ML17249A543: Difference between revisions

From kanterella
Jump to navigation Jump to search
(Created page by program invented by StriderTol)
(Created page by program invented by StriderTol)
 
(7 intermediate revisions by the same user not shown)
Line 1: Line 1:
{{Adams
#REDIRECT [[PLA-7634, Revision to ERDS Data Point Library Reference File Due to Change in ERDS Data Sources]]
| number = ML17249A543
| issue date = 09/06/2017
| title = Susquehanna, Units 1 and 2 - Revision to ERDS Data Point Library Reference File Due to Change in ERDS Data Sources
| author name = Berryman B
| author affiliation = Susquehanna Nuclear, LLC, Talen Energy
| addressee name =
| addressee affiliation = NRC/Document Control Desk, NRC/NRR
| docket = 05000387, 05000388
| license number =
| contact person =
| case reference number = PLA-7634
| document type = Letter
| page count = 78
}}
 
=Text=
{{#Wiki_filter:Brad Berryman Site Vice President Susquehanna Nuclear, LLC 769 Salem Boulevard Berwick, PA 18603 Tel. 570.542.2904 Fax 570.542.1504 Brad.Berryman@TalenEnergy.com ENERGY U.S. Nuclear Regulatory Commission Attn: Document Control Desk Washington, DC 20555-0001 10 CFR 50 SUSQUEHANNA STEAM ELECTRIC STATION REVISION TO ERDS DATA POINT LIBRARY REFERENCE FILE DUE TO CHANGE IN ERDS DATA SOURCES PLA-7634 Docket No. 50-387 50-388 In accordance with 10 CFR 50, Appendix E, Section VI.3.a, attached is the revision to the Emergency Response Data System (ERDS) Data Point Library due to changes to ERDS data sources. Data sources were changed from the existing System Particulate, Iodine, and Noble Gas Monitor (SPING) to the recently installed Vent Effluent Radiation Monitoring System (VERMS) on 8/10/17. Should you have any questions regarding this submittal, please contact Mr. Jason Jennings, Manager-Nuclear Regulatory Affairs at (570) 542-3155. This letter contains no new regulatory commitments. B. Berryman Attachment 1 : Summary of Changes to Revision 10 of the Emergency Response Data System (ERDS) Data Point Library Attachment 2: Emergency Response Data System (ERDS) Data Point Library Copy: NRC Region I (Attn: Chief, Emergency Preparedness Branch-DRS) Ms. T. E. Hood, NRC Project Manager Ms. L. H. Micewski, NRC Sr. Resident Inspector Mr. M. Shields, PA DEP/BRP    to PLA-7634 Summary of Changes to Revision 10 of the Emergency Response Data System (ERDS) Data Point Library Summary of Changes to Revision 10 of the Emergency Response Data System (ERDS) Data Point Library Data sources were changed from the existing System Particulate, Iodine, and Noble Gas Monitor (SPING) to the recently installed Vent Effluent Radiation Monitoring System (VERMS) resulting in the following changes to the Emergency Response Data System (ERDS) Data Point Library: 1. Unique System Description changed for Point ID VSNO 1B _ E (p. 39) 2. Unique System Description changed for Point ID VSN02B _ E (p. 40) 3. Unique System Description changed for Point ID VSN03B _E (p. 41) 4. Unique System Description changed for Point ID VSN04B_E (p. 42) 5. Unique System Description changed for Point ID VSNOSB_E (p. 43)  to PLA-7634 Emergency Response Data System (ERDS) Data Point Library Attachment B, Computer System Documentation SAFETY RELATED D CSD ER-005 OTHER QUALITY FILE No. N/A SOFlWARE QUALITY ill PAGE 1 of 72 NON-QUALITY D COMPUTER SYSTEM DOCUMENT EMERGENCY RESPONSE DATA SYSTEM (ERDS) DATA POINT LIBRARY (DPL) SUSQUEHANNA NUCLEAR, LLC-UNITS 1 AND 2 Qualifications: The signatures of preparer, reviewer, and approver below must be qualified as follows:
* SQA Plan Documents: EG900
* Computer Test or Validation Procedures: EG900 and EG903
* Computer System Requirements Specifications: EG900 All other types of CSDs do not require any qualification. ........ . ./1 10 8/10/17 Editorial Changes T.C. Maciorowski N/A '/ 9 3/4/15 Increased high range of LRW monitor-T.C. Maciorowski NIAG EC1487809 8 5/17/12 Editorial Changes G.E. Campbell N/A W.A. DeLuca 7 5/1/12 Revised for ERDS VPN -Final G.E. Campbell N/A W.A. Deluca 6 3/1/12 Revised Point Library to use equivalent PPC G.E. Campbell N/A W.A. DeLuca point names per Plant Computer Upgrade -EC 933698 and 933699, and for the transition to ERDS VPN 5 1/21/04 Iodine and Particulate Elimination -DCP H.A. Clatch N/A W.A. DeLuca 296398 4 05/23/02 Admin. Correction-DCN 98-0656 was H.A. Clatch N/A W.A. DeLuca incorporated into Rev. 3; Addition of LEFM Pts. to Unit 1 3 06/01/01 Addition of LEFM Pts. To Unit 2 H.A. Clatch N/A W.A. DeLuca 2 05/13/98 Addition of Unit 1 PICSY H.A. Clatch N/A G.J. Krupko 1 11/14/95 Addition of Unit 2 PICSY M.L. Orloski N/A H.P. Seager 0 11/30/92 Initial Issue J.L. Angstadt N/A D.D. Kelley REV. DATE DESCRIPTION PREPARED BY VERI FIE APPROVED Electronic Form NSEI-AD-505-1 Rev. 5, Page 1 of 1 
 
TITLE: Procedure Change Summary CSD-ER-005 Revision 10 Page 2 of 72 EME!J\.GENCY RESPONSE DATA SYSTE!v! (ERDS) DA'I'A POINT LIBRARY (DPL) 1) Appendix C changes -a. Revised the Unique System Desc. fields for the Noble Gas Relea.se dat2. parameters to replace reference to the obsolete Eberline equipment with references to the new GA-ESI vent monitoring equipment per EC 522405. 
 
Section 1.0 Section 2.0 Section 3.0 Appendix A Appendix B Appendix c Appendix D Appendix E Emergency Response Data System (EROS) Data Point Library (DPL) Table of Contents Scope . General Information References CSD-ER-005 Revision 10 Page 3 of 72 4 4 5 6 6 7 66 70 1.0 SCOPE CSD-ER-005 Revision 10 Page 4 of 72 This CSD docuwo.nts the Emergency Response System Data Point Librarv (DPL) suLmitte :i to 1
* Nu.clear i<.eqc.1 ac:n:cy Coumission to meet of NlJREG-1394 \. J, F;nergency Reb]: nse Data System (ERDS) Iruplementation. 2.0 General Information The Appendices of this CSD have been narred to correspond. to the _n,ppendices of NUREG-1394, Rev. 1. Not all of the info.cmation required by NUREG 1394, Rev. 1 appendix is included in t c-d s document. Changes to Appendix C or E of this CSD may require that the NRC be notified of the Reference CSD-PIC-759 for additi')"al guidance. -**'!>!_ 
(1) (2) (3) (4) (5) (6) 3.0 CSD-ER-005 Revision 10 Page 5 of 72 The following list identifies the NUREG Appendices, and where the information (if any) required by that Appendix is provided: Appendix A B c D E Description Emergency Response Data System EROS Transmission/Reception Plan EROS Communication Description and Survey Questionnaire Data Point Library Data Point Library Reference File Definitions Critical Safety Function Parameters F Engineering Units Coding Scheme141 G H I Zero Reference Coding Scheme 151 Coding Scheme for Unit Name and Unit ID Computer Point Selection 161 Response PP&L response provided in letter PLA-3704 dated December 20, 1991. PP&L response provided in letter PLA-3672 dated October 24, 1991. Included in this CSD. 111 No response required. Appendix duplicated in this CSD for convenience. 121 Included in this CSD. 131 No response required. Reference NUREG 1394, Rev. 1 for details. No response required. Reference NUREG 1394, Rev. 1 for details. No response required. Reference NUREG 1394, Rev. 1 for details. No response required. Reference NUREG 1394, Rev. 1 for details. This Appendix provides detailed information for each point listed in Appendix E. This Appendix provides a description of each field in the Data Point Library and the fields maximum character length. This Appendix provides a summary of all the computer points that are utilized for EROS. Reference Appendix C of NUREG-1394 for additional guidance on Data Point Library entries. This Appendix provides the preferred engineering units abbreviations for use in the Engineering Units field of the Data Point Library entries. This Appendix provides the accepted abbreviations for the Zero Reference Point field of the entries in the Data Point Library that require this field. ( This Appendix provides guidance on the selection of computer points to satisfy the EROS requirements. REFERENCES 3.1 NUREG-1394, Rev. 1, Emerg*ency Response Data System (EROS) Implementation 3.2 NSEP--QA-500, Process Computer Quality Assurance and Design Control Program A.PPENDIX A & B Appendix A & B are not included in. this CSD. Reference Section 2. 