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Determination of Design Ground Motion For Critical Engineering Structures Based on Probabilistic Seismic Hazard Analysis

机译:基于概率地震危险度分析的关键工程结构设计地震动确定

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This paper proposes a method of determining design ground motion for critical engineering structures, based on probabilistic seismic hazard analysis (FSHA). Effective peak acceleration (EPA) is used as basic ground motion parameter in this paper. Comparing the contribution of dominant potential seismic source at long period (T = 1.0s) and short period (T = 1.0s), we suggest that the dominant potential seismic source be determined according to the dynamic property (e.g. expected period) of the engineering structures. And then we utilize the contribution functions of some dominant sources, and attenuation law to determine design earthquake magnitude and epicentral distance. According to these results, design ground motion parameters could be determined reasonably
机译:本文提出了一种基于概率地震危险性分析(FSHA)的确定关键工程结构设计地震动的方法。本文将有效峰值加速度(EPA)用作基本地面运动参数。比较长期(T = 1.0s)和短期(T = 1.0s)的主要潜在地震源的贡献,我们建议根据工程的动态特性(例如预期周期)确定主要潜在地震源。结构。然后我们利用一些主要震源的贡献函数和衰减规律来确定设计地震的震级和震中距离。根据这些结果,可以合理地确定设计地震动参数。

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