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Diesel Building Fire Damper Failing Closed Mike Walker TVA.

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Presentation on theme: "Diesel Building Fire Damper Failing Closed Mike Walker TVA."— Presentation transcript:

1 Diesel Building Fire Damper Failing Closed Mike Walker TVA

2 Diesel Generator HVAC  SQN has 4 diesel generators  Each Diesel generator has 2 fans for cooling  Cooling utilizes outside air  Once through system

3 Diesel Generator Building Air flow

4 Damper Configuration  Diesel generator room inlet dampers Fire damper and motor operated damper in series Fire damper is normally open and is closed by a spring Fire damper has a fusible link and a CO2 blow off clip Motor operated damper is normally closed and opens on fan start signal

5 Damper configuration  Diesel generator room outlet damper Fire damper only Fire damper normally open, and is closed by a spring Fire damper has a fusible link and a CO2 blow off clip

6 Fire Damper Failure  ON 6/6/08 the inlet fire damper for 2A-A DG failed closed with 1 fan in operation  HIGH Crankcase Pressure HIGH alarm actuated on the DG  Also resulted in DG lockout and LCO entry.  Discovered CO2 blow off clip was dislodged from the CO2 nozzle  Previous failure of CO2 blow off clip happened on 8/7/07 on fire damper for DG 1B-B

7 CO2 Blow OFF Clip

8 Installed CO2 Blow Off Clip and Nozzle

9 Typical Cross Tied Fire Damper Cross brace not at SQN Cross brace not at SQN To CO2 blow off clip Fusible link 4 separate damper sections at SQN are tied together

10 Troubleshooting  All Fire dampers on the inlet side were wired open to ensure DG operability  Vendor drawing indicated maximum load for CO2 clip was 25 lbs.  Pull test was performed on the fire damper assembly  31 pounds of force was required to hold the damper in the open position AH HA!!!!

11 Troubleshooting (continued)  Ensured blow off clip was fully installed  Pull test on blow off clip determined that it would hold at > 50 lbs of force ?????????  Also a history search determined that 2 similar failures have occurred on very small dampers. ?????????

12 Observation of installed CO2 Blow Off Clip

13 Discussions With Vendor  Vendor did not have any idea where large spacer came from  Normally the blow off clip body is bottomed out against the brace, and a conduit nut holds the device in place  Vendor agreed that a conduit nut could be used on both sides of the bracket to adjust the clip location

14 Conduit Nut on One Side  Vendor recommended installation

15 Final Modified Installation  Vendor Manual revision was made to allow 2 conduit nuts

16 Load on the Blow Off Clip Load angle must be within + 5 degrees

17 Bench Test Results  Testing with old spacer installed 0 degree angleClip released at 65 lbs 5 degree angleClip released at 50 lbs 10 degree angleClip released at 10 lbs

18 Bench Test Results  Bench testing with spacer removed and conduit nuts installed 0 degree angleClip did not release, measured > 100 lbs 5 degree angleClip did not release, measured > 100 lbs 10 degree angleClip did not release, measured > 100 lbs 20 degree angleClip did not release, measured > 100 lbs 30 degree angleClip released at 50 lbs

19 Conclusions  Testing provided assurance that the present clip should hold the damper open  The clip must be fully engaged  The old spacer can not be utilized

20 Root Cause Conclusion  The old spacers impede the blow off clip from being fully engaged with the CO2 release nozzle. Questions or Comments?


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