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Probabilistic method to select calculation accelerograms based on uniform seismic hazard acceleration response spectra

机译:基于均匀地震危险加速度响应谱的计算加速度图选择方法

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A dynamic analysis of a structure requires the previous definition of the accelerograms and the structure characteristics. The response of a structure subject to a seismic movement can be determined by two methods: either using the accelerograms recorded near the site, or using visco-elastic response spectra. The first method should only be used for locations where many accelerograms have been recorded, and needs a probabilistic calculation to ascertain the design accelerograms. The use of visco-elastic response spectra is based upon the fact that the response spectrum is the soil movement parameter better related to the structural response and is more adequate to obtain accelerograms in regions where the number of records is insufficient. This is the most commonly used method as the response of structures, in the elastic linear range, can be obtained as the superposition of a few modes of vibration. A probabilistic method for selecting calculation accelerograms is presented in this paper. First, the probabilistic hazard equation is solved. Based on the hazard curves obtained, the uniform seismic hazard acceleration response spectrum (USHARS) is constructed for the location, according to the type of soil and the required hazard level (exposure time and exceedance probability). Then, calculation accelerograms are selected. Based on this methodology, real accelerograms, for a return period of 975 years, have been obtained for San Pedro Cliff (Spain) at the Athambra in Granada.
机译:对结构进行动态分析需要事先定义加速度图和结构特征。可以通过两种方法确定结构在地震作用下的响应:使用在现场附近记录的加速度图或使用粘弹性响应谱。第一种方法仅应用于记录了许多加速度图的位置,并且需要概率计算来确定设计加速度图。粘弹性响应谱的使用是基于这样一个事实,即响应谱是与结构响应更好相关的土壤运动参数,并且更适合于在记录数量不足的区域获得加速度图。这是最常用的方法,因为在弹性线性范围内,结构的响应可以通过几种振动模式的叠加来获得。提出了一种选择计算加速度图的概率方法。首先,求解概率危险方程。根据获得的危害曲线,根据土壤的类型和所需的危害等级(暴露时间和超出概率),为该位置构建统一的地震危害加速度响应谱(USHARS)。然后,选择计算加速度图。基于这种方法,已经在格拉纳达的阿塔布拉的San Pedro Cliff(西班牙)获得了975年的真实加速图。

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