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首页> 外文期刊>Bulletin of the Seismological Society of America >Validation of Ground-Motion Simulations through Simple Proxies for the Response of Engineered Systems
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Validation of Ground-Motion Simulations through Simple Proxies for the Response of Engineered Systems

机译:通过简单代理验证工程系统响应的地面运动仿真

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摘要

We propose a list of simple parameters that act as proxies for the response of more complicated engineered systems and therefore can be studied to validate new methods of ground-motion simulation for engineering applications. The primary list of parameters includes correlation of spectral acceleration across periods, ratio of maximum-to-median spectral acceleration across all horizontal orientations, and the ratio of inelastic-to-elastic displacement, all of which have reliable empirical models against which simulations can be compared. We also describe several secondary parameters, such as directivity pulse period and structural collapse capacity, that do not have robust empirical models but are important for engineering analysis. We then demonstrate the application of these parameters to exemplify simulations computed using a variety of methods, including stochastic finite fault, Graves–Pitarka hybrid broadband, and a composite source model. In general, each simulation method matches empirical models for some parameters and not others, indicating that all relevant parameters need to be carefully validated.
机译:我们提出了一个简单参数列表,这些参数可以作为更复杂的工程系统的响应的代理,因此可以进行研究以验证用于工程应用的地震动模拟的新方法。参数的主要列表包括各个周期的频谱加速度的相关性,所有水平方向上最大频谱加速度与中值频谱加速度的比率以及非弹性与弹性位移的比率,所有这些参数都具有可靠的经验模型,可以对这些模型进行仿真。比较。我们还描述了一些次要参数,例如方向性脉冲周期和结构破坏能力,这些参数不具有鲁棒的经验模型,但对工程分析很重要。然后,我们演示这些参数的应用,以举例说明使用多种方法(包括随机有限断层,Graves-Pitarka混合宽带和复合源模型)计算出的模拟。通常,每种仿真方法都针对某些参数而不是其他参数匹配经验模型,这表明需要仔细验证所有相关参数。

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