCT 23 P2 AV2 .17 TEC TEN .610 SBACC 51 NJ I31 163 1.36 6 PCT 23 P2 AV2 .66 TEC TEN .616 SBACC 51 Nj 31 163 1.56 6 PCT 24 P2 AV3 .00 TEC TEN .616 SBACC 51 NI I I 27 164 1.39 0 PCT 18 P2 AV2 -.23 TEC TEN .610 TBATC 49 NJ 28 164 .84 0 PCT 12 P2 AV4 .06 TEC TEN .610 TBATC 49 Nj 29 104 .98 0 PCT 14 P2 AV3 -.26 TEC TEN .616 TBATC 49 Nj 30 104 .83 0 PCT 12 P2 AV2 .60 TEC TEN .616 TBATC 49 Nj , 28 165 1.63 6 PCT 19 P2 AV3 .66 TEC TEN .610 SBACC 51 Nj I 28 165 1.27 6 PCT 22 P2 AV4 .66 TEC TEN .610 SBACC 51 Nj 30 105 .67 0 PCT 16 P2 AV2 -.03 TEC TEN .616 TBATC 49 Nj 6 1I 26 166 .96 6 PCT 13 P2 AV1 .40 TEC TEN .610 TBATC 49 Nj 26 166 .78 0 PCT 11 P2 AV3 -.40 TEC TEN .610 TBATC 49 Nj 27 166 2.28 6 PCT 25 P2 AVI -.03 TEC TEN .610 TBATC 49 Nj 27 106 1.50 0 PCT 19 P2 AV2 .11 TEC TEN .610 TBATC 49 Nj 27 166 2.66 0 PCT 28 P2 AV3 .66 TEC TEN .610 TBATC 49 HI 26 167 .81 6 PCT 16 P2 AV2 .60 TEC TEN .610 SBACC 51 Nj 26 107 1.34 6 PCT 22 P2 AV3 .60 TEC TEN .616 SBACC 51 NJ 22 109 .82 0 PCT 16 P2 AV4 .60 TEC TEN .610 SBACC 51 Nj 23 109 .77 0 PCT 11 P2 AVI -.17 TEC TEN .610 TBATC 49 NJ 23 109 1.40 6 PCT 18 P2 AV4 -.32 TEC TEN .610 TBATC 49 Nj------------------

  • --- -- ---+-------------------------------------------+

+- + -+ ----I ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 4------------------------------.------4----4------4----4----4-------4--+

-+ ------.---

+ ----4------Tubes: 109 Records: 192 4 ST Max Attachment C.2 2B Steam Generator Inservice Indications Page 34 of 41 SG -B Wear Indications Attributed to Foreign Objects Byron 2 B2R15 CBE 28188401 84/2812010 22:32:32--- ----+- ... -----+ ------- -- ----------

--.. ----------+- --- ----+- -+--+I ROW COL VOLTS DEG INO PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT POIA PTYPE CAL Ll-------------------------------

+----+---------------------------------------+----


+------I 7 7 .65 124 OS[ Pi 65H .79 TEC TEH .610 TBATC 17 HI 7 7 .13 286 PLP 7 05H 1.23 TEC TEH .610 TBATC 17 HI 7 7 2,79 188 INR P1 AV4 3.93 TEC TEH .619 TBATC 17 HI 7 7 .76 134 OS! P1 85H .79 TEC TEH .610 SBACC 93 HI 7 7 33.26 77 PLP 11 05H .56 05H 815H .610 ZPSNM 101 HI 7 7 .24 66 SVI P4 05H .66 05H 05H .618 ZPSNM 101 HI 7 7 .26 264 PCT 28 2 05H .67 .22 .50 77 85H 05H .610 ZPSNM 181 HI 7 7 TBP P4 85H .66 85H 05H .610 ZPSNM 105 HI 7 7 .17 92 PIO P4 05H .66 05H 815H .610 ZPSNN 105 HI 29 26 .23 137 DSS P1 81H .68 TEC TEH .618 NBAZC 29 HI 29 26 2.22 172 ONG P1 18H 41.92 TEC TEH .610 NBAZC 29 HI 29 26 .20 143 OSS P1 01H .68 TEC TEH .610 SBACC 93 HI 29 26 .12 88 VOL 2 61H .58 8IH 81H .618 ZPSNM 181 HI 29 26 .12 88 PCT 17 2 81H .58 .19 .43 66 01H 01H .618 ZPSNM 101 HI--------------------------

+---- ---- -+- -------------------------------

+---------4


.

I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWIO CEG BEGT ENOT PDIA PTYPE CAL LI-------------------------------

+--------+----+----+-----+----+----+-------+


+.----- -+--------Tubes: 2 Records: 14 I ST Max SG -B Preheater Wear Indications Byron 2 B2R15 CBE 28100401 84/28/2810 21:87:18+--------------------------------------------,----4----,----4----,---+--------------4----------4--.

I ROW CaL VOLTS DEG IND PER CHN LOCH INCHI, INCN2 I CRIEN CRWID CES BEST ENDT PDIA PTYPE CAL LI 4---- .- ... ..-..----

---+ ------- .----------

+.--------.....-.....--..--...-..--....--....--....----------------------------

46 58 1.44 8 PCT 21 P7 s7C .19 TEC TEH .618 SBACC 93 HI I 48 58 4.00 0 PCT 39 P7 S7C .14 TEC TEN .610 SBACC 93 Hl 49 52 2.37 8 PCT 38 P7 s7C .28 TEC TEH .618 SBACC 93 HI I 48 53 2.31 8 PCT 29 P7 S7C .39 TEC TEH .618 SBACC 93 HI I 48 54 2.55 8 PCT 31 P7 S7C .19 TEC TEN .618 SBACC 93 HI I 48 59 2.69 8 PCT 32 P7 S7C .88 TEC TEN .618 SBACC 93 Hj I 49 63 2.69 8 PCT 32 P7 S7C .14 TEC TEN .610 SBACC 93 HI I 47 75 .42 8 PCT 8 P6 82C .48 TEC TEN .618 SBACC 93 HI I 15 91 .24 8 PCT 5 P6 06C -.14 TEC TEN .618 SBACC 93 HN*. ...+. ..---+---- -+----.----.----,-

.. +...÷...+......÷

.....+ +.....+.----------

.. .----+----. ----4-- ..+ .------- ..+- ....I ROW COL VOLTS DEG IND PER CNN LOCH INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI.. .. .. ..---------

.----.. ,...+ .. ...+... ..... +...... .----------

4- -.--.- ..------- ------------------------


Tubes: 9 Records: 9 ST Max SG -B Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28108401 04128/2010 22:41:46+--- -... ....+.---- +---- + .÷ .+..-----

....... ÷ .........

÷+- +. ..+....÷..----------

--.---- .----+--.-.. ..---- +---. .. ÷.. .I ROW COL VOLTS DEG INO PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI÷--- -..÷ ..... ...----4 ...÷.----- 4.... ÷ .......÷ ........ *-- ..... .÷.. ..-------------


.----.----...

..----4 ---I zmkk I owl'4=v 27 1@1.13 0 PCT 17 P2 AV2.11.74 2.74 1.34 1.26.97.96 1.93 3.16 4.17 2.59 2.48.93 1.09.99.74.92.99 1.14 1.31 1.14 2.96 2.42 1.35 1.23 1.07 4.66.62 1.27 1.56 1.44 1.79 2.45 1.29.64 1.74 1.69 2.42 1.17 1.08 1.10 1.20 1.22.81.72 1.17 1.03 1.02 1.14 3.02 2.56.72 8 PCT 6 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT* PCT 0 PCT* PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 6 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 6 PCT* PCT 0 PCT 6 PCT 0 PCT a PCT 0 PCT 0 PCT 0 PCT* PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV2 P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV4 P2 AV3 P2 AV3 P2 AVI P2 AV2 P2 AV4 P2 AVI P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV4 P2 AVI P2 AV2 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AVI P2 AV3 P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AV4.26.06-.03.11.08-.26.00.00.60.00-.08.21-.08.00.00.06-.16-.15.00.06.08-.03 3.50.00.08.06-.16.00.00.11-.10.00-.16.00.00.08-.05-.21-.19.06.00.00.00-.21-.19-. 14.00-.11.00.00 TEC TEN .610 NBAZC 25 HI I TEC TEN .616 TBATC 27 HI TEC TEH .610 TBATC 27 HI TEC TEH .610 TBATC 27 HI I TEC TEN .610 NBAZC 25 HI I TEC TEH .610 NBAZC 25 HI TEC TEN .610 NBAZC 25 HI I TEC TEN .610 NBAZC 25 HI TEC TEH .610 NBAZC 25 HI TEC TEH .610 NBAZC 25 HI TEC TEN .610 NBAZC 25 HI I TEC TEH .610 NBAZC 25 HI TEC TEH .610 NBAZC 25 HI TEC TEH .610 NBAZC 25 HI I TEC TEH .610 TBATC 27 HI I TEC TEN .610 TBATC 27 HI I TEC TEN .610 TBATC 27 HI TEC TEH .610 TBATC 27 HI TEC TEH .610 TBATC 27 HI I TEC TEN .610 TBATC 27 HI I TEC TEH .610 NBAZC 21 HI I TEC TEN .610 NBAZC 21 HI TEC TEH .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI I TEC TEN .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI I TEC TEN .610 NBAZC 21 HI TEC TEH .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI TEC TEN .610 TBATC 23 HI TEC TEN .610 TBATC 23 HI TEG TEN .616 NBAZC 21 JI TEC TEH .610 NBAZC 21 HI TEC TEN .610 NBAZC 21 HI TEG TEN .616 NBAZC 23 HI I TEC TEH .619 NBAZC 21 HI TEC TEN .610 NBAZC 21 NI TEC TEN .616 HBAZC 21 HI I TEC TEH .610 TBATC 23 HI TEC TEN .619 TBATC 23 NJ I TEC TEH .610 TBATC 23 HJ I TEC TEH .619 TBATC 23 HJ TEC TEN .610 TBATC 23 HJ I TEC TEH .610 TBATC 23 HI I TEC TEH .610 NBAZC 21 HJ TEC TEH .610 NBAZC 21 HJ I TEC TEH .610 TBATC 23 HJ I TEC TEH .610 TBATC 23 HJ I TEC TEH .610 TBATC 23 HI TEC TEN .610 TBATC 23 HJ TEC TEH .610 TBATC 23 HJ I TEC TEN .610 NBAZC 21 HJ 36 20 .81 0 .PCT 14 P2 AVI tift I ROW COL VOLTS DEG INO PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI 1Tx-----------------------------------


w1 ST Max SG -5 Anti-Vtbration Bar Wear Indtcations Byron 2 82R15 CBE 28180461 8412812018 22:41:46 4 .... ÷.... ÷.. .. ....- 4....- 4....- 4.... ....-4 4 -4 .---------------------------------


.I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI 4-------------------------------------4----4-----4-----4----4---4------

