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    Risk Assessment of Emergency Diesel Generator Subject to Design Basis Earthquake Shaking

    Source: ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering:;2016:;volume( 002 ):;issue: 001::page 11007
    Author:
    Uriz, Patxi
    ,
    Morgan, Troy A.
    DOI: 10.1115/1.4031843
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: A monitoring system intended to track vibrations associated with the operation of an emergency diesel generator (EDG) at a nuclear power plant was originally installed to trip generators during potential outofbalance shaking. Years after original installation, plant engineers raised questions as to whether the monitoring system would have functioned properly in the event of excessive vibrations associated with earthquake ground shaking. As part of the plant’s examination of this issue, analytical models were developed for three vibration transducers via experimental characterization. A suite of ground motion records was selected and scaled such that their mean and dispersion were representative of the designbasis event (DBE) level of intensity at the plant site. The scaled suite of ground motions was used as an input for a threedimensional (3D) analytical model representing the structure and soilfoundation interface, where the EDGs were installed. The voltage signal from the analytical transducer model provided input to the physical vibration alarm monitor. This monitor filters the vibration transducer signal and generates an output to a timedelay relay that will trip the EDG if the output from the vibration monitor is not reset within 5آ s. The analysis and testing completed and described in this paper concluded that a DBE would not have caused the vibration monitoring circuit to spuriously trip the EDGs.
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      Risk Assessment of Emergency Diesel Generator Subject to Design Basis Earthquake Shaking

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    • ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering

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    contributor authorUriz, Patxi
    contributor authorMorgan, Troy A.
    date accessioned2017-05-09T01:25:28Z
    date available2017-05-09T01:25:28Z
    date issued2016
    identifier issn2332-9017
    identifier otherRISK_2_1_011007.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/160172
    description abstractA monitoring system intended to track vibrations associated with the operation of an emergency diesel generator (EDG) at a nuclear power plant was originally installed to trip generators during potential outofbalance shaking. Years after original installation, plant engineers raised questions as to whether the monitoring system would have functioned properly in the event of excessive vibrations associated with earthquake ground shaking. As part of the plant’s examination of this issue, analytical models were developed for three vibration transducers via experimental characterization. A suite of ground motion records was selected and scaled such that their mean and dispersion were representative of the designbasis event (DBE) level of intensity at the plant site. The scaled suite of ground motions was used as an input for a threedimensional (3D) analytical model representing the structure and soilfoundation interface, where the EDGs were installed. The voltage signal from the analytical transducer model provided input to the physical vibration alarm monitor. This monitor filters the vibration transducer signal and generates an output to a timedelay relay that will trip the EDG if the output from the vibration monitor is not reset within 5آ s. The analysis and testing completed and described in this paper concluded that a DBE would not have caused the vibration monitoring circuit to spuriously trip the EDGs.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleRisk Assessment of Emergency Diesel Generator Subject to Design Basis Earthquake Shaking
    typeJournal Paper
    journal volume2
    journal issue1
    journal titleASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering
    identifier doi10.1115/1.4031843
    journal fristpage11007
    journal lastpage11007
    treeASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering:;2016:;volume( 002 ):;issue: 001
    contenttypeFulltext
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