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Probabilistic site response analysis for nuclear facilities considering variability of soil properties and its effects on uniform hazard response spectra and ground motion response spectra

机译:考虑土壤性质变异性及其对统一危害响应光谱和地面运动响应光谱的核设施概率现场响应分析

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Because seismic waves are influenced by variability at local soil sites, their effects on the uniform hazard response spectra (UHRS) and ground motion response spectra (GMRS) of nuclear facilities at soil sites are studied by means of a probabilistic site response analysis based on the random vibration theory. Monte Carlo simulations are employed to take into consideration the effects of variability of the layer thickness, low-strain shear-wave velocity, and nonlinear dependence of the shear modulus and hysteretic damping on shear strain at soil sites. A new probabilistic model is proposed to simulate the variability of the layer thickness using an Erlang distribution. Random field models are considered for the nonlinear shear modulus reduction and damping curves. The probabilistic approach is applied to generic soil sites to evaluate their soil-amplification functions. The seismic hazard curves and the UHRS can be obtained using the amplification functions and the hazard curves of outcropping bedrock motions. Then, the seismic risk for structures installed at these types of sites is calculated and the resulting GMRS values for a seismic design are derived. It can be observed from the simulations that the variability in the layer thickness and the low-strain shear-wave velocity influences the soil-amplification functions and the resulting UHRS and GMRS values for the soil sites significantly. The effects increase with the variances of the considered random properties. Because the input motions for probabilistic earthquake response analyses of nuclear facilities are determined based on the UHRS/GMRS values, the effects of random soil sites must be carefully considered to ensure the seismic safety of these facilities.
机译:由于地震波受到局部土壤场所的可变性的影响,因此通过基于概率的现场反应分析,研究了对土壤部位统一危害响应谱(UHRS)和地面运动响应光谱(GMRS)的影响随机振动理论。蒙特卡罗模拟用于考虑层厚度,低应变剪切波速度的可变性,低应变剪切波速度和非线性依赖性的抗剪切模量和滞后阻尼在土壤部位的剪切应变上的影响。提出了一种新的概率模型来模拟使用Erlang分布的层厚度的可变性。随机现场模型被认为是非线性剪切模量减少和阻尼曲线。概率方法适用于通用土壤站点以评估其土壤扩增功能。可以使用扩增函数和露头的基岩运动的危险曲线获得地震危险曲线和UHR。然后,计算在这些类型的位点安装的结构的地震风险,得到了所得到的地震设计的GMRS值。可以从模拟中观察到层厚度和低应变剪切波速度的可变性影响土壤扩增功能和产生的UHRS和GMRS值显着。效果随着所考虑的随机性质的差异而增加。由于基于UHRS / GMRS值确定了核设施的概率地震响应分析的输入动作,因此必须仔细考虑随机土壤场地的影响,以确保这些设施的地震安全性。

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