4-.-----.4---

4 --.--36 20 2.62 0 PCT 25 P2 AV2 -.03 TEC TEN .610 NBAZC 21 NI 36 20 .95 0 PCT 16 P2 AV3 -.14 TEC TEN .619 ?BAZC 21 HI 39 20 1.13 0 PCT 18 P2 AV2 .04 TEC TEN .610 NBAZC 21 HI I 40 20 1.89 0 PCT 24 P2 AY2 .10 TEC TEN .610 NZC 21 HI 40 20 2.12 0 PCT 26 P2 AV3 .12 TEC TEH .610 NBAZC 21 HI 40 20 1.88 8 PCT 17 P2 AV4 .12 TEC TEN .610 NBAZC 21 HI 39 21 1.082 PCT 16 P2 AV2 -.11 TEC TEN .610 TBATC 23 HI 39 21 1.18 8 PCT 18 P2 AV3 -.27 TEC TEH .610 TBATC 23 HI 36 23 1.85 8 PCT 24 P2 AV2 .20 TEC TEH .618 TBATC 23 HI I40 24 1.69 0 PCT 23 P2 AV2 -.08 TEC TEH .618 NBAZC 21 HI 43 25 2.23 0 PCT 27 P2 AV2 .00 TEC TEN .610 TBATC 23 HI 43 25 1.38 0 PCT 20 P2 AV3 -.16 TEC TEN .610 TBATC 23 HI 43 25 1.09 0 PCT 17 P2 AV4 -.08 TEC TEN .610 TBATC 23 HI 34 26 1.95 8 PCT 23 P2 AV3 -.33 TEC TEN .610 NBAZC 29 NJ 39 26 2.00 0 PCT 24 P2 AV2 .16 TEC TEN .610 N8AZC 29 HI 39 26 1.12 0 PCT 16 P2 AV3 -.10 TEC TEN .610 NBAZC 29 NJ 40 26 1.41 8 PCT 19 P2 AV2 .08 TEC TEN .610 NBAZC 29 HI 1 44 26 3.38 8 PCT 32 P2 AV2 -.27 TEC TEN .610 NBAZC 29 HI 44 26 1.10 0 PCT 16 P2 AV3 .27 TEC TEN .610 NBAZC 29 HI 45 26 2.99 0 PCT 30 P2 AV2 .19 TEC TEN .610 NBAZC 29 NI 45 26 4.43 0 PCT 38 P2 AV3 .00 TEC TEN .610 NBAZC 29 NI 45 26 2.82 0 PCT 24 P2 AV4 .13 TEC TEN .618 NBAZC 29 NJ 28 27 .86 0 PCT 14 P2 AV2 .25 TEC TEN .618 TBATC 31 NJ 28 27 1.05 0 PCT 16 P2 AV3 -.10 TEC TEN .610 TBATC 31 NJ 9 2I 39 27 .94 0 PCT 14 P2 AV3 -.18 TEC TEN .610 TBATC 31 NJ I40 27 1.51 0 PCT 20 P2 AV3 -.11 TEC TEN .618 TBATC 31 HI 47 27 3.83 0 PCT 35 P2 AV2 .00 TEC TEN .610 TBATC 31 HI 47 27 2.54 0 PCT 28 P2 AV3 .00 TEC TEN .610 TBATC 31 NJ 47 27 2.12 0 PCT 26 P2 AV4 .03 TEC TEN .610 TBATC 31 Nj 32 28 2.55 0 PCT 27 P2 AV2 .00 TEC TEN .610 NBAZC 29 NI 32 28 1.32 0 PCT 18 P2 AV3 .13 TEC TEN .610 NBAZC 29 Nj 32 28 1.00 0 PCT 14 P2 AV4 .00 TEC TEN .610 NBAZC 29 NI I27 29 .86 0 PCT 14 P2 AV3 .00 TEC TEN .610 TBATC 31 NJ 28 29 .86 0 PCT 13 P2 AV2 .00 TEC TEN .610 TBATC 31 NJ 28 29 .99 0 PCT 15 P2 AV3 -.10 TEC TEN .610 TBATC 31 HI 36 29 .81 0 PCT 13 P2 AV2 .00 TEC TEN .610 TBATC 31 Nj 1 36 29 .83 0 PCT 13 P2 AV3 .00 TEC TEN .610 TBATC 31 Nj 43 29 1.34 0 PCT 19 P2 AV1 .00 TEC TEN .610 TBATC 31 Nj 43 29 4.15 0 PCT 37 P2 AV2 .00 TEC TEN .610 TBATC 31 Nj 43 29 .86 0 PCT 14 P2 AV3 -.13 TEC TEN .610 TBATC 31 Nj 45 29 .77 0 PCT 13 P2 AV4 -.08 TEC TEN .618 TBATC 31 NJ 34 30 .99 0 PCT 14 P2 AVI .00 TEC TEN .610 NBAZC 29 NJ 34 30 2.17 0 PCT 25 P2 AV3 -.13 TEC TEN .610 NBAZC 29 NI I42 38 2.28 0 PCT 26 P2 AVI .00 TEC TEN .610 NBAZC 29 NI 42 30 2.83 0 PCT 29 P2 AV2 -.15 TEC TEN .610 NBAZC 29 HI 42 30 4.64 0 PCT 39 P2 AV3 -.36 TEC TEN .610 NBAZC 29 Nj 27 31 .63 0 PCT 11 P2 AV3 .00 TEC TEN .610 TBATC 31 Nj 27 31 1.23 8 PCT 18 P2 AV4 .00 TEC TEN .610 TBATC 31 Nj 1 28 32 1.33 0 PCT 18 P2 AV2 .08 TEC TEN .610 NBAZC 29 Nj I31 32 .78 PCT 12 P2 AV2 .27 TEC TEN .618 NBAZC 29 N 1 32 32 1.46 0 PCT 19 P2 AV2 .25 TEC TEN .618 NBAZC 29 Nj I32 32 2.83 PCT 29 P2 AV3 -.14 TEC TEN .610 NBAZC 29 N 1 32 32 1.26 0 PCT 17 P2 AV4 -.08 TEC TEN .610 NBAZC 29 Nj-------------------


~-4 .--------------------------------

4-------------4


IROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI-------------------------------------------

4----4. 44 --- 4 4--.-T 2 ST Max SG -B Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 2818S401 84/2812010 22:41:46+ ..+...+.....

..+ ..+...+.. .. ..----------.....

-..--- .--- +.--+-. -+.... ....÷ ..+.---- .÷... ...----..

-+ ..... .... .- +I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI---------------------------------

+--------+----+----+-----+----+-------+----+

---.+ ------4 -+---+--I -I t 45 32 1.39 S PCT 18 P2 AV2 .88 TEC TEN .618 NBAZC 29 NJ Il 45 32 2.14 8 PCT 25 P2 AV3 .38 TEC TEN .618 NBAZC 29 HJ Nw I I 1 34 33 1.41 8 PCT 20 P2 AV2 .17 TEC TEN .610 TBATC 31 HI 39 33 .84 8 PCT 13 P2 AV3 .05 TEC TEN .610 TBATC 31 HI 39 33 .95 0 PCT 15 P2 AV4 .as TEC TEH .610 TBATC 31 HI 31 34 1.83 0 PCT 15 P2 AV3 -.06 TEC TEN .610 NBAZC 33 NJ 48 34 2.34 8 PCT 26 P2 AV2 .08 TEC TEN .618 NBAZC 33 HI 42 34 1.24 0 PCT 17 P2 AV2 -.11 TEC TEN .610 NBAZC 29 NI I I 32 36 1.36 0 PCT 20 P2 AV3 -.02 TEC TEN .618 TBATC 35 HI I 34 36 1.17 8 PCT 18 P2 AV2 .17 TEC TEN .610 TBATC 35 HI 42 36 1.57 0 PCT 20 P2 AV2 .08 TEC TEN .610 NBAZC 37 NH S45 36 2.29 8 PCT 26 P2 AV3 .89 TEC TEN .618 NBAZC 37 NI 45 36 2.75 0 PCT 29 P2 AV4 -.05 TEC TEN .610 NBAZC 37 HI 28 37 1.34 8 PCT 18 P2 AV3 -.19 TEC TEN .618 NBAZC 33 NJ 42 37 .86 8 PCT 15 P2 AVI -.19 TEC TEN .610 TBATC 39 HI S42 37 1.97 8 PCT 25 P2 AV2 .19 TEC TEN .618 TBATC 39 NJ 42 37 2.88 8 PCT 26 P2 AV3 .03 TEC TEN .610 TBATC 39 NJ 39 38 1.84 0 PCT 15 P2 AV2 -.03 TEC TEN .610 NBAZC 37 HN 39 38 .93 0 PCT 14 P2 AV3 -.06 TEC TEN .618 NBAZC 37 NJ I18 39 1.83 8 PCT 15 P2 AV4 .39 TEC TEN .610 NSAZC 29 NI 32 39 1.23 0 PCT 17 P2 AV3 .04 TEC TEN .618 NBAZC 33 NI 32 39 .96 8 PCT 14 P2 AV4 .06 TEC TEN .618 NBAZC 33 Nj I I 34 39 1.28 8 PCT 17 P2 AV2 -.13 TEC TEN .618 NBAZC 33 NH 39 39 1.53 0 PCT 21 P2 AV2 .08 TEC TEN .618 TBATC 39 HI 42 39 .71 8 PCT 13 P2 AV3 .28 TEC TEN .610 TBATC 39 HI 32 48 1.03 8 PCT 16 P2 AV2 -.02 TEC TEN .618 TBATC 35 HI 32 48 1.27 0 PCT 19 P2 AV3 -.10 TEC TEN .618 TBATC 35 N9 32 48 .96 8 PCT 16 P2 AV4 -.27 TEC TEN .610 TBATC 35 NJ II 34 41 1.18 0 PCT 18 P2 AV2 .08 TEC TEN .618 TBATC 39 HJ 41 43 1.82 0 PCT 24 P2 AVI .05 TEC TEN .618 TBATC 39 NH 41 43 2.48 0 PCT 28 P2 AV2 .13 TEC TEN .610 TBATC 39 NJ 41 43 3.86 0 PCT 36 P2 AV3 .00 TEC TEN .610 TBATC 39 NH 42 42 1.87 8 PCT 17 P2 AV2 .03 TEC TEN .618 TBATC 39 HI 42 44 4.17 8 PCT 37 P2 AV3 .83 TEC TEN .610 TBATC 39 NJ 42 44 1.68 8 PCT 22 P2 AV4 .00 TEC TEN .610 TBATC 39 Nj 48 45 .93 0 PCT 14 P2 AV2 .19 TEC TEN .610 NBAZC 37 NJ 4 44 45 .79 0 PCT 14 P2 AV2 .16 TEC TEN .618 TBATC 39 NJ 44 45 1.68 8 PCT 23 P2 AV3 .08 TEC TEN .610 TBATC 39 NH 40 54 1.48 0 PCT 18 P2 AV2 .13 TEC TEN .618 NBAZC 37 NJ 48 54 1.41 0 PCT 18 P2 AV3 .18 TEC TEN .618 NBAZC 37 NJ 47 56 1.85 0 PCT 15 P2 AVI .08 TEC TEN .618 NBAZC 37 Nj 47 56 2.50 0 PCT 27 P2 AV2 .88 TEC TEN .618 NBAZC 37 HI 40 59 1.72 0 PCT 22 P2 AV3 .85 TEC TEN .610 NBAZC 41 NJ 48 59 1.18 0 PCT 17 P2 AV4 .08 TEC TEN .610 NBAZC 41 NI 42 68 .96 0 PCT 15 P2 AVI .08 TEC TEN .610 NBAZC 45 NJ 1 42 68 1.95 8 PCT 24 P2 AV2 .15 TEC TEN .610 NBAZC 45 NI 1 42 68 1.82 0 PCT 23 P2 AV3 .00 TEC TEN .610 NBAZC 45 NJ I I 39 69 .82 0 PCT 13 P2 AVl .807 TEC TEN .618 TBATC 47 NJ 38 71 .69 0 PCT 12 P2 AVI -.13 TEC TEN .618 TBATC 47 NJ 38 71 1.35 0 PCT 19 P2 AV2 .10 TEC TEN .610 TBATC 47 NI----------------------------------

+.---+.---+--.-+----+--.-+--------+-.+

4 .+-.- ----,--.- -+- +-------ROW COL VOLTS DEG INO PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI 3--- ---------------


--- ----------


----------------

---3 ST Max SG -B Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20160401 04/2812010 22:41:46..... .... .. ..÷.. ..---------------

+--- ----+----+---..

...---. ---.... .÷....-----+----.----+..----

+ -.....+.-+...........