0 for more ion on these apr,endices. CSD-ER-005 Revision 10 Page 6 of 72 APPENDIX C DATA POINT LIBRARY CSD-ER-005 Revision 10 Page 7 of 72 Dat.;: Reactor t:rJ::. r.; Data Feeder: NRC EROS PardiDeter: Point ::u: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital-Engr atates: Engr Units Conv.:.r!'ion: MinilJium Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: or SE1>1S: Number ot ':enooors: How Processed: Sensor Locations: ;,larrn/Trip f-et Points: i*I Detectc*r Power Supply Cue-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 EROS DATA POIN'l' LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A NI POWER RNG SPA001 E REACTOR POWER Nuclear Instruments, Power Range A % N/A 0 125 N/A N/A p 6 Averaged (ref. Unique System Desc.) Each Al?RM has 21 to 22 LPRMs as inputs Reference Unique System Desc. 11' N/A N/A Low High N/A N/A CSD-ER-005 Revisi<:->1 10 Page 8 of 72 A Supplier proprietary algorithm basically averages the highest number of on-scale AFRMs whose values are in agreement. 11'-'larious set points exist for the APRMs depending on the plant Condition (i.e. Condition 1-5). Note: PWH is a composite SPDS parameter with the following points as inputs: NM552, NM553, NM554, NM555, NM556.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE NI INTER RNG NN109 E IRM A FLUX (% OF SCALE) Nuclear Instruments, Inter Rng A A N/A 0.0 100.0 N/A N/A s 1 N/A Reference Unique System Desc. Reference Unique System Desc. <1l N/A N/A Low, High N/A N/A CSD-ER-005 Revision 10 Page 9 of 72 The electrical full-in limit, positions the detector 18" above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location of the detector during normal reactor operation (full-out limit) is 24" belm1 the bottom of the active fuel. The GE coordinate (radial position) of the detector in the core is 16-53. <1l-When the plant is in Condition 2**5 there is an upscale neutron flux/RPS trip = 95.8%, an upscale neutron flux/Rod Block = 86.2%, and a downscale neutron flux/Rod Block= 4.2%. These blocks/trips are bypassed in Condition 1.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond De:ac. : Analog/Digital: Engr States: Engr Units Minimum Instr Range: :..mum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut -off Level: NI Detector Power Supply Turn-on Pt'.l\*;er Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: 1m.ique System Desc. : OS/13/98 SQ1/SQ2 N/A STEAM ELECTRIC STATION UNITS J. & 2 ERDS DATA POINT LIBRARY REFERENCE FILE NI INTER RNG NN112 E IRM D FLUX (% OF SCALE) Nuclear Instruments, Inter Rn*., D A N/A 0.0 100.0 N/A N/A s l N/A Reference Unique System De c* Reference Unique System Des N/A N/1. LOV7, High N/A N/J.. CSD-ER-005 10 Page 10 of 72 The electrical full-in limit, positions the detector 18" above the active fuel center 1 ine . The mechanical full-in J i1ni t is 21" above the active fuel center line. The location of the detector during normal reactor operation (fu* l-out limit) is 24" below t:l"'e bottom of the active fuel. The GE com dinate (rac'cial position) of ti.e detector in the core is 32-37. 111-When t:he plant is in Condition 2-5 there is an upscale neutron flux/RPS trip = 95. 8%, an upscale flux/Rod Elock = 86.2%, and a neutron flux/Rod Block = 4. 7%. blocks/trips are bypassed in 1.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Instr Range: Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE NI INTER RNG NN115E IRM G FLUX (% OF SCALE) Nuclear Instruments, Inter Rng G A % N/A 0.0 100.0 N/A N/A s 1 N/A Reference Unique System Desc. Reference Unique System Desc. (ll N/A N/A Low, High N/A N/A CSD-ER-005 Revision 10 Page 11 of 72 The electrical full-in limit, positions the detector 18" above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location of the detector during normal reactor operation (full-out limit) is 24" below the bottom of the active fuel. The GE coordinate (radial position) of the detector in the core is 48-13. (ll-When the plant is in Condition 2-5 there is an upscale neutron flux/RPS trip = 95.8%, an upscale neutron flux/Rod Block = 86.2%, and a neutron flux/Rod Block = 4. 2%. These blocks/trips are bypassed in Condition 1.
Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr (1*
* i St c: L*S: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS l & 2 EROS DATA POINT LIBRARY FILE NI INTER RNG NN116 E IRM H FLUX (% OF SCALE) Nuclear Instruments, Inter Rng H A % CSD-ER-005 Revision 10 Page 12 of 72 bJ o. ts Conve.:' ,,., : N/A Maxitnum Instr Range: zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Powe* Surnly Cut-off Fo>.ver Level: NI Detector PoweL* f n. f ) y Turn-on LeveJ. Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 0.0 100.0 N/A N/A s 1 N/A Reference Unique System Desc. Reference Unique System Desc. 111 N/A N/A Low, High N/A N/A The electrical full-in limit, positions the detector l&#xa3;t above the active fuel center line. The mechanical full-in limit js 21" above the active fuel center line. The location of the detector during normal reactor operation (full-out limit) is 24" belmr the bottom of the active fuel. The GF; coordinate (radial positioa) of the detector in the core is 16-13. 111-When tl:e plant is ir. Condition 2-5 there is an upscale neutron flux/RPS trip= 95.8%, an upscale neutron flux/Red Block= 86.2%, and c downscale neutron flux/Rod Block= 4.2%. These blocks/trips are bypassed in Condition 1.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Hade: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed NNX01 E IRM A RANGE SWITCH POSN IRM A Range Switch Position A N/A N/A 1 10 N/A N/A p 10 Reference Unique System Desc. Panel 1C651 (1) -llD IRM range switch A N/A N/A N/A N/A N/A N/:P. CSD-ER-005 Revision 10 Page 13 of 72 The analog value for switch position is calculated from the IRM S\*litch position digital inputs. (li -Panel 1C651 is for SQl, Panel 2C651 is for SQ2 nate: React.or Uni.t: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: AnaloJ/Digital: -Engr Units/Dig States: Engr Units Conversion: Minimum J ns t1* Range: Maximun. Ir.str Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power l*E''.'"el: NI Detector Powe.r Sl1pply Turn-on !'ower Level.-Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Keference Leg: Unique System Desc.: 05/"!.::0/92 SQ1/SQ2 N/A SUSQUEHl'lfflA STEAM ELECTRIC STATION UNIJ:*::J J. & 2 ERDS DATA POINT LIBRARY REFERENCE FirJE Not Listed NNX04 E IRM D SWITCH POSN IRM D Range Switch Position f'. N/Jl. 1 l(J N/A N/A p 10 ReferenGe Unique System Desc. Panel 1C651 n> -11D IRN range switch D N/A N/A N/A N/A N/A N/A CSJ)-ER-005 Revision 10 Page 14 of 72 The analog v:1lue for switch position is calculated from the IRM switch position digital inputs. '1; -Panel 1C651 is for SQ1, Panel 2C651 is for SQ2 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Level: NI Detector Pm1er Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed NNX07 E IRM G RANGE SWITCH POSN IRM G Range 81dtch Position A N/A N/A 1 10 N/A N/A p 10 Reference Unique System Desc. Panel lC651 <11-llD IRM range switch G N/A N/A N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 15 of 72 The analog value for s1*litch position is calculated from the IRM switch position digital inputs. (ll -Panel 1C651 is for SQl, Panel 2C651 is for SQ2 Date: Reactor Unit* Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: .::.nSJr TJnits/Di<? States: Maximum Instr Range: zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: of Sensors: Ho" Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detect*''* l' *-'"'t'r TurrJ-OfL Pr:-***f:, T.Jt'rel: InstJ.ument Failure Mode: Temperature Compensation For DF rransmitters: Levei Reference Leg: Unique System Desc.: C'S/13/9e SQ1/SQ2 N/A SUS:>:JEHFJ'IJ;J>. STEAN ELECTRIC STATION UNITS 1 & 2 EROS DATA POINT LIBFi.ARY REFERENCE FILE Not Listed NNXDB E IR."' H RANGE SWITCH POSN IRM H Range S"itch Position A N/A 1 10 N/A N/A p 10 Ref ere* .. :;e Unique System Desc. Panel 1C651111-11D IRM range switch H N/A r.l/A N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 16 of 72 'the analog value for svitch posicion is calculated from the IRM switch position digital inputs. 111 -Panel 1C651 is for SQ1, Panel 2C651 is for SQ2 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Pm1er Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQl/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS l & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed NNZ54 E DET NOT FULL IN POS Det(s) not full in Position D NO/YES N/A N/A N/A N/A N/A s 1 N/A Full in limit switch on IRM drive unit N/A N/A N/P.. Value N/A N/A Yes (i.e. Not In) CSD-ER-005 Revision 10 Page 17 of 72 This parameter is a logical 'or' of the Plant's eight (8) IRM detectors such that if detector is not in the full in position this parameter will be true (YES).
