ML051610118

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Startup Testing Update Call
ML051610118
Person / Time
Site: Quad Cities Constellation icon.png
Issue date: 06/01/2005
From: Karla Stoedter
NRC/RGN-III/DRP/RPB1
To: Dick G
Office of Nuclear Reactor Regulation
References
Download: ML051610118 (16)


Text

GeorgeDick -Fwd: StarupTesting UpdateaCall

^

age1q From:

Karla Stoedter To:

George Dick Date:

6/1/05 3:15PM

Subject:

Fwd: Startup Testing Update Call See attached for slides

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Fwd: Startup Testing Update Call 6/1/05 3:14PM Karla Stoedter KKB @nrc.gov Recipients nrc.gov owf4.po.0WFNDO GFD (George Dick)

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Size 366 Date & Time 06/01/05 03:14PM None Standard No None No Standard

i George Dick - Startup Testing Update Call Page 1 George Dick - Startup Testing Update Call Page 1 I From:

<mark.wagner@ oxeloncorp.com>

To:

<kkb@nrc.gov>, <gfd@mrc.gov>, <martnrc.gov>

Date:

6/1/05 2:40PM

Subject:

Startup Testing Update Call The attached two files will be used during our call at 2:30 CST.

General Information

<<DataPackage.pdf>>

Spectra Overlay Data

<<Unit 2 Spectra Overlay (TC-41).pdf>>

Mark Wagner 309-227-2815 This e-mail and any of its attachments may contain Exelon Corporation proprietary information, which is privileged, confidential, or subject to copyright belonging to the Exelon Corporation family of Companies.

This e-mail is intended solely for the use of the individual or entity to which it is addressed. If you are not the intended recipient of this e-mail, you are hereby notified that any dissemination, distribution, copying, or action taken in relation to the contents of and attachments to this e-mail is strictly prohibited and may be unlawful. If you have received this e-mail in error, please notify the sender immediately and permanently delete the original and any copy of this e-mail and any printout. Thank You.

Quad Cities Unit 1 Startup Dryer Test Plan NRC Update June 1, 2005

ACM Benchmarking Comparison to In-Plant Data at 790 MWe Location RMS Predicted RMS Measured Predicted/Measured Criteria Met Measured_

x 100%

(>90%/.)

Outer Hood Bank A, Opposite B MSL 0.22 0.20 111.99 Yes NJozzle Duter Hood Bank A, Opposite A MSL 0.26 0.24 107.84 Yes NTozzle Bank F, Opposite C MSL Nozzle 0.26 0.22 119.7 Yes Bank F, Opposite D MSL Nozzle 0.35 0.36 97.76 Yes On Skirt, 270 0 Face, Dry, Mid-Level 0.11 0.12 94.22 Yes Mounted - 50 " Below Ring Bank B Hood, 17" down from Top of Hood, 0.05 0.09 49.57 No Centered Between Tie Bars 3 & 4 I

Location Peak Frequency Peak Frequency Predicted/Measured Criteria Met (PSD) Predicted (PSD) Measured x 100%

(+/-10%)

Hood Bank A, Opposite B MSL 154.84 154.84 100 Yes Outer Hood Bank A, Opposite A MSL Nozzle Bank F, Opposite C MSL Nozzle Bank F, Opposite D MSL Nozzle On Skirt, 270 0 Face, DMy, Mid-Level Mounted -50 "Below Ring Bank B Hood, 17" down from Top of Hood, Centered Between Tie Bars 3 & 4 154.84 155.15 154.84 154.84 100 Yes 151.2 102.61 I

Yes 151.2 102.41 154.64 155.15 99.67 Yes Yes No 24.721 151.54 16.31

ACM Benchmarking Comparison to In-Plant Data at 790 MWe (Cont.)

P12 CDI P12 Measured Power Spectral Density PowerSpectral Density 0.1 0.01 my (12

-5'i

)

nAM cS (°

.104 I

l 10-5

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i l

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'JLII:

Lai 1.106 j 151 S "

.1 X1 50 100 fieq(i) fiequency hz 150 200 50 100 fieq(i) frequency hz 150 2200 n

ACM Benchmarking Comparison to In-Plant Data at 930 MWe (Cont.)

Pressure RMS Predicted/Measured x CriterM a

Sensor Location PredMSted RMS Measured 100%

Met

(>90 %)

P3 Outer Hood Bank A, Opposite B MSL Nozzle 0.62 0.65 95.61 Yes P12 Outer Hood Bank A, Opposite A MSL Nozzlec 0.62 0.71 86.92 No P20 Bank F. Opposite C MSL Nozzle 0.55 0.50 108.86 Yes P21 Bank F, Opposite D MSL Nozzle 0.73 0.89 81.66 No P24 On Skirt, 270 'Face, Dry, Mid-Level Mounted - 50" 0.23 0.23 101.10 Yes Below Ring_

P26 Mast 0.04 0.11 39.62 No Peak Peak Criteria Pressure Location Frequency Frequency Predicted/Measured x Met (+/-

Sensor (PSD)

(PSD) 100%

10%)

Predicted Measured P3 Outer Hood Bank A, Opposite B MSL Nozzle 152 152 100 Yes P12 Outer Hood Bank A, Opposite AMSL Nozzle 152 152 100 Yes P20 Bank F, Opposite C MSL Nozzle 150 150 100 Yes P21 Bank F, Opposite D MSL Nozze 150 150 100 Yes P24 On Skirt, 270 ° Face, Dry, Mid-Level Moumted - 50" 152 152 100 Yes Below Ring P26 Mast 152 152 100 Yes

ACM Benchmarking Comparison to In-Plant Data at 930 MWe (Cont.)

P12 CDI CDI Prediction Power Spectral Density P12 Measured 0.01

,A

(,)2 10-3

(.10-3

'O. (Act ),

I *104 1-10, I10 10U freq(i) frequency hz 15U 200 50 100 freqt(j) frequency hz 150 200

QC1 Power Ascension 1000 I

TCO 912 Me Vibes/MSL Strain Gage Dat 900 i yCDS AC WMoe (6 Its TLota )

la 800-8 85% Vibes/MSL Strain Gage Data, CDI Acoustic Orcuit (36 Hrs Total) 700-75% Vibes Strain Gage Data,

\\

[a(6 filrs Total) 600-500 T

Vibes/IL Strain Gage Data 6 hrs) 400 200 3

200 (7 rrt ne Testing, VibesIGL Strain Gage ta (6 hrs) 2 0 -

T 2--

I

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Spectra overlay at TC41 SMT VUL IN-SITU Steam dryer sensors:

  • P3
  • P12
  • P20
  • P21
  • P24
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