I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENOT POIA PTYPE CAL LI.. ..÷.--.. -. ..+ .. +. ..+ .. +. ..÷ .. .. ..+.. .. .. ÷ .------------

---+-- ....+ .... .. ... .... ....÷... ..-- ---- --+-......+....-

I 38 71 2.83 0 PCT 38 P2 AV3 .06 TEC TEH .610 TBATC 47 NJ 38 71 .86 0 PCT 14 P2 AV4 -.13 TEC TEN .616 TBATC 47 NI 33 ,72 1.93 0 PCT 24 P2 AV3 .68 TEC TEN .610 NBAZC 45 NI 33 72 1.86 0 PCT 16 P2 AV4 .09 TEC TEN .610 NBAZC 45 NJ 44 76 1.96 8 PCT 24 P2 AV2 .80 TEC TEN .618 SBACC 65 NI 44 76 1.34 0 PCT 19 P2 AV3 .80 TEC TEN .616 SBACC 65 NI 44 76 1.05 8 PCT 16 P2 AV4 -.13 TEC TEN .610 SBACC 65 NI 28 77 .98 0 PCT 15 P2 AV2 -.17 TEC TEN .618 TBATC 47 NI I I 39 77 .88 8 PCT 14 P2 AV3 .08 TEC TEH .610 TBATC 47 NI 6 7I 36 78 1.94 8 PCT 24 P2 AV3 -.08 TEC TEN .616 NBAZC 45 NI I36 76 .91 0 PCT 14 P2 AV4 -.08 TEC TEN .610 N4BAZC 46 NI 28 79 .60 S PCT 10 P2 AV2 .80 TEC TEN .610 TBATC 47 NI 28 79 1.06 0 PCT 17 P2 AV3 .00 TEC TEN .610 TBATC 47 NI 41 79 1.05 0 PCT 17 P2 AV3 -.20 TEC TEN .610 SBACC 67 NJ 30 83 .76 0 PCT 11 P2 AV4 -.21 TEC TEN .610 NBAZC 53 NI 37 83 1.11 8 PCT 17 P2 AV2 .07 TEC TEN .610 TBATC 63 NI I41 83 .83 0 PCT 14 P2 AV2 -.07 TEC TEN .610 TBATC 63 HI 45 83 1.88 0 PCT 24 P2 AV2 .00 TEC TEN .610 TBATC 63 HI 45 83 1.87 0 PCT 24 P2 AV3 .00 TEC TEN .610 TBATC 63 NI 45 83 1.24 0 PCT 18 P2 AV4 .00 TEC TEN .610 TBATC 63 NI I 42 84 1.22 0 PCT 17 P2 AV2 -.05 TEC TEN .618 NBAZC 61 NI 42 84 1.25 0 PCT 17 P2 AV3 .10 TEC TEN .610 NBAZC 61 NI I 41 85 1.02 0 PCT 16 P2 AV2 .15 TEC TEN .610 TBATC 63 NI I 44 85 1.49 0 PCT 24 P2 AV2 .085 TEC TEN .610 TBATC 63 NI 44 85 3.25 0 PCT 32 P2 AV3 .00 TEC TEN .618 TBATC 63 NI 44 86 1.97 0 PCT 24 P2 AV4 .10 TEC TEN .610 TBATC 63 NI I 1 42 86 1.51 8 PCT 20 P2 AV2 .05 TEC TEN .610 NBAZC 61 NI I I 45 86 2.47 0 PCT 27 P2 AV2 .12 TEC TEN .610 NBAZC 61 NI 45 86 1.74 8 PCT 22 P2 AV3 .05 TEC TEN .610 NBATC 61 NI I 28 87 1.54 0 PCT 14 P2 AV2 .14 TEC TEN .610 NBAZC 53 NI I 41 87 1.66 8 PCT 22 P2 AV3 -.18 TEC TEN .618 TBATC 63 NI 41 87 2.57 0 PCT 28 P2 AV2 .00 TEC TEN .610 TBATC 63 NI 41 87 1.50 0 PCT 29 P2 AV3 -.32 TEC TEH .610 TBATC 63 HJ 41 87 .80 0 PCT 13 P2 AV4 .00 TEC TEH .619 TBATC 63 NJ I I 36 88 1.48 8 PCT 20 P2 AV3 -.24 TEC TEN .618 NBAZC 61 NI 39 88 1.27 0 PCT 18 P2 AV2 .00 TEC TEN .610 NBAZC 61 NI 36 89 .42 8 PCT 7 P2 AV2 -.13 TEC TEN .610 NBAZC 53 NI 42 89 3.07 0 POT 31 P2 AV1 .03 TEC TEN .610 TBATC 63 HI 42 89 3.22 0 PCT 32 P2 AV2 .00 TEC TEN .610 TBATC 63 NI 42 89 1.88 8 PCT 23 P2 AV3 .00 TEC TEN .618 TBATC 63 NI 45 89 .69 0 PCT 12 P2 AVi -.21 TEC TEN .610 TBATC 63 NI 45 89 3.09 0 PCT 32 P2 AV2 .01 TEC TEN .610 TBATC 63 NI 45 89 1.41 0 PCT 20 P2 AV3 .05 TEC TEN .610 TBATC 63 NI 36 90 1.03 0 PCT 15 P2 AV2 -.07 TEC TEN .618 NBAZC 61 NI 1 36 90 1.12 8 PCT 16 P2 AV3 -.30 TEC TEN .610 NBAZC 61 HI I I I 37 90 .88 0 PCT 13 P2 AV2 .30 TEC TEN .618 NBAZC 61 NJ 44 90 2.98 0 PCT 30 P2 AV3 .06 TEC TEN .610 NBAZC 61 NI 44 90 1.16 6 PCT 16 P2 AV4 -.03 TEC TEN .610 NBAZC 61 NI I 25 91 .98 0 PCT 16 P2 AV3 -.07 TEC TEN .618 NBAZC 57 NJ I 40 91 1.29 0 PCT 19 P2 AV2 .00 TEC TEN .610 TBATC 63 NJ 42 91 .60 0 PCT 11 P2 AV2 .88 TEC TEH .610 TBATC 63 HNJ----------------------------------------------

+---+---+--------------------


-------------

I ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PODA PTYPE CAL LI----------------------------

+--------+-----+-----+----+---+---+--+

-+ -----+------+----+


A. .....al max SG -8 Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 04/2812019 22:41:46..-----. --- ----- ---- -- I ------------------------------------------------------

.7 ---------------.---------.------


..---

I ROW COL VOLTS DEG INO PER CNN LOCN INCHI INCH2 I CRLEN CRW!O CEG BEGT ENOT POIA PTYPE CAL LI--.... -----.---

---.----.-----


.------------------------------.---


..+ -4 ..--÷ ----.-1 42 91 .73 0 PCT 12 P2 AV3 .86 TEC TEN .610 TBATC 63 HI 1 42 91 .78 0 PCT 13 P2 AV4 .16 TEC TEN .610 TBATC 63 HI 1w I I 43 91 1.81 0 PCT 23 P2 AV3 .00 TEC TEN .610 TBATC 63 HI 37 92 3.66 0 PCT 34 P2 AV2 .00 TEC TEN .610 NBAZC 61 HI I 38 92 1.18 0 PCT 17 P2 AV2 -.08 TEC TEN .610 NBAZC 61 HJ 38 92 .83 S PCT 13 P2 AV3 .05 TEC TEH .610 NBAZC 61 HI I 39 92 1.90 0 PCT 23 P2 AV4I -.13 TEC TEN .619 NBAZC 61 HJ 40 92 2.71 0 PCT 29 P2 AV3 .05 TEC TEH .610 NBAZC 61 HJ 40 92 .82 0 PCT 13 P2 AV4 .00 TEC TEN .610 NBAZC 61 HI I I 43 92 1.74 0 PCT 22 P2 AV3 -.08 TEC TEH .610 NBAZC 61 HI 7 9I 37 93 .85 0 PCT 14 P2 AV2 .00 TEC TEN .610 TBATC 63 HI 37 93 2.60 0 PCT 29 P2 AV3 .00 TEC TEN .610 TBATC 63 HI 8 9I 38 93 .78 0 PCT 12 P2 AV1 .00 TEC TEN .610 TBATC 63 NJ 38 93 .71 0 PCT 12 P2 AV2 .00 TEC TEN .610 TBATC 63 NJ 38 93 1.38 0 PCT 19 P2 AV3 .05 TEC TEN .610 TBATC 63 HI 38 93 1.02 0 PCT 16 P2 AV4 .08 TEC TEN .610 TBATC 63 HN I I 39 93 1.72 0 PCT 23 P2 AV3 .05 TEC TEN .610 TBATC 63 NI 39 93 .97 0 PCT 15 P2 AV4 -.08 TEC TEN .610 TBATC 63 Nj 41 93 1.76 0 PCT 23 P2 AV2 -.03 TEC TEN .610 TBATC 63 Nj 41 93 2.55 0 PCT 28 P2 AV3 -.04 TEC TEN .610 TBATC 63 Nj 41 93 1.72 0 PCT 22 P2 AV4 -.02 TEC TEN .610 TBATC 63 Nj 43 93 .97 0 PCT 15 P2 AV4 -.29 TEC TEN .610 TBATC 63 NJ 36 94 1.63 0 PCT 21 P2 AV2 .08 TEC TEN .610 NBAZC 61 NJ 37 94 .88 0 PCT 13 P2 AV2 .03 TEC TEN .610 NBAZC 61 Nj 37 94 1.01 0 PCT 15 P2 AV3 -.13 TEC TEN .610 NBAZC 61 Nj 39 94 1.36 0 PCT 19 P2 AV2 -.10 TEC TEN .610 NBAZC 61 Nj 39 94 3.12 0 PCT 31 P2 AV3 .13 TEC TEN .610 NBAZC 61 Nj 39 94 1.18 0 PCT 17 P2 AV4 -.15 TEC TEN .610 NBAZC 61 Nj 40 94 3.04 0 PCT 31 P2 AV2 .13 TEC TEN .610 NBAZC 61 Nj 33 95 .95 0 PCT 15 P2 AV3 -.10 TEC TEN .610 TBATC 63 NJ 34 95 .95 0 PCT 15 P2 AV3 .03 TEC TEN .610 TBATC 63 NJ 38 95 3.71 0 PCT 35 P2 AV1 .00 TEC TEN .610 TBATC 63 Nj 38 95 1.50 0 PCT 20 P2 AV2 .00 TEC TEN .610 TBATC 63 Nj 38 95 1.67 0 PCT 22 P2 AV3 .00 TEC TEN .610 TBATC 63 HI 38 95 1.62 0 PCT 22 P2 AV4 .08 TEC TEN .610 TBATC 63 Nj I 39 95 1.63 0 PCT 22 P2 AV2 .03 TEC TEN .610 TBATC 63 NJ 39 95 1.45 0 PCT 20 P2 AV3 -.03 TEC TEN .610 TBATC 63 NJ 39 95 1.55 0 PCT 21 P2 AV4 .01 TEC TEN .610 TBATC 63 Nj I 41 95 .97 0 PCT 15 P2 AV3 -.01 TEC TEH .610 TBATC 63 NJ 40 95 .94 0 PCT 15 P2 AV4 -.06 TEC TEN .610 TBATC 63 NJ I I 1 41 95 1.33 0 PCT 19 P2 AV3 .00 TEC TEN .610 TBATC 63 HN 41 95 3.22 0 PCT 32 P2 AV2 .15 TEC TEN .610 TBATC 63 NJ 41 95 2.21 0 PCT 26 P2 AV3 .05 TEC TEN .610 TBATC 63 Nj 35 96 2.19 0 PCT 25 P2 AV3 -.15 TEC TEN .610 NBAZC 61 Nj 38 96 2.64 0 PCT 28 P2 AV1 .05 TEC TEN .610 NBAZC 61 NJ 38 96 1.91 0 PCT 23 P2 AV2 .03 TEC TEN .610 NBAZC 61 NJ 38 96 1.08 0 PCT 16 P2 AV3 -.05 TEC TEN .610 NBAZC 61 NJ 38 96 2.96 0 PCT 30 P2 AV4 .03 TEC TEN .610 NBAZC 61 Nj 33 97 2.50 0 PCT 28 P2 AV3 -.03 TEC TEH .610 TBATC 63 HI 35 97 .78 0 PCT 13 P2 AV2 ,00 TEC TEH .610 TBATC 63 HJ 35 97 3.19 0 PCT 32 P2 AV3 .00 TEC TEN .610 TBATC 63 NJ 35 97 .93 0 PCT 15 P2 AV4 .00 TEC TEN .610 TBATC 63 Nj 29 98 1.08 0 PCT 17 P2 AV2 .00 TEC TEN .610 NBAZC 57 NJ-.... .... .........

+ ....... ...-----..

+- --... +. ... + -----------...

..---.---....

+ .+-...-.+-.....-...---......-

.-.+.....+-I ROW COL VOLTS DEG INO PER CNN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENOT POIA PTYPE CAL Lj.. .... ..... ......----------------------------------------------------------.--......