Date: Reacto:* Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Ran3e: Maximum Inst.r Range: Zero Point
 
==Reference:==
Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Po* <,c suppl} STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY FILE 05/13/98 SC;t./SQ2 N/A Not Listed NNZ59 E IRM BYPASS IRM Bypass D NO/YES N/A N/A N/A s 1 N/ Pc.nel :LC651 11'-11D IRM bypass S\vitch N/A N/A Turn *c*n Power. , . .,el: N/A Fai ure Mode: Value rio (i.e. not Bypassed) Temperature Colilpensation For DP Transmitters: N/A Level Referencs Leg: NIA Ur.iqcte System Desc. : This paramecer is a logical *or' of the Plant*e detectors bypass status such that if detecc gara.meter will be true (yp,c) . 11 -Panel 1C651 is for Panel 2C651 is fo CSD-ER-005 Revision 10 Page 18 of 72 **:cahc { 8) IRI* bypasse<i L't.is Date: Reactor Unit: Data Feeder: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE NRC ERDS Parameter: NI SOURC RNG Point ID: NN1001ZE Plant Spec Point Desc.: SRM A LOG RATE Generic/Cond Desc.: Nuclear Instruments, Sourc Rng A Analog/Digital: A Engr Units/Dig States: CPS Engr Units Conversion: N/A Minimum Instr Range: .1 Maximum Instr Range: 1E6 Zero Point
 
==Reference:==
N/A Reference Point Notes: N/A PROC or SENS: S Number of Sensors: 1 How Processed: N/A Sensor Locations: Reference Unique System Desc. Alarm/Trip Set Points: Reference Unique System Desc. <1l NI Detector Power Supply Cut-off Power Level: N/A NI Detector Po11er Supply Turn-on Power Level: N/A Instrument Failure Mode: L011, High Temperature Compensation For DP Transmitters: N/A Level Reference Leg: N/A CSD-ER-005 Revision 10 Page 19 of 72 Unique System Desc.: The electrical full-in limit, positions the detector 18" above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location of the detector during normal reactor operation (full-out limit) is 24" bel011 the bottom of the active fuel. The GE coordinate (radial position) of the detector in the core is 16-45. <1l-When the plant is in Condition 2 -5, there is an upscale alarm/rod block = 1 x 105 CPS, an upscale/non-coincident trip= 2 x 105 CPS, and a downscale/rod 4.1 CPS. These blocks/trips are bypassed <1hen the plant is Condition 1. The upscale/non-coincident trip is defeated 1*1hen the RPS shorting links are installed.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc. : Generic/Cond Desc.: Analog/Digital: Engr Units/Diq States. Engr Units Co "._rsion: MinimUJr. Instr Range: !*!.'>Xi mum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Supply Turn-on Pov1er Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: LevF.l Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY FILE NI SOURC RNG NN1002ZE SRI-I B LOG RATE Nuclear Sourc Rng B I'<I,'A .1 1E6 N/A N/A s J. N/A Reference Unique System Desc. Reference Unique System Desc. 111 N/A N/J. LoH, High N/A N/A CSD-ER-005 Revision 10 Page 20 of 72 The electrical full-in limit, positions the cletector 18" above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location 0f the detector during normal reactor operatic-.1 (full-out limit) *" :-4" below -che bottom of the active fuel. The GE coordinate (radial position) of the detector in core is 40-45. 111-\I hen the plant is in Condition 2 -5, there is an upscale alarm/rod = 1 x 105 C?S, an u:rscale/non-coincident trip = 2 X 10' CPS, nnd a downscale/rod block = 4.1 CPS. These blocks/trips are bypassed when the plant is Condition 1. The upscale/non-coincident tn.p is defeated the RPS shorting links are installed.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Pm<er Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE NI SOURC RNG NN1003ZE SRM C LOG RATE Nuclear Instruments, Sourc Rng C A CPS N/A .1 1E6 N/A N/A s 1 N/A Reference Unique System Desc. Reference Unique System Desc. 111 N/A N/A Low. High N/A N/A CSD-ER-005 Revision 10 Page 21 of 72 The electrical full-in limit, positions the detector 18" above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location of the detector during normal reactor operation (full-out limit) is 24" below the bottom of tl1e active fuel. The GE coordinate (radial position) of the detector in the core is 40-21. 111-When the plant is in Condition 2 -5, there is an upscale alarm/rod block = 1 x 105 CPS, an upscale/non-coincident trip = 2 X 105 CPS, and a dmmscale/rod block = 4.1 CPS. These blocks/trips are bypassed l<hen the plant is Condition 1. The upscale/non-coincident trip is defeated when the RPS shorting links are installed.
Date: Reactor rrnit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: l'1aximum Instr Rar*ge: Zero Point
 
==Reference:==
Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Set Points: NI Detector Pol'ler Supply Cut-off Power Level: NI Detector Power Supply Turn-on Fower loevel: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 3Q1/SQ2 N/A STEAM ELECTRIC STATION UNITS 1 & : EROS DATA POINT REFERENCE FILE NI SOURC RNG NN1004ZE SRi'-1 D LOG RATE Nuclf::!ar Instruments, Sourc Rng D A CPS N/A .1 1E6 N/A N/A s 1-J /J Reference Unique system Desc. Reference Unique System Desc. 111 N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 22 of 72 The electrico.l full-in limit, positions the detector 18'' above the active fuel center line. The mechanical full-in limit is 21" above the active fuel center line. The location of detector during normal reactor operation (full-out lj.mit) is 24
* belov.* the bot torr* of the active fuel. The GE coordinate (raaial position) of the oetector in the core is 16-21. 111-**lhen the pl'3.nt is in Condition 2 -5, there is an upscale ala., m/rod block = 1 x 105 CPS, an upscale/non-coincident tr'. = 2 X 105 CPS, and a do\'lnscale/rod block= 4.1 CPS. These b .. > . .cs/trips are bypassed when the plant is Condition 1. The ur s-::.Jle/non-coincJ dent trip is defeated v1hen t:he f:PS shorting links are iz*s*: .... lled.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Pov1er Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAH ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed NPY001ZE SRM POSITION A SRM Position A D NOT IN,IN N/A N/A N/A N/A N/A s 1 N/A SRM drive motor limit switch N/A N/A N/A Value 'Not In' For DP Transmitters: N/A Level Reference Leg: N/A Unique System Desc.: CSD-ER-005 Revision 10 Page 23 of 72 Date: Reactor UniL: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Sr*::n:-Units/Dig States: Engr Units Conversion: Minimum Instr Range: M2_ximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Pm*er Supply Turn-on Level: Instrument Failure Mode: Temperature Compensation 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Lis.ted NPY002ZE SRM POSITION B SRM Es D NOT IN, IN N/A N/A N/A N/A N/A s 1 N/A SRM drive motor limit s1*1itch N/A N/A N/A Value 'Not In' For DP Transmitters: N/A Level Reference Leg: N/A Unique System Desc.: CSD-ER-005 Rec ,*is ion 10 Page 24. of 72 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Ro.nge: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed NPY003ZE SRM POSITION C SRM Position C D NOT IN,IN N/A N/A N/A N/A N/A s 1 N/A SRI>l drive motor limit N/A N/A N/A Value 'Not In' For DP Transmitters: N/A Level Reference Leg: N/A Unique System Desc.: CSD-ER-005 Revision 10 Page 25 of 72 Date: Reactor U"it: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr 'Jd t.8/Dig States: 'n.1ts Conversion: Ma*,*.:imtLin Instr F!.o.nge: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sew;-.or Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Po1*er Level: NI Detector Fower Supply Turn-on Power :i..Jevel: Instrument Mode: Compensation CS/13/98 SQ1/SQ2 N/A SUSQUEHANNl\ STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT RgFERElTCE FILE Not Listed NPY004ZE SRM POSITION D SRM Position D D NOT IN, IN N/A. N/A N/A s 1 N/A SRM drive motor limit Sl''itch N/A N/A Value 'Not In' For DP Transmitters: N/A I,evel Reference Leg: N/A Unique System Desc.: ($D-ER-0015 Revi:>ion 10 26 of n Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A REAC VES LEV SPAOll E REACTOR WATER LEVEL Reactor Vessel Water Level A INCHES N/A -310 500 BDSKRT BDSKRT near bottom of dryer skirt 111 p Reference Unique System Desc. Reference Unique System Desc. Reactor Bldg Elevation 749' Reference Unique System Desc. 12> N/A N/A Low, High N Wet CSD-ER-005 Revision 10 Page 27 of 72 SPDS has 13 Rx 1*1ater level inputs in 6 different range groups, narrow, wide, extended, upset, shutdo1m & fuel zone. A Supplier p:L*oprietary algorithm will arrive at a value for SPA01l E by either averaging only valid signals in the most appropriate range group -or by selection of a sing*le level signal. 111-Zero point reference is 527. 5" above vessel zero (bottom drain 0. 0") . TAF is at 356.31". 121-Various initiations or trips will occur at Level 1 ( -14 9") , Level 2 (-38"), Level 3 (;-12.5") and Level 8 (+54") Note: SPAOll E is a composite SPDS parameter with the following points as inputs: NFLOOlZ, HFL002Z, NFL003Z, NFL004Z, NFI,QOSZ, NFL007Z, NBLOOlZ, NBL002Z, NBL003Z, NBL004Z, NBLOOSZ, NBL006Z, and NBL007Z.
