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A computationally efficient framework for rotation dependent and rotation independent intensity measures

机译:旋转依赖性和旋转独立强度测量的计算高效框架

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Orientation of a structure in a site is generally known but not the direction of maximum shaking during a future seismic event. Two different types of intensity measures (IMs) are usually used to approximately account for this directionality effect, namely, the rotation dependent such as RotDxx and GMRotDxx and the rotation independent such as RotIxx and GMRotIxx. Rotation dependent IMs are presently constructed by performing time history analysis for all possible orientation (usually @ 1 degree) of the input ground motion set followed by picking the xx-percentile spectral ordinate. In other words, the construction of RotDxx spectrum requires a set of 180 time history analysis of an oscillator per spectral ordinate. Similarly, the construction of GMRotDxx requires time history analysis of an oscillator against 90 pairs of orthogonal components per spectral ordinate. This paper presents a framework that enables the construction of rotation dependent IMs by performing time history analysis against a pair of as-recorded components with some nominal supplemental processing. This reduces the computational cost more than 90% when compared with the state of the art. Rotation independent IMs are defined through finding out the rotation that minimizes the error (often termed as the penalty function) with respect to the target spectra of associated rotation dependent IM as the benchmark. Resulting rotation independent IMs show somewhat sensitivity on the maximum time period used in spectral representation. This paper presents an alternate definition (involving scaling and rotation) for rotation independent IMs that nearly eliminates such sensitivity.
机译:在网站中的结构的定向通常是已知的,而不是在未来地震事件期间最大震动的方向。两种不同类型的强度测量(IMS)通常用于近似占该方向性效果,即旋转所依赖于RotDXX和GMROTDXX,以及独立于ROTIXX和GMROTIXX的旋转。通过对输入接地运动集的所有可能的方向(通常@ 1度)进行时间历史分析,目前构造旋转依赖IMS,然后选择XX百分位谱纵坐标。换句话说,RotDXX频谱的构造需要一组180次历史分析每个频谱纵坐标的振荡器。类似地,GMROTDXX的构造需要针对每个频谱纵坐标的90对正交分量的振荡器的时间历史分析。本文介绍了一种框架,可以通过对具有一些标称补充处理的一对以记录的组件进行时间历史分析来构造旋转依赖IMS。与现有技术相比,这减少了超过90%的计算成本。通过发现旋转来定义旋转独立的IMS,该旋转使得能够使关联旋转的目标频谱最小化依赖于基准的旋转的目标频谱来定义。产生的旋转独立IMS在光谱表示中使用的最大时间段内显示出稍微灵敏度。本文介绍了用于旋转独立IMS的替代定义(涉及缩放和旋转),即几乎消除了这种灵敏度。

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