......+. ..+..-...5 ST Max SG -B Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 0412812010 22:41:46+--- +-----------------------

..------------------

+----------------------------------------------.-----------4-------------4..

ROW COL VOLTS DEG IND PER CHN LOCH INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT POIA PTYPE CAL LI....4 .. ...... ... ... ...÷... .. 4 ..... ......4------- ---4--- -4. .... -. .4.4..-.---

4......---4

.....----4-.....4---.

1 32 98 1.40 0 PCT 28 P2 AV3 -.15 TEC TEN .610 NBAZC 57 HI A lgýIM mwl 33 98 33 98 35 98 35 98 35 98 28 99 28 99 30 99 32 99 33 99 33 99 33 99 33 99 34 99 34 99 35 99 35 99 29 100 34 100 34 180 35 100 35 180 35 100 30 101 35 101 35 101 ,28 102 30 102 30 102 31 102 34 102 25 103 28 103 28 103 28 103 25 104 28 104 28 104 26 105 27 105 27 105 27 105 27 105 29 105 29 105 30 105 23 106 24 106 25 106 25 106 1.09 1.99 1.82 1.07 1.81 1.04.97 1.06 1.04.99 1.75 1.57.86.91.64 1.18 1.21.88 1.34.73 1.95 1.33 1.90 1.29 3.70 2.53 1.74 2.56 1.26 1.53.87 1.59.98.96 1.61 1.16 1.98 1.58 2.02 1.04 2.24 1.32 1.10 1.29 1.69 2.32.89 1.00.62 1.09 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT P2 AV2 P2 AV3 P2 AVI P2 AV3 P2 AV4 P2 AV2 P2 AV4 P2 AV3 P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV3 P2 AV4 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV4 P2 AVI P2 AV3 P2 AV4 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV4 P2 AV2 P2 AVI P2 AV2 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV4 P2 AV4 P2 AV2 P2 AV2 P2 AV2 P2 AV4-.15-.10.00-.05-.16-.10-.38.00.00.00.00 ,00.00.00-.03-.04-.02.10-.08-.16.00-.13.05.00.00.03.05*00.00-.16.00.00.00-.16.08.08.25-.25-.28.00-.39-.29-.11 80B 800.00-.09.00-. 07-.03 TEC TEN TEC TEH TEC TEH TEC TEN TEC TEN TEC TEN TEC TEH TEC TEH TEC TEH TEC TEH TEC TEN TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEN TEC TEN TEC TEN TEC TEH TEC TEH TEC TEH TEC TEN TEC TEH TEC TEN TEC TEN TEC TEH TEC TEH TEC TEH TEC TEN TEC TEN TEC TEN TEC TEH TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEH TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN TEC TEN.610 NBAZC.610 NBAZC.610 NBAZC.618 1BAZC.610 NBAZC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC ,610 TBATC.610 TBATC.610 TBATC.610 NBAZC.610 NBAZC.610 NBAZC.610 NBAZC.610 NBAZC.610 NBAZC.619 TBATC.610 TBATC.610 TBATC.610 NBAZC.610 NBAZC.610 NBAZC.610 NBAZC.610 HBAZC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 NBAZC.610 NBAZC.610 NBAZC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 TBATC.610 NBAZC.610 NBAZC.610 NBAZC.610 NBAZC 61 H 61 H 61 H 61 H 61 H 59 H 59 H 63 H 63 H 63 AH 63 H 63 Hf 63 Hf 63 H 63 H 63 Hf 63 H 57 Hf 61 H 61 H 61 H 61 Hf 61 H 63 H 63 H 63 H 57 H 61 H 61 H 61 Hf 61 H 63 H 63 H 63 H 63 H 57 H 61 H 61 Hf 63 H 63 Hf 63 H 63 Hf 63 H 63 H 63 H 63 H 57 H 61 H 61 H 61 H..+. .+.. .... .÷---.-----

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---.4.--+. .... ... ..-+-.......----

+---. .4 ..... ..----+ - ... --4.6 ST Max SG -B Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28188481 84/28/2818 22:41:46-- .... -- ---+- .... -.... -. ... ------- .-- -+- ------+-- --. --. --. - .... -+ .... -- ----4 ---+ -- .I ROW COL VOLTS DEG IND PER CNN LOCN INCHi INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LU 4-.. .-.. --. .. .. .---..---.

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--....- ......-- --+-- --- -.....

..... -- -.- --. -+--23 107 .74 8 PCT 12 P2 AV3 .88 TEC TEN .618 TBATC 63 NJ 24 107 .97 0 PCT 15 P2 AV2 .12 TEC TEH .618 TBATC 63 NJ 24 187 .85 0 PCT 14 P2 AV3 -.87 TEC TEN .618 TBATC 63 NJ 25 107 1.24 8 PCT 18 P2 AV2 .18 TEC TEN .618 TBATC 63 NI 25 107 1.55 8 PCT 21 P2 AV3 -.38 TEC TEN .618 TBATC 63 NI 26 107 .98 0 PCT 15 P2 AV2 -.13 TEC TEN .610 TBATC 63 Nj 23 108 3.31 8 PCT 32 P2 AV2 .88 TEC TEN .610 NBAZC 61 NJ 23 108 .79 0 PCT 12 P2 AV3 .08 TEC TEN .618 NBAZC 61 Nj 24 108 1.94 0 PCT 23 P2 AV4 -.23 TEC TEN .610 NBAZC 61 NI 25 188 .68 0 PCT 12 P2 AV2 .00 TEC TEN .616 TBATC 63 Nj 25 108 .74 0 PCT 12 P2 AV3 -.26 TEC TEN .618 TBATC 63 NJ 25 188 2.23 8 PCT 26 P2 AV4 -.25 TEC TEN .610 TBATC 63 NJ 21 11e .80 8 PCT 14 P2 AV4 -.03 TEC TEN .618 TBATC 63 Nj 4-----------------,------+---+----+-----+-----+----4

---4--- 4--4----------I


4 -----4----IROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI 4----------------------------------,-----+---+---4-----.---4---4--.-----4--.-


+-----+-4


4---.Tubes: 177 Records: 324 7 ST Max Attachment C.3 2C Steam Generator Inservice Indications Page 35 of 41 SG -C Wear Indications Attributed to Foreign Objects Byron 2 B2R15 CBE 26166401 04128/2010 22:32:32*--. -4 .... --. .-- -+ .--- + -... 4" .--- + -------- + .... .... ..------ --- ---- --4" -... 4" -. .---------

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I ROW COL VOLTS DEG IND PER CNN 1OCH INCHi INCH2 I CRIEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI1+-------------------------,----*-----+-----+-----+-----+--------4--, -+ -----* -----+ -----+ -+ ----------

Tubes: 0 Records: S 1 ST Hex SG -C Preheater Wear Indications Byron 2 B2R15 CBE 28188481 04/28/2010 21:87:10--- -- ---------------

,--------+-----,-----+-----,------+---

-+ 4-----------------------

4-------I ROW COL VOLTS DEG INO PER CHN LOCH INCHi INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI----- ----- ---- ----- -- ------------

+---------+----,------+-----+---------

+ --------+ -------I 48 35 .31 S PCT 6 P6 S2C .57 TEC TEH .610 NBAZC 95 HI 49 65 .66 8 PCT 25 P7 S7C -.31 TEC TEH .610 NBAZC 95 HI I 49 70 1.48 8 PCT 38 P7 S7C -.49 TEC TEH .610 NBAZC 95 HI I 49 73 .64 S PCT 22 P4 07C -.44 .71 .23 35 S7C 07C .618 ZPSN14 8 CI+ ...+ .. +.. .. ...÷ .. +... ... ...÷ .. +..... ..÷ ......+.----------+-

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+....... .- +. ...÷ .... ..---------

+----+. ..---- + -- -..----.+-.-.... ... .1 Tubes: 4 Records: 4 ST Max SG -C Anti-Vibratton Bar Wear Indications Byron 2 B2R15 CBE 28108401 04/28/2010 22:41:46÷ .. .÷....4, .... ...÷ .. .*....÷ ... ÷... ÷ ... -- -- ÷ .........

--- -----------÷. ...- ..... ..4 ..,. .. .÷. ..4 ...4-- 4-I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI+...- ..- .....--..+.. ...+.. ...4.-------.....-........---

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+..+I 21 22 22 23 26 26 26 26 26 27 29 31 26 32 32 31 31 33 38 I 38 38 30 37 37 26 35 4 I 35 35 36 36 39 36 36 39 36 40 40 35 35 36 36 38 38 38 37 37 42 36 36 35 6 1.04 0 PCT 18 P2 AVI 1.29 1.28 2.15 1.17.76 1.45 1.58 1.79 1.08 1.65.85.73 1.25 1.56.92 1.54.92 1.99 1.36.91.95 1.50 1.38 1.16 1.03 1.01.75.84 2.31 2.75.83 1.27 1.22 2.46 3.31.77 1.08 1.74 1.53 1.49 1.86 1.49 1.12 1.07.87.99 1.28 2.51 8 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT* PCT o PCT 8 PCT 0 PCT 9 PCT 8 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT* PCT 8 PCT 8 PCT 0 PCT 0 PCT 8 PCT o PCT 8 PCT 8 PCT 0 PCT 8 PCT* PCT 0 PCT 8 PCT 9 PCT 0 PCT 8 PCT 0 PCT 8 PCT 8 PCT 0 PCT 0 PCT 0 PCT 21 21 28 19 14 19 20 22 16 21 15 15 21 23 17 23 17 24 19 16 17 23 22 17 18 18 15 16 28 31 16 21 20 29 33 15 19 25 23 23 26 23 19 19 17 18 28 30 P2 AV4 P2 AV4 P2 AV4 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV4 P2 AV3 P2 AV3 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AVl P2 AV3 P2 AV3 P2 AV1 P2 AV2 P2 AV2 P2 AV3 P2 AV3 P2 AV3 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV1 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV3 P2 AV3.08.00.80.8B.88.80-. 06.12.05.00.03.00-.83-. 09* 09-.28.00.09.19.08-.12-.18.88.88.03-.17.09 802.06.00.00.80 ,00-.25.07.15.80-. 08.00.88.03.80.06-.17-.11.88.90.00 TEC TEH .610 NBAZC 47 HJ I TEC TEH .610 NBAZC 47 HI TEC TEH .618 NBAZC 47 HI I TEC TEN .610 NBAZC 47 HI I TEC TEH .610 NBAZC 51 HI TEC TEH .610 NBAZC 51 HI TEC TEH .619 NBAZC 53 HI TEC TEH .610 NBAZC 53 HI TEC TEN .610 NBAZC 53 HI TEC TEH .610 NBAZC 53 HI TEC TEN .610 NBAZC 53 HI TEC TEH .610 NBAZC 57 HI TEC TEN .618 NBAZC 47 HI'TEC TEN .619 NBAZC 55 HI TEC TEN .610 NBAZC 57 HI TEC TEH .618 NBAZC 53 HI I TEC TEH .610 NBAZC 55 HI TEC TEN .610 NBAZC 55 HI I TEC TEH .610 NBAZC 55 HI I TEC TEH .618 NBAZC 53 HI TEC TEN .610 NBAZC 53 HN I TEC TEN .610 NBAZC 47 HI TEC TEN .618 NBAZC 47 HN I TEC TEN .610 NBAZC 57 HI TEC TEN .618 NBAZC 57 HI I TEC TEN .610 NBAZC 49 HI I TEC TEN .610 NBAZC 55 HN I TEC TEN .610 NBAZC 57 HI TEC TEN .610 NBAZC 57 HI TEC TEN .618 NBAZC 57 HN TEC TEN .610 NBAZC 57 HI T TEC TEN .610 NBAZC 57 HI I TEC TEN .610 NBAZC 55 HJ TEC TEN .610 NBAZC 55 HI I TEC TEN .610 NBAZC 55 HJ I TEC TEN .610 NBAZC 57 HI I TEC TEH .619 NBAZC 57 NJ TEC TEH .610 NBAZC 57 HJ I TEC TEN .610 NBAZC 55 HJ TEC TEH .610 NBAZC 55 HJ TEC TEH .619 NBAZC 55 HJ TEC TEH .616 NBAZC 55 HJ TEC TEH .610 NBAZC 55 HJ TEC TEH .610 NBAZC 55 HJ TEC TEH .619 NBAZC 55 NJ TEC TEN .610 NBAZC 57 HJ TEC TEN .610 NBAZC 57 HJ TEC TEH .610 NBAZC 57 NJ I TEC TEN .610 NBAZC 51 HJ 25 .75 8 PCT 14 P2 AVI÷. .- .... .....-.-----.----.----

+----.----+-

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-+ -.-+..... .....----

-+-- .....-- ÷ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI-----------------------------



--- -----------

--- ... .......1 ST Max SG -C Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 28100461 04/28/2010 22:41:46 4.----.. ..+..... ..+.. .. ..+.. .....+.....-----÷.