Date: Reactor Unit: Data Feeder: NRC ERDS Pcrameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital : Eng:>:: Unit.s,IDj s: Engr Units Couversion: M:i nimum Instr Range: Naxirr.um Instr Range: Zero Point Refe"ence: Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: ':1 Detector Power Supply ::..:t-off Level: NI Detector Power Supply 'lurn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP TransmittE-rs: Level rteference Leg: Unique System Desc.: 05/23/02 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STA7ION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE MAIN F'< FLOW NFF77 E FW FLOW A Feedwater A into React Syst A M., S/H N.'! o.u 8.000 N/A N/A s 1 N/A Unique System Desc. N/A N/A N/A -dmmscale N/A CSD-ER-005 Revision :tO Page 28 of 72 Flow is measured on discharge line of Pump A prior to common feed_.ater header.
Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: l>linimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: unique System Desc.: 05/23/02 SQ1/SQ2 N/J>. SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 EPDS DATA POINT LIBRARY REFERENCE FILE MAIN FD FLml NFF78 E FLOW B Feedwater Flm1 B into React Syst A MLBS/H N/A 0.0 8.000 N/A N/A s 1 N/A Reference Unique System Desc. N/A N/A N/A Low -downscale N/A N/A CSD-ER-005 Revision 10 Page 29 of 72 Flow is measured on discharge line of Pump B prior to common feedwater header.
Dc.te: Reactor UnJ.t:: Data Feeder: NRC ERDS Parameter: Foint ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: En<3r Units Convere ion: t*1inimum Instr Ma:timum Instr zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NT GeLector Power Supply 'l'uLn-on Power Level: Instrument Failure l<iode: Temperature Compensa<:ion For DP Transmitters: Level Reference Leg: 6ystem Desc.: SQ1/SQ2 N/A SUSQUEHANNA STEPY< ELECTRIC STATION 1 & 2 ERDS DATA POINT REFERENCE FILE MAIN FD NFF79 E C into React Syst A MLBS/H N/i-. G '' 8.000 N/A N/A s 1 N/A Reference Un: .. que System D<:'SC. N/A N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 30 of 72 Flow is mea sur *;ed on dischdrge Line of Pump C prior t:o com.non feedwater header.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A RCIC FLOW NIF01 E RCIC FLOW Reactor Core Isolat Cooling Flow A GPM N/A 0.0 700.0 N/A N/A s 1 N/A Bet\*een RCIC pump and pump discharge valve11> Alarm, Lo1*1 Flow at 60 GPM N/A N/A High, Low N/A N/A 11> -Reactor Building Elevation 645' CSD-ER-005 Revision 10 Page 31 of 72 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: l>linirrc..rm Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power L.e,vel: NI Detector Power Supply Turn-on Level: Instrurnent Failure Mode: Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHM'NJl. STEAM ELECTRIC STATIOl1 UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/9< 8Ql/SQ2 N/1'. RCS PRESSURE 8PA012 E REACTOR PRESSURE Reactor Coolant System Pressure A PSIG N/A 0 1500 N/A N/A p Reference Unique System Desc. Reference Unique System Desc. Reactor Bldg Elevation 7491 Alarm @ 1020 PSIG, Trip @ 1037 PSIG N/A N/A Low, High N/A N/A CSD-ER-005 Revision 10 Page 32 of 72 A proprietary algorit:hm arrives at a val*-'e fcc SPA012 E by either selecting a single signal or by averaging signals depending on-the results of validation and verification of the five sensed pressure signal inputs. Note: SPA012 E is a cc*mposiLe SPDS parameter with the following points as inputs: NFPOOlZ, NFP002Z, NFPOO'.Z, NFP005Z, and NFPOQ6:,:.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Noces: PROC or SEHS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector P01-1er Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEJI.M ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A HPCI FLOW NGF01 E HPCI PP DSCH LINE FLOW High Pressure Coolant Inj ec Fl01-1 A GPM N/A 0.0 6000 N/A N/A s 1 N/A Pump discharge line -Rx Bldg Elev. 645' Alarm, Low Flow at 300 GPM N/A N/A High, Low N/A N/A CSD-ER-005 Revision 10 Page 33 of 72 Date: Reactor Unit: Data Feeder: NRC ERDS ParameLer: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog"/Digi tal: Units/Dig States: 3ngr Ur.its Conversion: Miuimum Instr Range: i'1axiMum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector ?O'-'er Supply Turn-on Power Inslrument Failure Mode: Temperature Compensation For DP Transmitter&: Level Referer:ce Leg: Unique System Deosc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A LPCI FLOW NHF01 E RHR SYS A FLOW Low Press Coolant Inject A Flow A GPM N/A 0.0 3000(' N/A N/A s 1 N/A Reference Unique System Descripti*:m N/A N/A N/A High, Low N/A N/1 CSD-ER-005 Revision 10 Page 34 of 72 Flm*T sensed by a flow element in the RHR distribution piping downstream of the RHR heat exchanger.
Date: Reactor unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Pm<er Supply Cut-off Power Level: NI Detector Pmoer Supply Turn-on Power T,evel: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A LPCI FLOW NHF02 E RHR SYS B FLOW Low Press Coolant Inject B Flov1 A GPM N/A 0.0 30000 N/A N/A s 1 N/A Reference Unique System Desc. N/A N/A N/A High, Low N/A N/A CSD-ER-005 Revision 10 Page 35 of 72 Flow sensed by a flow element in the RHR distribution piping dovmstream of the RHR heat exchanger.
Date. Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr States: Engr Conversion: Minimum Instr Range: llaximum Instr RangE: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Power St:ppbr Turn-on Power Level: Instrument Failure Mode: Temperat>*re C::Jmpensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBR?.RY
 
==REFERENCE:==
FILE 05/13/98 SQ1/SQ2 N/A CR SPRAY FL SPA010 E CORE SPRAY FLOW Core Spray Cooling System Flm1 A GPM N/A 0 10,000 N/1'. N/A p 2 Sum (Reference Unique System Desc.) Reference Unique System Description111 N/A N/A High, Low N/A N/A CSD-ER-005 J.evision 10 Page 36 of 72 A Supplier proprietary algorithm calculates LPCS as the sum of the c.; Loop A and Loop B flows. The algorithm utilizes the posi .. ion of the CS Test Isolation Valve as well as drywell pressure, rea.c'.or vessel pressure, and reactor water level in the selection aud .-.,lJ dation of each loop's flov1. The algorithm selects a value for flow for each loop either the measured loop or tbP. calculated loop flow (based on loop pressure and pump-head curve) depending on the algorithm logic table. '' 1 * -*,mmstream of Pump A 1 C (Loop A) Discharge connection and Pump B & D * * ( 1 13) Discharge connec ion.
* H:e: SI?A010 E is a cun*f?osi e SPDS parameter the following points as llq)t,ts: NSF001Z, NSF002Z, NSJ?OOlZ, and NSP002Z.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Ran9e: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Po1*1er Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/P.. SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE FD SMP LV RLL004ZE A DRWL SUMP LEVEL Floor Drain Sump Level A A % Each 1% 1 Gallon111 37.5 J.OO BTSUMP = Bottom of Sump Reference Unique System Desc. 121 s 1 N/A Floor Drain Elev. 704' N/A N/A N/A Low N/A N/A CSD-ER-005 Revision 10 !?age 37 of 72 Cl) Instrumentation output is level driven, each step is approximately 15 gals. 121 Input referenced to bottom of sump. Actual instrument zero is . 25" below input reference point. Upon containment isolation output of sump is also isolated.
