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Seismic capacity evaluation of fire-damaged cabinet facility in a nuclear power plant

机译:核电站防火柜设施的地震能力评价

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This study is to evaluate the seismic capacity of the fire-damaged cabinet facility in a nuclear power plant (NPP). A prototype of an electrical cabinet is modeled using OpenSees for the numerical simulation. To capture the nonlinear behavior of the cabinet, the constitutive law of the material model under the fire environment is considered. The experimental record from the impact hammer test is extracted trough the frequency-domain decomposition (FDD) method, which is used to verify the effectiveness of the numerical model through modal assurance criteria (MAC). Assuming different temperatures, the nonlinear time history analysis is conducted using a set of fifty earthquakes and the seismic outputs are investigated by the fragility analysis. To get a threshold of intensity measure, the Monte Carlo Simulation (MCS) is adopted for uncertainty reduction purposes. Finally, a capacity estimation model has been proposed through the investigation, which will be helpful for the engineer or NPP operator to evaluate the fire-damaged cabinet strength under seismic excitation. This capacity model is presented in terms of the High Confidence of Low Probability of Failure (HCLPF) point. The results are validated by the proper judgment and can be used to analyze the influences of fire on the electrical cabinet.
机译:本研究是评估核电厂(NPP)中火灾损坏柜设施的地震能力。使用Opensees进行建模电气柜的原型,用于数值模拟。为了捕获机柜的非线性行为,考虑了消防环境下的材料模型的本构规则。从冲击锤试验中提取频率域分解(FDD)方法的实验记录,用于通过模态保证标准(MAC)验证数值模型的有效性。假设不同的温度,使用一组50个地震进行非线性时间历史分析,并且通过脆弱性分析研究地震输出。为了获得强度测量的阈值,采用了蒙特卡罗模拟(MCS)以进行不确定性降低目的。最后,通过调查提出了一种容量估计模型,这将有助于工程师或NPP运营商评估地震激发下的防火柜强度。这种容量模型在低尺寸(HCLPF)点的高尺寸的高度置信方面提出。结果通过适当的判断验证,可用于分析火灾对电气柜的影响。

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