-........+.......--4.---..---

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4.-. ....-÷I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWIO CEG BEGT ENDT POIA PTYPE CAL LI-------------------------------

+--------------------------------4---+--.

-+ ----+ ----* --,--------1 36 25 1.93 8 PCT 25 P2 AV2 .88 TEC TEH .610 NBAZC 51 HI 1 35 25 1.66 S PCT 23 P2 AV3 .88 1EC TEN .610 NBAZC 51 HI I I 36 25 1.41 0 PCT 21 P2 AV2 .00 TEC TEH .610 NBAZC 51 HI I38 25 1.23 0 PCT 19 P2 AVI .80 TEC TEH .610 NBAZC 57 HI 38 25 1.63 0 PCT 24 P2 AV2 .25 TEC TEH .618 NBAZC 57 HI 38 25 1.86 8 PCT 19 P2 AV3 .85 TEC TEH .610 NBAZC 57 HI I I 39 25 1.22 0 PCT 20 P2 AVI -.06 TEC TEH .610 NBAZC 57 HJ 39 25 .88 0 PCT 17 P2 AV2 .14 TEC TEN .610 NBAZC 57 Hf 42 25 1.87 0 PCT 26 P2 AV3 -.19 TEC TEN .610 HBAZC 57 HI I I 39 26 .92 0 PCT 17 P2 AV3 .80 TEC TEH .610 HBAZC 55 HI 41 26 1.04 0 PCT 18 P2 AVZ .05 TEC TEH .616 NBAZC 55 HI 41 26 1.36 0 PCT 22 P2 AV3 .08 TEC TEH .610 NBAZC 55 Hf 34 27 2.28 0 PCT 28 P2 AV2 .00 TEC TEH .618 NBAZC 51 HI 36 27 1.15 0 PCT 19 P2 AV3 .00 TEC TEH .610 NBAZC 51 HI 39 27 .82 0 PCT 16 P2 AVI .06 TEC TEH .618 NBAZC 57 Hf 41 27 1.30 8 PCT 21 P2 AV2 .00 TEC TEH .618 NBAZC 57 Hf 32 28 1.21 0 PCT 17 P2 AV2 .09 TEC TEH .619 NBAZC 53 HJ 32 28 1.18 0 PCT 17 P2 AV3 .00 TEC TEH .610 NBAZC 53 Hf 36 28 1.19 0 PCT 28 P2 AV3 .88 TEC TEH .610 NBAZC 55 HJ 29 29 1.24 0 PCT 21 P2 AV2 .08 TEC TEH .618 NBAZC 57 Hf 29 29 1.04 0 PCT 19 P2 AV3 -.08 TEC TEN .610 NBAZC 57 Hf 34 29 1.12 0 PCT 19 P2 AV2 .00 TEC TEN .610 NBAZC 57 Hf 34 29 .96 8 PCT 18 P2 AV3 -.16 TEC TEH .618 NBAZC 57 Hf 42 29 .84 0 PCT 16 P2 AV1 -.39 TEC TEN .618 NBAZC 57 Hf 42 29 1.10 0 PCT 19 P2 AV2 .24 TEC TEN .610 NBAZC 57 Hf 42 29 2.08 0 PCT 27 P2 AV3 -.11 TEC TEN .618 NBAZC 57 Hf 35 30 1.70 0 PCT 24 P2 AV2 .08 TEC TEN .610 NBAZC 55 Hf 43 30 .89 0 PCT 17 P2 AV3 .00 TEC TEH .618 NBAZC 55 Hf 27 34 .88 9 PCT 17 P2 AV3 -.24 TEC TEH .610 NBAZC 55 Hf 37 34 1.82 8 PCT 18 P2 AV3 -.10 TEC TEH .618 NBAZC 55 Hf 43 34 1.86 0 PCT 26 P2 AV3 .82 TEC TEN .610 NBAZC 55 Hf 28 35 1.39 0 PCT 19 P2 AV3 -.14 TEC TEN .610 NBAZC 69 Hf 28 35 1.21 0 PCT 17 P2 AV4 -.28 TEC TEN .610 NBAZC 69 Hf 30 35 1.89 8 PCT 23 P2 AV3 .00 TEC TEN .610 NBAZC 61 Hf 39 35 1.22 0 PCT 17 P2 AV1 .00 TEC TEH .610 NBAZC 61 Hf 39 35 4.03 8 PCT 35 P2 AV2 -.03 TEC TEH .610 NBAZC 61 Hf 39 35 4.22 0 PCT 36 P2 AV3 .08 TEC TEH .610 NBAZC 61 Hf 31 36 1.12 0 PCT 21 P2 AV2 .11 TEC TEH .610 NBAZC 59 Hf 43 36 1.72 0 PCT 25 P2 AV3 -.05 TEC TEH .610 NBAZC 55 Hf 43 36 1.21 0 PCT 20 P2 AV4 .07 TEC TEN .610 NBAZC 55 Hf 29 38 .73 0 PCT 14 P2 AV3 .05 TEC TEN .610 NBAZC 63 Hf 39 38 1.47 8 PCT 22 P2 AV3 -.08 TEC TEN .610 NBAZC 59 Hf 33 39 1.05 0 PCT 15 P2 AV2 .03 TEC TEN .610 NBAZC 61 Hf 33 39 1.19 0 PCT 17 P2 AV3 .00 TEC TEH .618 NBAZC 61 Hf 29 40 .95 S PCT 17 P2 AV2 -.03 TEC TEN .618 NBAZC 63 Hf 29 40 .96 8 PCT 17 P2 AV3 -.05 TEC TEN .610 NBAZC 63 Hf 31 42 .78 0 PCT 15 P2 AV2 .05 TEC TEH .610 NBAZC 63 Hf 36 42 .91 0 PCT 16 P2 AV3 -.16 TEC TEH .610 NBAZC 59 Hf--------------------------------------------------------------

,--------

+ ------ ------------

+ -------ROW COL VOLTS DEG IND PER CNN LOCN INCHI+ INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL 1f----+---- ----------------------------------------------

+------2 ST Max SG -C Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 26166481 0412812010 22:41:46... .. ..-------------------.--

--...-....

--.------


+. --.----------


+-.+ -------------

I ROW COL VOLTS DEG INO PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL L1+ ..+.. .....÷.. .. ..÷.. .. .... ----------------...-

+ ....- ..... ..... ...÷ ...-------.-

..+...÷....


.---....

+29 43 1.36 6 PCT 26 P2 AV4 .16 TEC TEN .616 NBAZC 65 HI S29 44 .96 6 PCT 17 P2 AVI .15 TEC TEN .610 NBAZC 63 HI 29 44 1.25 0 PCT 20 P2 AV2 .26 TEC TEN .610 NBAZC 63 HI I J 31 48 1.16 6 PCT 19 P2 AV2 -.16 TEC TEN .616 NBAZC 63 HI I I 39 49 1.31 6 PCT 18 P2 AV2 -.03 TEC TEN .616 NBAZC 61 HI I 31 5S .84 0 PCT 16 P2 AVI -.05 TEC TEN .618 NBAZC 63 HI 33 56 .92 6 PCT 16 P2 AV3 -.05 TEC TEN .610 NBAZC 59 Hl 37 50 1.46 a PCT 22 P2 AV2 -.31 TEC TEH .616 NBAZC 59 HI I 48 56 .68 6 PCT 16 P2 AV2 .66 TEC TEN .610 NBAZC 63 HI I 38 62 2.22 6 PCT 28 P2 AV2 .66 TEC TEN .616 NBAZC 23 HI 38 62 1.62 6 PCT 24 P2 AV3 .86 TEC TEN .616 NBAZC 23 HN I 41 63 1.12 6 PCT 18 P2 AVI .66 TEC TEN .616 NBAZC 25 HI 41 63 3.67 6 PCT 34 P2 AV2 .66 TEC TEN .616 NBAZC 25 HN 41 63 1.66 6 PCT 22 P2 AV3 .66 TEC TEH .610 NBAZC 25 Hj I I 31 64 .84 6 PCT 16 P2 AV2 .03 TEC TEN .610 NBAZC 23 HI 32 73 .89 6 PCT 14 P2 AV3 .66 TEC TEN .616 NBAZC 29 HI 32 74 1.14 6 PCT 21 P2 AV3 -.88 TEC TEN .616 NBAZC 27 HI 32 79 1.27 6 PCT 18 P2 AV3 .66 TEC TEH .616 NBAZC 29 NI 41 79 1.28 6 PCT 18 P2 AV3 .66 TEC TEN .616 NBAZC 29 HN 136 8 .97 6 PCT 26 P2 AV1 .66 TEC TEN .610 NBAZC 27 HN 36 86 1.48 6 PCT 25 P2 AV3 -.37 TEC TEN .616 NBAZC 27 HI 33 81 1.13 6 PCT 17 P2 AV3 .38 TEC TEH .610 NBAZC 33 Hj I I 36 81 1.15 6 PCT 17 P2 AV3 .16 TEC TEN .616 NBAZC 33 HI 39 81 1.62 6 PCT 15 P2 AV2 .16 TEC TEN .610 NBAZC 29 HI I 39 81 1.89 6 PCT 14 P2 AV3 .66 TEC TEN .610 NBAZC 29 HI 31 82 1.63 6 PCT 21 P2 AV3 .18 TEC TEN .616 NBAZC 31 Hj I 32 82 1.62 6 PCT 25 P2 AV3 .03 TEC TEN .616 NBAZC 31 HI I 35 82 1.62 6 PCT 25 P2 AV2 .63 TEC TEN .616 NBAZC 31 HI 32 83 .61 6 PCT 21 PZ AV3 .18 TEC TEN .610 NBAZC 33 HI 35 83 1.15 6 PCT 17 P2 AV3 .03 TEC TEN .610 NBAZC 33 HI I 39 83 2.84 0 PCT 21 P2 AV2 .29 TEC TEN .616 NBAZC 33 HN 46 83 1.78 0 PCT 23 P2 AV3 -.26 TEC TEN .610 NBAZC 33 HN I 49 83 .98 6 PCT 15 P2 AV4 -.03 TEC TEN .610 NBAZC 33 HI 28 84 1.63 6 PCT 24 P2 AV3 .05 TEC TEN .610 NBAZC 31 HI I 43 84 1.16 6 PCT 26 P2 AV2 .26 TEC TEN .618 NBAZC 31 HN I 37 84 .88 6 PCT 16 P2 AV2 .05 TEC TEN .610 NBAZC 31 NI 37 84 1.47 6 PCT 22 P2 AV3 -.11 TEC TEN .610 NBAZC 31 HI I 41 84 .88 6 PCT 16 P2 AV1 -.17 TEC TEN .616 NBAZC 31 HI 41 84 1.38 6 PCT 22 P2 AV3 -.18 TEC TEN .616 NBAZC 31 Hj I 26 85 1.49 6 PCT 26 P2 AV2 .08 TEC TEN .610 NBAZC 33 HN I 63 85 1.32 6 PCT 19 P2 AV2 .16 TEC TEN .616 NBAZC 33 HI 30 85 1.62 6 PCT 16 P2 AV3 .66 TEC TEN .610 NBAZC 33 HI I ROW COL VOLTS DEG INO PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT POIA PTYPE CAL LI-------------------------------------------------------------------


-+ ---.-- .--------+ ----+ -----....-

+-.- ------------

a)01 lIaX SG -C Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 04/28/2010 22:41:46-.... -.... -....... -.... -.... -.... -.... +- .----------

+ -+ .-- -------- ----......+ .---+ ----......- --.. --+ .+ --I ROW COL VOLTS DEG IND PER CHN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI--4 --------------------------------------------------