Date: Reactor Data Feeder: NRC Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/rigital: Engr LTr*its Conversion: I"lini,.-,um :1 nstr Range* Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number. of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: N' **,,.,r.,ctor Power Supply C'* *' .: E f Power Level: !<*.\ Dt ecr.':Jr Power Supply Tu! . ."n * ,., Pov.*e:r Lerel: Instrument t'ailure MoO.e: Temperacure Compensation For DP Transmitters: Level RefeJ> ,ce Leg: Uniaue System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 EROS DATA POIHT LIBRARY REFBRENCE FILE FD SMP LV RLLOOS:OE B DRWL SliMP LEVEL Drywell Floor Drain Sun-,,, Level B A Each 1% Each 1% 3'7.5 100 . r:>n for SQ1 (ll **;.-, .Lon for SQ2 BTSUMP = Bottom of Sump Reference Unique System Desc. <2> s 1 N/A Drywell Floor Drain Elev. 704' N/A N/A N/A Low N/A N/A f .. evision 10 Page 38 of 72 (ll Instrumentation output is level switch driven, each step is approxJ mat.ely 16 gals for Unit 1 (SQ1) and 1.5 gals for Unit 2 (SQ2). <2> Input referenced to bottom of sump. Actua:.. instrument zero is . 25" input reference point. Upon contajnment isolation output of sump is also isolated_
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 08/10/17 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT.LIBRARY REFERENCE FILE EFF GAS RAD VSN01B E RAD OF RELEASED NBLGAS-RX 1 VENT Rad of Released NBLGAS-Rx A uCI/Min N/A 0 N/A N/A N/A p 1 Average Vent Reference Unique System Desc. 111 N/A N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 39 of 72 The GA-ESI vent monitor equipment provides the value for the Nobel Gas release component. VSN01B_E is created by averaging the release values for a 15 min period. VSN01B_E is updated each quarter hour (i.e. it is not a sliding 15 min average). Therefore, the same value of VSN01B E will be transmitted each minute for a given fifteen minute period until-the next update is available. 111-Isokinetic sample drawn @ Rx Bldg vent near Rx Bldg roof.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Units/D.*:: StC!tes: Engc Llnits C< ** Minimum Instr Range: f4aximum Inst:r Range: Zer0 Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Po*oer Level: NI Detector: Power Supplv Turn-on Power Level: Instrument Failure 11uc<L Temperature Compensatior. For DP Transmitters: Level Reference *eg: Unique System Desc.: OB/10/17 SQ1/S(. N/A SCSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FJ.LE EFF GAS RAD VSN02B E RAD OF RELErlSED NBLGAS-TB 1 VENT Rad of Released NBl*lAS-TB .J. Vent A t*CI/Min N/.i; 0 N/A N/A N/A p Average Reference Unique System Desc."1 N/A N/A N/.i-1 Low N/A N/A CSD-ER-005 Revision 10 Page 40 of 72 Tl:le GA-ESI vent monitor equipment ides t = value for the Nobel Gas release cumponent. VSN02B_E is creat;ed by ave, <<ging .he release values for a 15 min
* period. VSN02B __ E is update:! each quarter. ho* cr () . e. it is not a sliding 15 min average) . Therefore, the same value of VSN02B E will be transmitted eo.ch minute for a given fifteen minute period until the uext update is availal:;le. Isokinetic sample drawn @ Turbine Blcg vent near Rx Bldg roof.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: t1aximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure !'lode: Temperature Compensat.ion For DP Transmitters: Level Reference I.eg: Unique System Desc.: 08/10/17 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 8FF GAS RAD VSN03B E RAD OF RELEASED NBLGAS-SGTS VENT Rad of Released NBLGAS-SGTS Vent A uCI/Min N/A 0 N/A N/A N/A p 1 Average Reference Unique System Desc.0> N/A N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 41 of 72 The GA-ESI vent monitor equipment provides the value for the Nobel Gas release component. VSN03B_E is created by averaging the release values for a 15 min period. VSN03B_E is updated each quarter hour (i.e. it is not a sliding 15 min average) . Therefore, the same value of VSN03B E be trar,smitted each minute f::>r a given fifteen minute period until the next uRdate is available. (l -Isokinetic sample dra*m @ SGTS vent near Rx Bldg roof.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: P.:>int !0: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Unlt;,/Dig States: Engr Units Conversion: Minimum Instr Range: Ma.:-cimum Instr Rang.o: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Pmqer Supply Cut-off Power Level: NI Letector Power Supply Turn-on Power Level: Ir.strument Failure Mode: Temperature Compensation For DP Transmitters: LeveJ. Reference Leg: Unique System Desc.: 08/10/17 SQl/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE EFF GF.E-RAD VSN04B E RAD OF RELEASED NBLGAS-RX 2 VENT Rad of Released NBLGAS-Rx 2 Vent A *,, ___ J /lvtin NtA 0 N/A N/A N/A p 1 Average Reference Unique System Desc. ,. N/A N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 42 of 72 The GA-ESI vent monitor equipment provides the value for the *o'*)bel Gas rPlease component. VSN04B_E is created by averaging the reh .>Ee value,_-for a .* ,.,ir, period. Vm104B _ E is updated eacl-r::uarter hour (i.e. < t. is not a. sliding 15 mil. average). Therefor<., the same vHlue ,_ .. f VSN04L E will be transmitted e3ch minute for a give:1 fifteen minute period until the next update is available. Isokinetic s<w:ple drawn @ Rx Bldg vent near Rx Bldg roof.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Hov1 Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 08/10/17 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION T.JNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE EFF GAS RAD VSN05B E RAD OF RELEASED NBLGAS-TB 2 VENT Rad of Released NBLGAS-TB 2 Vent A uCI/Min N/A 0 N/A N/A N/A p 1 Average Reference Unique System Desc. ill N/A N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 43 of 72 The GA-ESI vent monitor equipment provides the value for the Nobel Gas release component. VSN05B_E is created by averaging the release values for a 15 min period. VSN05B_E is updated each quarter hour (i.e. it is not a sliding 15 min average) . Therefore, the same value of VSN05B E will be transmitted each minute for a given fifteen minute period until the next update is available. !ll_ Isokinetic sample drawn@ Turbine Bldg vent near Rx Bldg roof.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimu'n Instr Range: MaxirJ<.lm Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut* off P01*1er Level: NT Detector Power Supply Turn-on r01*Ter Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc. : OS/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE EFF GAS RAD VST01C E RAD OF RELEASED NBLGAS-SITE TOTL Rad of Released Totl A c:CI/Min N/A 0 N/A N/A N/A p 5 Unique System Desc. N/A N/A N/A N/A N/A N/A N/A CSD-ER-005 Reviaion 10 Page 44 of 72 A Site Total 1 min average for the Noble Gas release component :i.s crea<:ed by summing the Noble Gas 1 min averages of the Rx 1, TB 1, SGTS, Rx 7 and 'I'B 2 vents. VST01C _ E is created by averac:ring the Site Total 1 min a for a 15 min period. VST01C_E is updated er>ch quarter hour (i.e. it is not a aliding 15 min average) . Therefore, the same value for VST01C E will be transmitted each minute for a given fifteen minute period until the next update is available.
Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Hm*1 Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Po1*1er Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 03/04/15 SQ1/SQ2 N/A STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE EFF LIQ RAD VDR001ZE LRW DSCH RAD MON Radioactivity of Released Liq'ds A CPM N/A 10 1E7 N/A N/A s 1 N/A Ref. Unique System Desc. !t 1 Varies -Ref. Unique System Desc. <21 N/A N/ll Low N/A N/A CSD-ER-005 Revision 10 Page 45 of 72 <tl Sample from LR'!I discharge pipe prior to release to environment:. The Liquid Radwaste Effluent Monitor is a microprocessor based NMC Liquid Radiation Monitor. A single gamma scintillation detector is exposed to the sample of the discharge stream. Discharge is governed bX Radiation Effluent release permit. < Detector alarm settings are determined for each release based upon tank activity & background values at the sample unit.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Lig States: Engr Units Conversion: Minimum Instr Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: AlaDn/Trip Set Points: NI Detector Power Supply Cut-off Power Level: I':J Detecror Pme<-r Supply Turn-on Pov1er Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: I.evel Ro? ference Leg: Unique System Desc. : 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECT!UC STATION UNIT8 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE Not Listed VDF001ZE LRW DISCHARGE FLml LRN Discharge Flov1 A GPM N/A 0 100 N/A s 1 N/A Reference Unique System Desc. {l) N/A N/A N/A L0\'1 N/A N/J.. CSD-ER-005 Revision 10 Page 46 of 72 {l) On Liquid discharge line prior to eDvironment. The liquici J.lne discl",arges into the Cooling discharge pipe. Tho= cooling tower discharge pi.pe goes to the Susque-hanna >l.iver.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A DW RAD SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE SPA022 E PRIMARY CONTAINMENT ACTIVITY Radiation Level in the A R/HR N/A 1 1E8 N/A N/A p 2 Average (ref. Unique System Desc.) Drywell on Bioshield Wall Alarm 400 R/HR and 2000 R/HR N/A N/A LO>I N/A N/A CSD-ER-005 Revision 10 Page 47 of 72 A Supplier proprietary algorithm selects the point with the hiqber value if the difference between the two points exceeds a predefined delta. Note: SPA022 E is a composite SPDS parameter with the following points as inputs: MAROOlZ and MAR002Z.
