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Mapping the uncertainty in modulus reduction and damping curves onto the uncertainty of site amplification functions

机译:将模数减小和阻尼曲线的不确定性映射到站点放大函数的不确定性

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摘要

Probabilistic seismic hazard analysis often requires the use of site response analyses to calculate site amplification factors (AFs) that capture the effects of near-surface layers. The site response analyses must also be conducted in a probabilistic framework to quantify the variability in AFs resulting from variation in the rock input motions and uncertainty in the dynamic properties of the soil profile, including uncertainty in the shear-wave velocity and in the nonlinear behavior of the soil. In equivalent linear analyses, the latter is captured through modulus reduction and damping curves (MRD). The joint randomization of shear-wave velocity and MRD curves can result in large computational costs. The objective of this paper is to propose a procedure to separately calculate the contribution of uncertainty in the MRD curves to the total uncertainty in the AFs for a site. This procedure is illustrated in an application for a seismic hazard and risk assessment of the Groningen gas field in the Netherlands. The results show that the effect of uncertainty in MRD curves on the uncertainty in the AFs is highly dependent on the soil profile. This effect can be significant for soft soils and strong input motions. Results also indicate that the effects of MRD uncertainty can be correlated to elastic site properties.
机译:概率地震灾害分析通常需要使用场地响应分析来计算捕捉近地表层影响的场地放大因子(AF)。场地响应分析还必须在概率框架中进行,以量化由岩石输入运动的变化和土壤剖面动态特性的不确定性(包括剪切波速度和非线性行为的不确定性)导致的AF的变化性的土壤。在等效的线性分析中,后者是通过模量降低和阻尼曲线(MRD)捕获的。剪切波速度和MRD曲线的联合随机化会导致大量的计算成本。本文的目的是提出一种程序来分别计算MRD曲线中不确定性对站点AF的总不确定性的贡献。在荷兰格罗宁根(Groningen)气田的地震危险性和风险评估应用程序中说明了此程序。结果表明,MRD曲线中的不确定性对AF中不确定性的影响高度依赖于土壤剖面。对于软土和强烈的输入运动,此效果可能非常重要。结果还表明,MRD不确定性的影响可能与弹性部位的特性有关。

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