---- ---.-----


------ -------+---* 1 34 85 1.35 0 PCT 19 P2 AV2 -.24 TEC TEN .610 NBAZC 33 NI 134 85 1.07 0 PCT 16 P2 AV3 -.03 TEC TEH .610 NBAZC 33 HI I I 35 85 .88 0 PCT 14 P2 AVI -.09 TEC TEH .610 NBAZC 33 HI 35 85 2.26 0 PCT 26 P2 AV2 .14 TEC TEN .610 NBAZC 33 HI 35 85 3.62 0 PCT 34 P2 AV3 -.03 TEC TEN .610 NBAZC 33 HI I41 85 1.02 0 PCT 16 P2 AV .28 TEC TEN .610 NBAZC 33 NJ 41 85 .97 0 PCT 15 P2 AV3 .11 TEC TEN .610 NBAZC 33 NI 42 85 1.25 0 PCT 18 P2 AV3 -.13 TEC TEN .610 NBAZC 33 NJ 35 86 .88 0 PCT 16 P2 AVi .11 TEC TEN .610 NBAZC 31 NJ 35 86 3.26 0 PCT 33 P2 AV2 .03 TEC TEN .610 NBAZC 31 HI 35 86 1.21 0 PCT 20 P2 AV3 .00 TEC TEN .610 NBAZC 31 NJ 42 86 1.15 0 PCT 19 P2 AVI .00 TEC TEN .610 NBAZC 31 NJ I42 86 2.01 0 PCT 27 P2 AV2 -.23 TEC TEN .610 NBAZC 31 NI 42 86 2.75 0 PCT 31 P2 AV3 -.03 TEC TEN .610 NBAZC 31 Nj 42 86 .83 0 PCT 16 P2 AV4 -.03 TEC TEN .610 NBAZC 31 NI 35 87 1.68 0 PCT 22 P2 AV3 .05 TEC TEH .610 NBAZC 33 NJ 35 87 .93 0 PCT 15 P2 AV4 -.10 TEC TEN .610 NBAZC 33 HI 35 88 1.44 0 PCT 22 P2 AV3 -.16 TEC TEN .610 NBAZC 31 Nj 41 88 1.53 0 PCT 23 P2 AV2 .45 TEC TEH .610 NBAZC 31 HI 41 88 2.47 0 PCT 29 P2 AV3 -.26 TEC TEN .610 NBAZC 31 NJ 42 88 1.50 0 PCT 23 P2 AV2 .24 TEC TEN .610 NBAZC 31 HN 42 88 1.83 0 PCT 25 P2 AV3 -.08 TEC TEN .610 NBAZC 31 NJ 41 89 3.17 0 PCT 32 P2 AV2 .00 TEC TEN .610 NBAZC 33 HI 41 89 1.77 0 PCT 23 P2 AV2 -.21 TEC TEN .610 NBAZC 33 NJ 41 89 3.50 0 PCT 34 P2 AV3 .00 TEC TEN .610 NBAZC 33 NI 41 89 2.45 0 PCT 28 P2 AV4I .06 TEC TEN .610 NBAZC 33 Nj 42 89 .96 0 PCT 15 P2 AVI .00 TEC TEN .610 NBAZC 33 NI 42 89 2.05 0 PCT 25 P2 AV2 .22 TEC TEN .610 NBAZC 33 NJ 42 89 4.44 0 PCT 38 P2 AV3 ý.03 TEC TEN .610 NBAZC 33 Nj 42 89 .89 0 PCT 14 P2 AV4 .00 TEC TEN .610 NBAZC 33 NJ I 22 99 1.01 0 PCT 19 P2 AVI 2 -.14 TEC TEN .610 NBAZC 35 NJ 40 90 1.17 0 PCT 20 P2 AV2 .05 TEC TEN .610 NBAZC 31 NJ 40 90 1.17 0 PCT 20 P2 AV3 .24 TEC TEN .610 NBAZC 31 Nj 40 90 1.05 0 PCT 18 P2 AV4 .00 TEC TEN .610 NBAZC 31 NJ I I 42 90 1.11 0 PCT 19 P2 AV2 .00 TEC TEN .610 NBAZC 31 Nj 42 90 2.58 0 PCT 30 P2 AV3 -.24 TEC TEN .610 NBAZC 31 NJ 42 90 1.07 0 PCT 19 P2 AV4 -.08 TEC TEN .610 NBAZC 31 Nj 27 91 1.22 0 PCT 17 P2 AV3 -.08 TEC TEN .610 NBAZC 37 NJ 34 92 1.49 0 PCT 23 P2 AV2 .19 TEC TEN .610 NBAZC 35 Nj 34 92 1.05 0 PCT 19 P2 AV3 -.05 TEC TEN .610 NBAZC 35 HI 41 92 1.09 0 PCT 19 P2 AVI .00 TEC TEN .610 NBAZC 35 Nj 41 92 .77 0 PCT 16 P2 AV2 .03 TEC TEN .610 NBAZC 35 NJ 41 92 3.07 0 PCT 33 P2 AV3 .19 TEC TEN .610 NBAZC 35 Nj 41 92 1.32 0 PCT 22 P2 AV4 -.15 TEC TEN .610 NBAZC 35 NJ 35 93 .99 0 PCT 15 P2 AV2 -.28 TEC TEN .610 NBAZC 37 Nj 36 93 1.36 0 PCT 19 P2 AV2 .00 TEC TEN .610 NBAZC 37 NJ 39 93 1.17 0 PCT 17 P2 AV4 -.03 TEC TEN .610 NBAZC 37 NJ 40 93 1.38 0 PCT 19 P2 AVI -.15 TEC TEN .610 NBAZC 37 Nj 40 93 1.22 0 PCT 17 P2 AV2 .00 TEC TEN .610 NBAZC 37 Nj 40 93 2.30 0 PCT 26 P2 AV3 -.27 TEC TEN .610 NBAZC 37 Nj j I 42 93 2.89 0 PCT 30 P2 AVI .00 TEC TEN .610 NBAZC 37 Nj 42 93 1.32 0 PCT 18 P2 AV2 .00 TEC TEN .610 NBAZC 37 Nj 42 93 3.92 0 PCT 35 P2 AV3 .00 TEC TEN .610 NBAZC 37 Nj 42 93 1.17 0 PCT 17 P2 AV4 -.03 TEC TEN .610 NBAZC 37 NJ 43 93 1.21 0 PCT 17 P2 AVI .00 TEC TEN .610 NBAZC 37 Nj 43 93 2.07 0 PCT 25 P2 AV2 .00 TEC TEN .610 NBAZC 37 NJ 43 93 1.47 0 PCT 20 P2 AV3 -.22 TEC TEN .610 NBAZC 37 NJ+--------------------------+-----+----+-----+----,-----+----+---4--, -+ -----4-----+------+-

+ --------I ROW COL VOLTS DEG IND PER CNN LOCN INCH1+ INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL Lj 4----- ---------------------------------


-----------------


4 ST Max SG -C Anti-Vibration Bar Wear Indlcations Byron 2 B2R15 CBE 20108461 04/28/2010 22:41:46÷..÷.. .... .. .. ... .----------..-......---.----.-----..

+ ... ... ..÷ ..+..---+---+, -..+ -..------------------------------

+I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 1 CRLEN CRWID CEG BEGT ENOT POIA PTYPE CAL Ll----------------------------------------

+-----+-----+---+-----+---4---+--+

-+ ----4 ----,- +-----4--,-

I i I 34 94 1.09 9 PCT 19 P2 AV2 .08 TEC TEH .619 NBAZC 35 HI I 34 94 1.04 0 PCT 19 P2 AV3 -.14 TEC TEN .610 NBAZC 35 HI 36 94 .92 0 PCT 18 P2 AV2 -.06 TEC TEN .610 NBAZC 35 Hf 39 94 1.15 S PCT 20 P2 AV2 .11 TEC TEN .619 NBAZC 35 HN 39 94 .84 0 PCT 17 P2 AV3 -.17 TEC TEN .618 NBAZC 35 NI 42 94 1.11 0 PCT 29 P2 AV2 -.09 TEC TEN .610 NBAZC 35 Hf 42 94 2.60 0 PCT 31 P2 AV3 .03 TEC TEN .619 NBAZC 35 NJ 42 94 1.21 0 PCT 21 P2 AV4 -.18 TEC TEN .610 NBAZC 35 Hf 34 95 1.40 8 PCT 19 P2 AV2 .80 TEC TEN .610 NBAZC 37 Nj 35 95 1.59 8 PCT 21 P2 AV2 .00 TEC TEN .610 NBAZC 37 Hf 40 95 1.84 8 PCT 23 P2 AVI .00 TEC TEN .610 NBAZC 37 HJ 46 95 2.57 0 PCT 28 P2 AV3 -.03 TEC TEN .610 NBAZC 37 Hf 35 96 .99 8 PCT 18 P2 AV2 .80 TEC TEN .610 NBAZC 35 NJ 35 96 1.81 0 PCT 19 P2 AV4 -.08 TEC TEN .610 NBAZC 35 HI I I 36 96 1.74 0 PCT 25 P2 AV2 -.11 TEC TEN .610 NBAZC 35 HI 36 96 1.06 0 PCT 19 P2 AV3 -.17 TEC TEN .610 NBAZC 35 NJ 30 99 1.07 0 PCT 17 P2 AV2 .06 TEC TEN .616 NBAZC 41 Hf 38 99 .99 0 PCT 17 P2 AV2 .06 TEC TEN .610 NBAZC 39 Nj 38 100 1.81 8 PCT 17 P2 AV2 .19 TEC TEN .610 NBAZC 39 Hf 32 100 .95 8 PCT 17 P2 AV2 -.06 TEC TEH .610 NBAZC 39 HI 32 100 .90 S PCT 16 P2 AV3 -.19 TEC TEN .610 NBAZC 39 Hf 35 106 .92 0 PCT 16 P2 AV3 -.28 TEC TEN .610 NBAZC 39 NJ 27 101 .96 0 PCT 16 P2 AV3 -..04 TEC TEN .610 NBAZC 41 NJ 28 181 .85 0 PCT 15 P2 AV2 .16 TEC TEN .610 KBAZC 41 NJ 28 101 .93 8 PCT 16 P2 AV3 -.83 TEC TEN .610 NBAZC 41 Hf I30 101 1.06 8 PCT 17 P2 AV2 .08 TEC TEN .618 NBAZC 41 NJ 30 101 1.19 0 PCT 18 P2 AV3 -.15 TEC TEN .610 NBAZC 41 Hf I.32 101 .90 0 PCT 15 P2 AV2 .08 TEC TEN .610 NBAZC 41 HJ 32 181 1.18 8 PCT 19 P2 AV3 -.20 TEC TEN .618 NBAZC 41 Hf 28 103 2.66 0 PCT 30 P2 AV3 .00 TEC TEN .610 NBAZC 41 HI 30 104 .98 8 PCT 17 P2 AV2 -.15 TEC TEN .618 NBAZC 39 Nj 30 104 1.12 0 PCT 19 P2 AV3 -.35 TEC TEN .618 NBAZC 39 HN I I 25 105 1.21 8 PCT 19 P2 AV2 .00 TEC TEN .610 NBAZC 41 Hf 26 186 1.17 0 PCT 19 P2 AVi .15 TEC TEN .610 NBAZC 39 HI 27 186 1.26 0 PCT 20 P2 AV2 .06 TEC TEN .610 NBAZC 39 HJ 27 106 2.48 8 PCT 29 P2 AV3 -.86 TEC TEH .618 NBAZC 39 HJ 25 107 1.33 8 PCT 20 P2 AV4 .88 TEC TEN .610 NBAZC 41 Hf 25 108 1.19 0 PCT 19 P2 AVI .37 TEC TEN .610 NBAZC 39 Hf 25 108 1.49 0 PCT 22 P2 AV2 -.10 TEC TEN .610 NBAZC 39 HN 25 188 1.79 0 PCT 25 P2 AV3 -.10 TEC TEN .610 NBAZC 39 HJ 25 108 .95 0 PCT 17 P2 AV4 -.11 TEC TEN .610 NBAZC 39 Hf+--------------------------------+-----+----+-----,----+---+---+---+


+------+----+-

+------IROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRIEN CRWID CEG BEGT ENOT POZA PTYPE CAL LI+-------------------------------+---+-----+-----+-----+---+---+---+------+


+-.--+----+-

+ -+ ---,--Tubes: 144 Records: 243 5 ST Max Attachment C.4 2D Steam Generator Inservice Indications Page 36 of 41 SG -D Wear Indications Attributed to Foreign Objects Byron 2 B2R15 CBE 20100401 04/29/2010 15:55:15..-- .. ...---t--÷.... ----.---.