Date: Reactor Unit: Data Feeder: NRC E:RDS Parameter: !?oint ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Sngr Units/Dig States: J!ilgr Units Conversion Mi rdmum Instr Range: Naximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power L2vel: HI Detector PoweJ Supply Turn-on Power .Le' "* Instrument Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 LQl/SQ2 N/A SUSQUEHANNA ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFEruffiCE FILE I>1N STEAM RAD NAR01 E NAIN STEAM LINE RAD A Radiation Lvl of Main Stm Line A A N/A 1.000 1 .. )E6 N/A N/A s 1 N/A Reference Unique System Desc. 111 7 times Background at Full Power N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 48 of 72 Standard BI'IR Main Steam Line Radiation Manit oring design and configuration. 111 -The detectors (A-D) are located in the steam tunnf0-1 as close as practical to the containment. The deteoctors are arranged sud. that each detector will view all steam lines with 2.pproximately the same respor * .se.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Pov1er Supply Cut-off Power Level: NI Detector Pov1er. Supply Turn-on PoVIer Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: loevel Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE MN STEAM RJI.D NAR02 E MAIN STEAM LINE RP.D B Radiation Lvl of Main Stm Line B A MR/H N/A l. 000 l.OE6 N/A N/A s 1 N/A Reference Unique System Desc. 111 7 times Background at Full Pm1er N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 49 of 72 Standard BWR Main Steam Line Radiation Monitoring design and configuration. Ill -The detectors (A-D) are located in the steam tunnel as close as practical to the containment. The detectors are arranged such that each detector view all steam lines 1dth approximately the same response.
Date: Reactor Unit: Data Feeder: NRC Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Eng1 Engr i:Tnits Conversion: Minimum Instr Ra"ge. Me-*dmum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-f Power r.eveJ : r.
* Power Supply T*n* . , . Power Level . Instrument Failure !>lode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATTON UNITS 1 & 2 EH.DS IJATA POINT LIBRARY REFERENCE FILE MN STi:*:AM RAD NAR03 E JVJAIN STEAM LINE RAD C Radiation Lvl of Main Stm Line C A MR/H J:../A 1. 000 1.(JE6 N/A N/A 8 1 N/A Reference Unique System Desc. c11 7 times Background at Full Power N/P. N/A N/A CSD-ER-005 Revision 10 Page SO of 72 Standard BWR Jvlain Steam Line kadiation design and configuration. c11 -The :A .. D) are located in the steam tunnel as close o.s practical to the containment. The detectors are arranged such that each detector will vie1*1 all steam lines l<ith approximately the same response.
1 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FIToE MN STEAM RAD NAR04 E !-lAIN STEAM LINE RAD D Radiation Lvl of Main Stm Line D A MR/H N/A 1. 000 l.OE6 N/A N/A s 1 N/A Reference Unique System Desc. 11 > 7 times Background at Full Pm-1er N/A N/A Low N/A N/A CSD-ER-005 Revision 10 Page 51 of 72 Standard BNR Main Steam Line Radiation Monitoring design and configuration. Ill -The detectors (A-D) are located in the steam tunnel as close as practical to the containment. The detectors are arranged such that each detector will viev1 all steam lines with approximately the same response.
Date: Reactor llnit: Petta F<*Eder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc. : Analog /Dj :* al : Engr Units/Dig States: Engr Units Minimum Instr Rar,gt.: 1'1aximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI l'etector Supply Cut-off Power Level: NI Detector Power Sui.Jply Turn-0n Leveol : Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS l & 2 EROS DATA POINT LIBRARY REFErurnCE FILE 05/13/98 SQl/SQ2 Fi/A DW PRESS SPA014 E DRYWELL Drywall Pressure PS!G N/1'. -15.0 2!'0.0 N/A N/A p 5 Reference Uniqut System Desc. Reactor Bldg. EJ.evation 7291 Trip 1.72 PSIG N/A N/A High, Low N/A N/A CSD-ER-005 Revision 10 Page of 72 A Supplier proprietary ctlgorithm selects the value for SPAOJ.4_E by using up to five inputs, one Narrow Range {NR) signal {-3.0 to +3.0 PSIG), two Intsrmediate Range (IR) signals { -15. Q to +65. 0 PSIG), and t\"O Wide Range {\'l'E) signals (0 to +250. 0 PSIG). If the NR signal is onscale then it is selcted for SPA014 E. If the NR signal is invalid and the IR signal (s) are on.scale then :-hey are utilized for SPA014 E. If both NR and IR signals a>"' invalid then the WR signals will be utilized for SPA014 E. Note: SPA014 F
* a composite SPDS parameter with the following points as inputs: MAPOOlZ, NFP003Z, MAP{l05Z, and MAP006Z.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Supply Cut-off Power Level: NI Detector Supply Turn-on Power Level: Instrument Failure Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A DW TEMP SPA015 E TEMPERATURE Temperature A DEGF N/A 40 440 N/A N/A p 8 Average (Reference Unique System Desc.) Reference Unique System Desc. N/A N/A High, Low N/A N/A CSD-ER-005 Revision 10 Page 53 of 72 A Supplier proprietary algorithm uses the Technical Specificati.*Jn method for calculating average air temperature which selects the higher valid signal from a minimum of 3 of the follmdng drywell areas: top, middle, bottom and pedestal. SPA015 E is then calculated as the average of the 3 or 4 valid signals selected. If there is less than 3 valid signals then the algorithm cannot calculate an average value. Sensor Locations (elevation, azimuth) : (797 1 8", 295&deg;) , ( 797 1 8", 110&deg;) , (7521 2",270&deg;), (7521 2",90&deg;), (737',300&deg;), (7371,150&deg;), (7111,270&deg;), (720',85&deg;) Note: SPA015 E is a composite SPDS parameter with the following points as inputs: MAT001Z, MAT002Z, MAT003Z, MAT004Z, MATOOSZ, MAT007Z, and MAT008Z.
Date: Reactor tJnit: Data Feeder: ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr \*c LO'/O*;.g States: Engr Unit8 Conversion: Minimum I"str Range: l'ljaximum Instr Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Numbe" ot Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector S1 *.pply 05/13/98 SQI/SQ2 SF TEi'll? SUSQUEHANNA STEAM EI,ECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY FILE SPAOlB E SUPPRESSION POOL Suppression Pool Temperature A DEGf:' N/A 30 230 N/A N/A p 2 Average Reference Unique System Desc. Alarm at 90&deg;F, 105&deg;F, ll0&deg;F & . I""F CSD-ER-005 Revision 10 Page. 54 of 72 Cut-off Power LeveJ
* N/A '''I r*etector Power S"pply *r*u . on Power Level, N/A u:-unrent Failure node: Temperature Compensation For DP Transmitters: '**"'v;;;l Reference Leg: Unique System Desc.: Low, Hig/, N/A N/7>. .!'. Supplier* proprietary algor.; thm <.:'<lculates SPA018 E as the ** =rage of the t\'10 inputs if they are valid and agree, oth>>.r;*isf' the hi3her f the two signals is selected. Each of the irnuts tc the *llgoritr*n.' is * <ided by a Suppression Pool Temperature M*>"' torir<g Syst:em 1 Sl.'OTJ\105, The SPOTMOS unit uses up to 8 tempe*catm:e inputs to calcvlate the average temper3.ture. The RTD inputs to SPOTMOS that are use*: to calculate the average temperarure arf' located at appoximately the <1 foot level in the suppressior* t,JC.*ul. Note: st*AvlB :2 is a c:o;nposite SPDS parar1eter with the following points as inpLltS: MATOl2Z and MA'l'Ol3Z.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Po11er Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A SP LEVEL SPA016 E SUPPRESSION POOL WATER LEVEL Suppression Pool Water Level A FEET N/A 4.5 49 TNKBOT N/A p 4 Reference Unique System Desc. Rx Bldg Elev. 645' 23.75 ft, LowS 22.25 ft N/A N/A Low, High N/A Wet CSD-ER-005 Revision 10 Page 55 of 72 A Supplier proprietary algorithm uses 2 Narrow Range (NR), 18-26.5 ft, and 2 Wide Range (WR), 4.5-49 ft, signals to arrive at a value for SPA016 E L. The NR signals are given preference over the WR signals. In cases in 11hic:, NR signals do not agree and are not confirmed by WR signal.s, a signal (or average of signals)With greater deviation from Normal Water Level (NWL), measured at 23 ft, is used because it is a critical safety concern. A viR signal (or average of WR signals) may be chosen over NR signal if it is verified as having a greater deviated value from the NWL than the NR signal. Note: SPA016 E is a composite SPDS parameter with the following points as inputs: MALOOlZ, MALCC.2Z, MAL003Z, and t.f1tL004Z.
