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Practical seismic microzonation in complex geological environments

机译:复杂地质环境中的实用地震微区划

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The seismic design of buildings and infrastructure components requires the estimation of the hazard considering the dynamic response of the soil deposits, which substantially modifies the characteristics of the input motion at the rock basement. Seismic microzonation studies attempt to identify geologic zones of an area of interest with similar seismic hazard at a local scale. This paper presents a methodology to obtain seismic spectral amplification factors within each soil zone characterization considering the main sources of uncertainty. Results are presented in terms of spectral amplification factors for various seismic intensities and soil profile vibration periods. Design soil amplification factors can then be mapped using the measured vibration period of the soil profile at each location and the seismic intensity at bedrock for a given design return period. Response and design spectra may then be estimated at surface level for every location. Results can be easily integrated into probabilistic risk assessment platforms such as CAPRA (www.ecapra.org) for hazard and risk evaluations.
机译:建筑物和基础设施组件的抗震设计需要考虑土壤沉积物的动态响应来估算危害,这会大大改变岩石地下室输入运动的特性。地震微区划研究试图在局部范围内识别出具有类似地震危险的感兴趣区域的地质带。本文提出了一种方法,该方法考虑了不确定性的主要来源,从而获得了每个土壤区域特征内的地震频谱放大因子。结果是针对各种地震烈度和土壤剖面振动周期的频谱放大因子表示的。然后可以使用给定的设计返回时间段内每个位置测得的土壤剖面振动周期和基岩处的地震烈度来绘制设计土壤放大因子。然后可以在每个位置的表面水平估计响应和设计光谱。结果可以轻松地集成到概率风险评估平台中,例如CAPRA(www.ecapra.org),以进行危害和风险评估。

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