.----,-----,-----

.........

-...÷.. .÷.-----------+----

÷----t -----------------

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDOA PTYPE CAL LI 4 .---+-.....--

.. ÷..----.---..----+----...+

....÷ ....... ....... .--------.-

.--- --.----------

..........

-...........

24 65 .26 86 VOL P4 02C .94 02C 03C .610 ZPSNM 12 CI I 24 65 .32 91 PCI 31 2 82C .95 .29 .19 29 8ZC 03C .610 ZPSNM 12 CI I 24 65 .49 152 OFS I 02C 1.17 TEC TEH .618 NBAZC 59 HI--------------------------------

4--------.----,----4------+---4--.-+-


+-----4-----,---------4--

I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI-* ----------------------------------------------------------------------


------.- -------- ----- ------ --4------------

--.1 Tubes: 1 Records: 3 ST Max SG -0 Preheater Wear Indications Byron 2 B2R15 CBE 20100401 04129/2010 09:13:31--------------------------------

+---------+----+------+---+----+-

+ -----+-----+ -----+ ------+------I ROW COL VOLTS DEG IND PER CHN LOCH INCH1 INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI------------------------

+-------+-----+-----+-----+-----+----+----+-----+


+ -----+-----+ -+ ------ ---1 48 63 .70 0 PCT 24 P4 07C .37 1.04 .33 56 07C 07C .610 ZPSNM 12 CI I 48 63 .23 0 PCT 6 P6 05C .03 TEC TEH .610 SBACC 91 HI vw I I I 24 65 .32 91 PCT 31 2 02C .95 .29 .19 29 02C 03C .610 ZPSNM 12 CI---- -------------


--- ----- -------------

++ + + +-+---+---+--+

-+ -----+-----+-----+

-+ -+--- 4.--I ROW COL VOLTS DEG INO PER CHN LOCH INCHi INCH2 I CRLEN CRWIO CEG BEGT ENOT PDIA PTYPE CAL LI+.. ...... ..-- ..- ....÷. .-..- ..".-------+.......--.-.........-.---+-

--. .- -..+---- .---- + ...----.-

-......+.....---

÷Tubes: 2 Records: 3 ST Max 1 SG -D Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 04129/2010 09:38:53 4--.... -"-.... +.. ....4 ...4 ....----.----

+ ....4 ....-- -+- --+-- 4" "4+..-+-+..

...---- +----+-" .------+ -.. .-. ". ..-- 4, I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWIO CEG BEGT ENOT PDIA PTYPE CAL LI.. .-..--- ... ...-- ...-- .. -- .. 4- .."" .. -t ----------.......

4 ... ...-- .--.- .---- + .---- -"- ....- -.......-..

".PAR 20 5 1.10 0 PCT 16 P2 AV4 7 7 11 13 13 13 14 14 16 17 17 17 17 18 19 19 20 20 20 21 21 21 22 22 22 22 25 25 25 26 27 27 27 27 28 28 29 29 29 30 32 32 33 33 33 33.97 1.01.78 1.08.91 1.79 1.23 1.68.99 2.39 1.07 1.40.70 1.15 1.03.76 2.30 1.76 2.43 1.50 1.08.97 1.31 1.13 1.79 1.59.68 1.48.95 1.16.60.77 1.04.88 2.25 1.21 2.71 1.81 1.03 1.15 1.20 1.32.74 2.79 2.51 1.42 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT P2 AV3 P2 AVI P2 AV3 P2 AV1 P2 AV2 P2 AV3 P2 AV4 P2 AV4 P2 AV2 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AV2 P2 AV1 P2 AV2 P2 AV2 P2 AV2 P2 AV3 P2 AV3 P2 AV4 P2 AVI P2 AV2 P2 AV2 P2 AV3 P2 AV3 P2 AV3 P2 AV2 P2 AV2 P2 AV3 P2 AV4 P2 AV4 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV1 P2 AV2 P2 AV3 P2 AV2-.06.00.00.00.00.00.00-.37-.16-.21.00.00.00.00-.19.00.00.00.00.00.00.00.00-.35-.35.00-.27.00.00.00.00.00-.33.00.21.00-.13.00.00.00.00 ,13.00.00.00.00.00.00 TEC TEN .610 NBAZC 37 11 TEC TEN .610 NBAZC 39 HI I TEC TEN .610 NBAZC 37 11 I TEC TEN .610 NBAZC 39 HI I TEC TEN .610 NBAZC 39 HI TEC TEN .610 NBAZC 39 H1 TEC TEN .610 NBAZC 39 HI TEC TEN .610 NBAZC 39 Hl I TEC TEN .610 NBAZC 37 Hl I TEC TEN .610 NBAZC 37 HI I TEC TEN .610 NBAZC 39 Hl TEC TEN .610 NBAZC 39 HI TEC TEN .610 NBAZC 37 NI TEc TEN .610 NBAZC 39 HI TEC TEN .610 NBAZC 39 NJ TEC TEN .610 NBAZC 37 JI TEC TEN .610 NBAZC 37 HI TEC TEN .610 NBAZC 39 NJ TEC TEN .610 NBAZC 39 HI I TEC TEN .610 NBAZC 34 HI TEC TEN .610 NBAZC 437 NI I TEC TEN .610 NBAZC 37 HI I TEC TEN .610 NBAZC 37 HI TEC TEN .610 NBAZC 34 HI I TEC TEN .610 NBAZC 39 Hl I TEC TEN .610 NBAZC 39 HI TEC TEN .610 NBAZC 34 HI I TEC TEN .610 NBAZC 37 HI TEC TEN .610 NBAZC 37 HI I TEC TEN .610 NBAZC 37 HI TEC TEN .610 NBAZC 43 HI.I I TEC TEN .610 NBAZC 439 HI I TEC TEN .610 NBAZC 439 HI I TEC TEN .610 NBAZC 41 ill I TEC TEH .610 NBAZC 43 HI I TEC TEH .610 NBAZC 43 HI I TEC TEH .610 NBAZC 43 HI I TEC TEH .610 NBAZC 41 HI I TEC TEN .610 NBAZC 41 Hl I TEC TEN .610 NBAZC 43 HI TEC TEN .610 NBAZC 43 HI I TEC TEH .610 NBAZC 43 Hl TEC TEH .610 NBAZC 45 HI I TEC TEN .610 NBAZC 43 HI TEC TEN .610 NBAZC 43 HI 40 33 2.30 0 PCT 27 P2 AV3 4- -- ----+ ---- + .... --.---- ---- -- --++ -...---- ----+ -.-.÷ .--.----------+ -. --+ ---------+ -I ROW COL VOLTS DEG IND PER CNN LOCN INCH1 INCH2 I CRLEN CRWID CEG BEGT ENOT PDIA PTYPE CAL LI-- -----. " ..-- .... .. .....----------.

.." ...." ....--- t-- .... ....-- ----+. ----.+ .. .... ..----+ -+ -+-. ...-- 4.1 ST Max SG -0 Anti-Vibration Bar Wear Indications Byron 2 82R15 CBE 20108401 04/29/2010 09:38:53... ...--------


+-----------------------------+-.----------------


+-------+-.


--I ROW COL VOLTS DEG IND PER CNN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI-- -------------------------------------------------------------------

+.- -----. .-.--- ---- -------------------


40 33 .94 0 PCT 16 P2 AV4 .00 TEC TEN .610 NBAZC 43 HI 41 33 1.64 0 PCT 23 P2 AV2 .00 TEC TEN .610 NBAZC 43 HI 41 33 1.14 0 PCT 18 P2 AV3 .00 TEC TEN .610 NBAZC 43 HN 28 36 3.26 0 PCT 33 P2 AV2 -.08 TEC TEN .610 NBAZC 55 Hj I.I 84 36 1.27 0 PCT 19 P2 AV2 -.03 TEC TEN .610 NBAZC 49 HI 40 36 1.42 0 PCT 20 P2 AV3 -.18 TEC TEN .610 NBAZC 49 NI 42 36 1.01 0 PCT 16 P2 AV1 .00 TEC TEN .610 NBAZC 49 HN 42 36 4.15 0 PCT 34 P2 AV2 .18 TEC TEN .610 NBAZC 49 HI I 42 36 2.15 0 PCT 12 P2 AV3 .00 TEC TEN .610 NBAZC 49 HI 36 37 2.46 0 PCT 29 P2 AV3 .00 TEC TEN .610 NBAZC 51 Nj 37 42 4.04 0 PCT 34 P2 AV2 .01 TEC TEN .610 NBAZC 49 HN 37 42 1.03 0 PCT 17 P2 AV3 -.26 TEC TEN .610 NBAZC 49 HI I 31 44 3.52 0 PCT 34 P2 AV2 .00 TEC TEN .610 NBAZC 55 HI 31 44 1.76 0 PCT 24 P2 AV3 .17 TEC TEN .610 NBAZC 55 HI I 41 44 1.03 0 PCT 16 P2 AV3 -.18 TEC TEN .610 NBAZC 49 HN 41 44 .72 0 PCT 13 P2 AV4 -.29 TEC TEN .610 NBAZC 49 HI I 29 45 .73 0 PCT 15 P2 AV3 -.18 TEC TEN .610 NBAZC 53 Nj 25 50 2.42 0 PCT 29 P2 AV2 .00 TEC TEN .610 NBAZC 55 HN I31 50 .83 0 PCT 15 P2 AV1 -.07 TEC TEN .610 NBAZC 55 Nj 31 50 1.60 0 PCT 23 P2 AV2 .08 TEC TEN .610 NBAZC 55 Hj 31 50 3.18 0 PCT 33 P2 AV3 -.10 TEC TEN .610 NBAZC 55 HI 31 50 .94 0 PCT 16 P2 AV4 .00 TEC TEN .610 NBAZC 55 HN I 39 52 .88 0 PCT 16 P2 AV4 .18 TEC TEH .610 NBAZC 53 HI I I47 56 .85 0 PCT 16 P2 AV3 .00 TEC TEN .610 NBAZC 59 Nj 47 56 2.24 0 PCT 28 P2 AV4 .00 TEC TEN .610 NBAZC 59 HJ I 21 57 1.32 0 PCT 20 P2 AV1 .00 TEC TEN .610 SBACC 87 HI I21 57 1.15 0 PCT 18 P2 AV4 .00 TEC TEN .610 SBACC 87 Nj I48 59 2.32 0 PCT 27 P2 AV3 .00 TEC TEN .610 NBAZC 53 Nj I48 59 1.39 0 PCT 21 P2 AV4 -.08 TEC TEN .610 NBAZC 53 Nj 41 60 1.19 0 PCT 19 P2 AVi .31 TEC TEN .610 NBAZC 55 HN 41 60 1.36 0 PCT 21 P2 AV2 .03 TEC TEN .610 NBAZC 55 HN 41 60 1.59 0 PCT 23 P2 AV3 .03 TEC TEN .610 NBAZC 55 HN 36 62 .78 0 PCT 15 PZ AV2 -.27 TEC TEN .610 NBAZC 59 HN 29 63 1.14 0 PCT 18 P2 AV2 .09 TEC TEN .610 SBACC 57 Nj 26 70 1.80 0 PCT 25 P2 AV2 .00 TEC TEN .610 NBAZC 59 HI 26 70 1.19 0 PCT 20 P2 AV3 .00 TEC TEN .610 NBAZC 59 HI I 33 70 1.20 0 PCT 20 P2 AV3 -.03 TEC TEN .610 NBAZC 59 HI 148 71 .54 0 PCT 12 P2 AVI -.03 TEC TEN .610 NBAZC 63 HN I 36 72 .74 0 PCT 15 P2 AV2 .00 TEC TEN .610 NBAZC 59 HI 836 72 .75 0 PCT 15 P2 AV3 .05 TEC TEN .610 NBAZC 59 Hi I 39 72 1.03 0 PCT 18 P2 AV2 .10 TEC TEN .610 NBAZC 59 HI 39 72 1.88 0 PCT 26 P2 AV3 .00 TEC TEN .610 NBAZC 59 HN I 46 73 1.36 0 PCT 20 P2 AV2 .13 TEC TEN .610 SBACC 57 HI I 29 75 1.12 0 PCT 17 P2 AV3 -.18 TEC TEN .610 NBAZC 29 HN I 40 70 1.87 0 PCT 26 P2 AV2 .02 TEC TEN .610 NBAZC 63 HI 28 78 1.88 0 PCT 26 P2 AV3 .45 TEC TEN .610 NBAZC 53 HN I 32 79 1.33 0 PCT 19 P2 AV3 -.11 TEC TEN .610 NBAZC 33 Hj I 39 80 1.54 0 PCT 20 P2 AV2 .18 TEC TEN .610 SBACC 61 HN 39 80 3.63 0 PCT 32 P2 AV3 .10 TEC TEN .610 SBACC 61 HN 4ROW COL VOLTS DEG PNO PER CNN LOCN INCH INCH2 I CRIEN CRWIO CEG BEGT ENOT P.IA PTYPE CAL Lj 2 ST Max SG -D Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 04/2912010 09:38:53 4-...-- ............-----

+----. ----.-----


...--- + .........