Date: Reactor D> Data Feeder: NRC Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analc .. :r/Digital: Engr Units/Dig States: Engr Unj t '" l:onversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Pov1er Level: NI Detector Power Supply Turn-on P01*1er Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE OS/13/9F. SQ1/SQ2 N/A H:-! CONC SPA020 E CONTNI'lNT. HYDROGEN CONCENTRATION Drywell Hydrogen Concentration A N/A 0 30 N/A N/A p 2 Average (ref. Unique System Desc.) Reference Unique System Desc. 111 N/A N/A N/A Low, High N/A N/A CSD-F.R-005 Revision 10 Page 56 of 72 Each of the inputs has dual raDge capability and will ha,,e a range of 0-:CO% O'-0-30%. A Supplier proprietary algorithm will calculate SPA020 E as t.he average of the two inputs if they are both on the same rilnge and agree. Any other combination of val'...i points (e.g. points disagree, are on different ran.;;Jes, only one 01J* scale) \1ill cause the algorithm to select only one of the two inputs cor the value of SPA020_E. 111-Sample drawn from drywell or suppression chamber anc measured at Panel 1C2,'6A & B for SQl and 2C226A & B for SQ2, Reactor Building Elev. 719'. Note: SPA020 E ).s a composite GPDS parameter \qith the following points as j_r,puts: !Y:AC003Z and MAC004Z.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Jl..nalog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE 05/13/98 SQ1/SQ2 N/A 02 CONC SPA019 E CONTNMNT. OXYGEN CONCENTRATION Oxygen Concentration A % N/A 0 25 N/A N/A p 2 Average (ref. Unique System Desc.) Reference Unique System Desc. Ill N/A N/A N/A Low, High N/A N/A CSD-ER-005 Revision 10 Page 57 of 72 Each of the inputs has dual range capability and will have a range of 0-10% or 0-25%. A Supplier proprietary algorithm calculate SPA019 E as the average of the two inputs if they are both on the same range agree. Any other combination of valid points (e.g. points disagree, are on different ranges, only one on-scale) will cause the algorithm to select only one of the two inputs for the value of SPA019 _E. 111-Sample drawn from drywell or suppression chamber and measured at Panel 1C226A & B for SQ1 and 2C226A & B for SQ2, Reactor Building Elev. 719'. Note: SPA019_E is a composite SPDS parameter with the following points as inputs: MAC001Z and Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: imalog/Digitc.l: Engr Units/Dig States: Engr Units Conversion: Minimum nstr Range: lVJaximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: I:JI Detector Power S *ply 05/13/98 SQl/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS l & 2 ERDS DATA LIBfARY REFERENCE FILE CST LEVEL CSL01 E COND STORAGE TANK 1 LVL Condensate Storage Tank 1 J"evul A % Each 1% o,.!OO Gallons 0.0 F*O. 0 TNKBOT Zero is 13.5 inches above tan**, bottom s .J .'l-7. 5 incr.es below zero :cef-=rence Low level at 0% (ref. Unique System N/A CSD-ER-005 Revision 10 Page 58 of 72 Turn-on Power Level. N/A Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: Lmq or High (on LI, LR and Computer point) N/A N/J. Zero is 10,000 gallons above HPCI suction. The RWST and both CSTs be *ranually c.c'.>SS connected. The capacity of o=ach CST is 300,000 g;ollous anci the RWST ,*apacity ., s 680,000 gallons.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE CST LEVEL CSL02 E COND STORAGE TANK 2 LVL Condensate Storage Tank 2 Level A % Each 1% 3,000 gallons 0.0 100.0 TNKBOT Zero is 13.5 inches above tank bottom s 1 N/A 7.5 inches below zero reference Low level at O% (ref. Unique System Desc.) N/A N/A Lm1 or High (on LI, LR and Computer point) N/A N/A Zero is 10,000 gallons above HPCI suction. CSD-ER-005 Revision 10 Page 59 of 72 The RWST and both CSTs can be manually cross connected. The capacity of each CST is 300,000 gallons and the RWST capacity is 680,000 gallons.
Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desu.: Generic/Cond Desc.: Analog/Digital: 05/l3i98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION illHTS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE WIND SPEED VMA07 E WIND SPEED-60M Wind Speed at Reactor Site -60M A Units/Dig States: MPH Ercc,:c Units Conversion: ML,imum Instr Ranqe: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Level: NI Detector Power Supply Turn-on Power L<ovel: Instrument Failure Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: N/A 1.0 50.0 N/A N/A p 1 15 min average (ref. Unique System Desc) Met Tower is = 1, 200 ft. ESE of Rx Bldg N/A N/A N/A N/A N/A 15 min average is a sliding 15 min average. CSD-ER-005 Revision 10 Page 60 of 72 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply Cut-off Power Level: NI Detector Power Supply Turn-on Power Level: Instrument. Failure Temperature Compensation For DP TransrnitteJ.-s: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE WIND SPEED VMA06 E lUND SPEED-10M Wind Speed at Reactor Site -10M A MPH N/A 1.0 50.0 N/A N/A p 1 15 min average (ref. Unique System Desc) Tower is "' 1, 2 00 ft. ESE of Rx Bldg N/A N/A N/A Low N/A N/.1>, 15 min average is a sliding 15 min average. CSD-ER-005 Revision 10 Page 61 of 72 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: PJ.ant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Unibs/Dig Stdtcs: 05/13/9e SQ1/SQ2 N/.n.. WIND DIR VMA04 E SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 EROS DATA POINT LIBRARY REFERENCE FILE WUlTI DIR -60 M Wind Dir* at the React Site -60M A DEGFR CorNereiun: N/A Minimum Instr Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power u1 ply Cut:-off. Power Le,*o .. *: NI ** "ctor Power Supply Turn-on Power Level: Instrument Failure Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc. : 0 360 N/A N/A p 1 15 min vector average !ll Met Tower is z 1,200 ft. ESE of Rx Bldg N/A N/A N/il. N/A N/A (ll -15 mir. ,,verage is a sliding lS min averaqe. CSD-ER-005 Revis:lun 10 Page 62 of 72 Date: Reactor Unit: Data Feeder: NRC ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Pmver Supply Cut-off Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A WIND DIR VMA03 E SUSQUEHANNA ELECTRIC STATION UNITS 1 & 2 ERDS DATA POINT LIBRARY REFERENCE FILE WIND DIR -10 M Wind Dir at the React Site -10M A DEGFR N/A 0 360 N/A N/A p 1 15 min vector average 111 Met TO\*ler is = 1,200 ft. ESE of Rx Bldg N/A N/A N/A Low H/A N/A 111 -15 min average is a sliding 15 min average. CSD-ER-005 Revision 10 Page 63 of 72 Date: Reactor Ut1it: Data Feeder: i"li.C ERDS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: :Sngr 1 States: Engr :J,_J cs r.:-onversion: Min.imurr, Instr Range: Maximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Pcints: NI Detector Supply Cut-off Power Level: NI Detector Pnwer E'**.pply Turn-on Leve
* Instrument Failure Temper;;ccure Compensation For DP Transmitters: Level Reference Leg: Unique System Desc. : SUSQUEHANN.l\. STRAM ELECTRIC STATION UNITS l & 2 ERDS DATA POiliT LIBRARY REFHRENCE FILE 05/13/98 SQ1/SQ2 N/A STJIJ3 (:LASS VMA20C E AIR PTABILITY AT THE REACT SITE Air stability at the Re4ct Site A STAB. N/A N/A N/A N/A N/A p 1 Unique .-*stem Desc. Refer once Unique System Desc. N/A N/A N/"A Unique System Desc. N/A N/A CSD-ER-005 Revisio;.l 10 Page 64 of 72 The param*-**er is derived from the Delta Temperature betVIeer.-the :..a meter and HI meter levels. If the Delta Teruperature signal is invalid then the Ls derived from the Sigma Theta of wind direction. A value oi 1 through 7 which corresponds to a stability class of A through F, or 9 (invalid) will be transmit**.,d tor VMA2l:C_E.
Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant Spec Point Desc.: Generic/Cond Desc.: Analog/Digital: Engr Units/Dig States: Engr Units Conversion: Minimum Instr Range: J>laximum Instr Range: Zero Point
 
==Reference:==
Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm/Trip Set Points: NI Detector Power Supply C:ut-off P01*er Level: NI Detector Power Supply Turn-on Power Level: Instrument Failure Mode: Temperature Compensation For DP Transmitters: Level Reference Leg: Unique System Desc.: 05/13/98 SQ1/SQ2 N/A SUSQUEHANNA STEAM ELECTRIC STATION UNITS 1 & 2 EROS DATA POINT LIBRARY REFERENCE FILE Not Listed DUlOO E EXERCISE DATA Exercise Data D NO/YES N/A N/A N/A N/A N/A s 1 N/A RDAS variable (i.e. pseudo point) N/A N/P. N/A N/A N/A N/A CSD-ER-005 Revision 10 Page 65 of 72 This paramecer is a constant whose value is equal to 0 when actual plant data is being transmitted and 1 v1hen exercise/drill data is being transmitted.
APPENDIX D DATA POINT LIP.RARY REFERENCE FILE DEFINITl0NS CSD-ER-005 Revis:..on 10 Page 56 of 72 APPENDIX D CSD-ER-005 Revision 10 Page 67 of 72 DATA POINT LIBRARY REFERENCE FILE DEFINITIONS Date: Reactor Unit: Data Feeder: NRC EROS Parameter: Point ID: Plant-Specific Point
 
== Description:==
Generic Or Condensed
 
== Description:==
Analog/Digital: Engineering Units Or Digital States Engineering Units Conversion: Minimum Instrument Range: The date that this form is filled out or modified. (Eight characters) The nuclear power plant name and abbreviation from the enclosed list of sites. (Three characters) If there is more than one data feeder for your system, enter the acronym for the data feeder from which the point comes. If there is only one data feeder, enter "N/A" in this field (Ten characters) One of the parameters from the enclosed BWR or PWR parameter list. A single value should be transmitted for each parameter for each loop. If not on the list, insert "Not Listed" or "NL". (Twelve characters) Alphanumeric point description used to label the point during transmission. (Twelve characters) Licensee computer point description for the transmitted point. (Forty characters) Parameter description from the enclosed list of points for a BWR or PWR. If not on the list, condense the plant-specific point description. (Thirty-two cha:cac1:ers) ''A" if the signal is analog or numerical or "D if the signal is off/on. (One character) Engineering units used by the licensee for display on licensee output devices. Use the engineering units abbreviations from the enclosed list when possible. When specifying pressure, use "PSIA" or "PSIG" rather than "PSI". fo'or digital signals, give the "OFF" and "ON" state descriptors. (Twelve characters) Notes about any special features of the A/D conversion and scaling. (Forty characters) Engineering units value below which data cannot go (bottom-of-scale value) . (Ten characters)
Maximum Instrument Range: Zero Reference Point: Reference Point Notes: PROC or SENS: Number of Sensors: How Processed: Sensor Locations: Alarm or Trip Setpoints: NI Detector Power Supply Cut-Off Power Level: NI Detector Power Supply Turn-On Power Level: Instrument ,eailure Mode: *remperr...ture Compensation For DP Transmitters: CSD-ER-005 Revision 10 Page 68 of 72 Engineering units value above which data cannot go (top-of-scale value). (Ten characters) Zero-point of engineering units scale used primarily for levels or heights. Use the zero reference point abbreviations from the enclosed list when possible. (Six characters) Notes about the reLeLence point or other important and special features of the parameter. [Forty characters) Is the point formed lJy processing more than one signal, or is the sCJurce a single sensor ("P" or "8")? (One character) number of signals processed in a full calculation assuming no bypassed or inoperative sensors. (Three characters) The processing algorithm (sum, average, weighted aver&ge, highest. lowest, or a short description). (Forty *..:haractsrs) Description of the location(s) of the instrument (s) used. (forty characters) The most important setpoints for the parameter. State whether the limit is high or low. (Forty characters) The power level Clt which ::.he power supply for the NI detect 'r swit.* *cd of':. (Fifteen characters) The power at which the powe:r for the NI detector switches on. (Fifteen characters) The mode in which this instrument fails. Possible answers are HIGH, MEDIUM, OR LOW. If available, provide the numeric value at which the instrument fails. (Thirty characters) This on pertains pressure transmitters. are "YES" or "NO" ( "Y" answer is "NO", please the correcti0n curve. to diff" 'D,;ial Pussible answers or "N") . If the attach a copy of (One character)
Level Reference Leg: Unique System
 
== Description:==
PICSY CSD-ER-005 Revision 10 Page 69 of 72 The type of level measurement (dry or wet) used on the level reference leg. (Three characters) Additional important information which will assist the NRC Operations Center personnel in understanding how the plant team interprets the data. (600 characters) Plant Integrated Computer System -Unit 2 APPENDIX E CSD-ER-005 R'9vision 10 Fage 70 of 72 CRITICAL SAFETY FUNCTION PARAMETERS CSD ER-005 Revision 8 Page 71 of 72 CRITICAL SAFETY FUNCTION PARAMETERS ERDS NI POWER RNG NI INTER RNG NI INTER RNG NI INTER RNG NI INTER RNG Not Listed Not Listed Not Listed Not Listed Not Listed Not Listed NI SOURC RNG NI SOURC RNG NI SOURC RNG NI SOURC RNG Not Listed Not Listed Not Listed Not Listed CORE COOLING PAHAJ.!ETER DESCRIPTION Nuclear Instruments, Power Range Nuclear Instruments, Inter Rng A Nuclear Instruments, Inter Rng D Nuclear Instruments, Inter Rng G Nuclear Instruments, Inter Rng H IRM A Range Switch Position IR!-1 D Range S*.o1i tcb Position IRM G Range Switch Position H Range Switch Position IRM Det(s) not Full in Position IRM Bypass Nuclear Instruments, Sourc Rng A Nuclear Instruments, Sauro Rng B Nuclear Instruments, Sourc Rng C Nuclear Instruments, Sourc Rng D SRM Position A SRM Position B SRM Position C Position r; REAC VES LEV Reactor Vessel Water Level FD FLOW Feedwater Flow A into React Syst PD FLOW Feedwater Flow B into React Syst FD FLOW Feedwater Flow C into React Syst RCIC FLOW Reactor Core Isolat Cooling Flow RCS INTEGRITY RCS PRESSURE HPCI FLOW LPCI FLOW LPCI FLOW CR SPRAY FL DN FD SMP LV Dli FD SMP LV Reactor Coolant System Pressure High Pressure Coolant Injec Flow Low Press Coolant Inject A Flow Low Press Coolant Inject B Flow Core Spray Cooling System Flow Drywell Floor Drain Sump Level A Drywell Floor Drain Sump Level B % % % % % NO/YES NO/YES CPS CPS CPS CPS NOT IN/IN NOT IN/IN NOT IN/IN NOT IN/IN MLBS/H MLBS/H !1LBS/H GPM PSIG GP!1 GP!1 GPH % %
RADIOACTIVITY CONTROL EFF GAS RAD Rad of Released NBLGAS-Rx 1 Vent EFF GAS RAD Rad of Released NBLGAS-TB 1 Vent EFF GAS RAD Rad of Released NBLGAS-SGTS Vent EFF GAS RAD Rad of Released NBLGAS-Rx 2 Vent EFF GAS RAD Red of RHles.s&d NBLG1 r-* .,.B ? Verd: EFF GAS RAD Red of Rt:::.leased NBLG*,. ",:;_ Tc..1tl EFF LIQ RAD Radioactivity of RFlsased Liq'ds Not l-isted LRW Discharge Flow CiiD A/E RAD Condenser Air Ejector Radioactivity DW RAD Radiation Level in the Drywell MN STEAM RAD Radiation Lvl of lola in Stm Line A MN STEAl*! RAD Radiation Lvl of Main Stm Line B MN STEAM RAD Radiation Lvl of Mc...i.u Stm Line c lo!N STEAM RAD Radiation Lvl of Main Stm Line D CONTAIN!o!ENT CONDITIONS DW PRESS Drywell Pressure DW TEHP Drywell Temperature SP TEMF Suppressicn Pool Temperature SP LEVEL Suppression Pool Watsr Level H2 CONC D"}"*Tell Hydrogen Concentration 02 CONC Drywell Oxyge"1 Concentration MISCELLANEOUS PARAMETERS CST LEVEL Condensate Storage Tanlc 1 Level CST LEVEL Condensate Storage TFn..i. ? Level WINL SPEED Wind Speed at Reactor Le -60H SPEED Wind Speed at Reactor b..:.t:e 'WlL:J DIR Wind Dir at the Ree.ct SiLe -601 .... WIND DIR W:i:1d Dir at the React Site -) 0!-: STAB CLASS dir Stability at the React Site EXERCISE DATA Exercise Data uCI/HIN uCI/MIN uCI/MIN uCI/!UN uCI/HIN uCI/!UN CPM GPM R/HR lffi/H MR/H MR/B HR/H PSIG DEGF DEGF FEET % % % % MPH HPH DEGF.i< DEGFR STABA NO/YES CSD ER-005 Revisior. 8 Page 72 of 72 
}}

Latest revision as of 06:06, 6 April 2019