+-- ÷. .. ......+ ..-------+ -+. .-..----.-.-.--

...---" ..-"+I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT PDIA PTYPE CAL LI..... 4-... - ......-------------

-.- ....-- ----.--.. -... ...... ...-- -----80 80 80 82 82 82 82 82 83 83 83 83 84 84 84 84 85 86 86 86 87 87 87 89 90 91 91 92 92 92 92 94 94 95 95 95 95 95 97 97 97 98 98 98 99 99 99 99 100 100 2.22 1.12 1.03.94.80 3.16 1.76 1.64.92 1.24 2.05 1.18 1.49 1.19.83 1.28.94 1.64 5.62 1.42 1.53 1.83.95.82 1 .60 1.08 1.04 1.02 1.20 1.23 1.28.63.84.92 1.07 3.46 1.26.89.87 2.40.80 1.19 2.14.81.86.67 1.30 4.11 1.19 1.62 8 PCT 0 PCT 0 PCT 8 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 8 PCT 0 PCT 8 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 8 PCT 0 PCT 0 PCT 0 PCT 0 PCT 0 PCT 25 17 19 16 15 30 22 21 15 18 24 18 22 19 15 18 18 22 39 20 21 23 17 15 22 16 17 15 17 19 18 12 15 15 18 31 19 16 15 28 14 17 24 13 15 13 20 37 18 21 P2 AV1 P2 AV3 P2 AV4 P2 AV4 P2 AV2 P2 AV2 P2 AV3 P2 AV4 P2 AV4 P2 'AVI P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV4 P2 AV2 P2 AV3 P2 AV3 P2 AV4 P2 AV3 P2 AV2 P2 AV4 P2 AV2 P2 AV3 P2 AV3 P2 AV3 P2 AVI P2 AV3 P2 AV4 P2 AV3 P2 AV2 P2 AV3 P2 AV3 P2 AVI P2 AV2 P2 AV3 P2 AV2 P2 AV3 P2 AV4 P2 AVI P2 AV2 P2 AV3 P2 AV4 P2 AV1 P2 AV3.13-.26.71.00.00.00-.21-.20.03-.05.00-.26.00.03.00-.05.03.10.00-.11-.03-.21.00.00.00-.32-.09.34-.16.00-.08.00-.03.19.13-. 16.00.00.00.00.80.10-.13.00.00.21.00 800.11-.05 TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEN TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH TEC TEH.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610.610 SBACC SBACC NBAZC NBAZC NBAZC SBACC SBACC SBACC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC SBACC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC NBAZC SBACC SBACC SBACC SBACC NBAZC SBACC NBAZC NBAZC SBACC NBAZC SBACC SBACC NBAZC NBAZC NBAZC NBAZC SBACC SBACC SBACC NBAZC NBAZC NBAZC NBAZC SBACC SBACC 61 61 63 31 35 61 61 61 33 33 33 33 35 35 35 61 63 33 33 33 33 33 35 35 67 65 65 65 65 67 65 67 67 65 67 65 65 67 67 67 67 65 65 65 67 67 67 67 69 69-... ... -....... ... +..--- .++---- .... +.... ...---.+- ----- --+- ......+......-..----+----..+..----

+- .....+ -I" + -- +l I ROW COL VOLTS DEG IND PER CHN LOCN INCHI INCH2 I CRLEN CRWID CEG BEGT ENDT POIA PTYPE CAL LI.....- ....--. .-. .-. ... .+.----------.

.....-----.--.

..-- -+- --- +--+- .......+....- ...+.....----

---+ ... ..----- + -.. ...+- ......3 ST Max SG -0 Anti-Vibration Bar Wear Indications Byron 2 B2R15 CBE 20100401 04/29/2010 09:38:53 4... ... -.... -..4 --- .--+-.------.----+----÷..---

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Tubes: 0 Records: 0 1 ST Max ATTACHMENT D ASME FORM NIS-1 OWNERS REPORT FOR INSERVICE INSPECTION Page 38 of 41 ATTACHMENT D FORM NIS-1 OWNER'S REPORT FOR INSERVICE INSPECTIONS As Required by the Provisions of the ASME Code Rules 1. Owner: Exelon Generation Company. LLC, 200 Exelon Way, Kennett Square, PA. 19348 (Name and Address of Owner)2. Plant: Byron Station, 4450 North German Church Road, Byron, Illinois, 61010 3.5.7.(Name and Address of Plant)Plant Unit: Two (2) 4. Owner Certificate of Authorization (if required):

N/A Commercial Service Date: 08/21/87 6. National Board Number for Unit: N-200 Components Inspected:

Steam Generator Eddy Current Inspection

-Unit 2, Refueling Outage 15 Component or Manufacturer or Manufacturer or State or Province National Board No.Appurtenance Installer Installer Serial No. No.2RCO1BA Westinghouse 2095 U-201435 15 2RCO1BB Westinghouse 2096 U-201436 16 2RCO1BC Westinghouse 2097 U-201437 17 2RCO1BD Westinghouse 2098 U-201438 18 t , 1*I + 4 NOTE: Supplemental sheets in the form of lists, sketches, or drawings may be used, provided (1) size is 8 V2 in. x 11 in., (2) information in items I through 6 on this report is included on each sheet, and (3) each sheet is numbered and the number of sheets is recorded at the top of this form.Page 39 of 41 FORM NIS-1 (Back)8. Examination Dates: 4/22/10 to 4/29/10 9. Inspection Period Identification:

10/16/09 to 10/15/13 10. Inspection Interval Identification:

Third Inservice Inspection Interval 11. Applicable Edition of Section XI: 2001 Edition through the 2003 Addenda 12. Date/Revision of Inspection Plan: August 15, 2009 / Revision 4 13. Abstract of Examinations.

Include a list of examinations and a statement concerning status of work required for current interval.See Attached Report 14. Abstract of Results of Examinations and Tests.See Attached Report 15. Abstract of Corrective Measures.See Attached Report We certify that the statements made in this report are correct, b) the examinations and tests meet the Inspection Plan as required by the ASME Code,Section XI, and c) corrective measures taken to conform to the rules of the ASME Code,Section XI.Certificate of Authorization No. (if applicable)

Not Applicable Expiration Date Not Avvlicable Date 7 P /b Signed For Exelon Generating Company, LLC By Owner /CERTIFICATE OF INSERVICE INSPECTION I, the undersigned, holding a valid commission issued by the National Board of oil.an Pressure Vessel Inspectors and the State or Province of , and employed by of Ae-eeI'# I' have inspected the components described in this Owner's Report during the period , to f ., and state that to the best of my knowledge and belief, the Owner has performed examiations and taken corrective measures described in this Owner's Report in accordance with the requirements of the ASME Code,Section XI.By signing this certificate neither the Inspector nor his employer makes any warranty, expressed or implied, concerning the examinations and corrective measures described in this Owner's Report. Furthermore, neither the Inspector nor his employer shall be liable in any manner for any personal injury or property damage or loss of any kind arising from or connected with this inspection._ _ Commissions I$, "Y rispector's Signature National Board, State, Province, and Endorsements Date Page 40 of 41 ATTACHMENT E ASME FORM NIS-2 OWNERS REPORT FOR REPAIR/REPLACEMENT ACTIVITY Page 41 of 41 DOCUMENT NO.: 2.2 REV. NO.: 0 FORM NIS-2 OWNER'S REPORT FOR REPAIRIREPLACEMENT ACTIVITY As Required by the Provisions of the ASME Code Section XI 1. Owner Exelon Nuclear Date 5/1/10 Name 4300 Winfield Road, Warrenville, IL Sheet 1 of 1 Address 2. Plant Byron Nuclear Power Station Unit 02 Name 4450 N. German Church Road, Byron, IL Work Order No. 01199606-02 Address Repair Organization, P.O. No., Job No., etc.3. Work Performed by Westinghouse Electric Co. Type Code Symbol Stamp Not Applicable Name Authorization No. Not Applicable PO Box 158, Madison, PA 15663 Expiration Date Not Applicable Address 4. Identification of System REACTOR COOLANT (RC)5. (a) Applicable Construction Code ASME Section ill 19 71 Edition, S72IW74

  • Addenda, ** Code Case (b) Applicable Edition of Section XI Used for Repair/Replacement Activity 2001 Edition / 2003 Addenda (c)Section XI Code Case(s) NONE 6. Identification of Components ASME Corrected, Code National Removed, or Stamped Name of Name of Manufacturer Board Other Year Installed (Yes or No)Component Manufacturer Serial No. No. Identification Built HT# 2RC01BB Mechanical Tube NX3188HK NA S/N 2096 2002 Installed NO Plug Westinghouse Lot 11 Row 7 CAT ID 45093 Col. 7 7. Description of Work INSTALL MECHANICAL TUBE PLUGS IN THE 2B SG.8. Test Conducted:

Hydrostatic

[0 Pneumatic

[] Nominal Operating Pressure 0]Exempt 0 Other 0 Pressure n/a psi Test Temp. n/a OF Note: Supplemental sheets in form of lists, sketches, or drawings may be used, provided (1) size is 81/2 in. x 11 in., (2)information in items 1 through 6 on this report is included on each sheet, and (3) each sheet is numbered and the number of sheets is recorded at the top of this form.

FORM NIS-2 (Back)9. Remarks 01199606-02 Applicable Manufacturer's Data Reports to be attached* W74 for NB-2331(D), NB-2332(A)(2), NB-4332, NB-4334, 4334.1& 4332.2, NB-4335, NB-4335.1, NB-4335.2, & NB-4335.3** 1355, 1493-1, 1484, 1528, NB-4643 Mechanical tube plugs fabricated to ASME Section III 1989 Edition No Addenda with Code Case N-474-1.CERTIFICATE OF COMPLIANCE I certify that the statements made in the report are correct and this conforms to the requirements of the ASME Code,Section XI.Type Code Symbol Stamp Not Applicable Certificate of Authorization No., Not Applicable Signed R:.A 1 1 ... .Date (//" ,20 10 Owner 00~9n.~ Designee, Mite CERTIFICATE OF INSERVICE INSPECTION I, the undersigned, holding a valid commission issued by the National Board of Boiler and Pressure Vessel Inspectors and the State or Province of Illinois and employed by HSB CT of 1artford, CT have inspectp the components described in this Owner's Report during the period to , , and state that to the best of my knowledge and belief, the O/wner has perform &l exdninations and taken corrective measures described in this Owner's Report in accordance with the requirements of the ASME Code,Section XI.By signing this certificate neither the Inspector nor his employer makes any warranty, expressed or implied, concerning the examinations and corrective measures described in this Owners Report.Furthermore, neither the Inspector nor his employer shall be liable in any manner for any personal injury or property damage or s of any kind arising from or connected with this Inspection.

_____*_ _ _-P_ _ Commissions 1/4'4-Inspector's Signature Natounal Board, State Province, and Endorsements Date: ,._ 20 10 (Fnal)