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首页> 外文期刊>Bulletin of the Seismological Society of America >Validation of Simulated Earthquake Ground Motions Based on Evolution of Intensity and Frequency Content
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Validation of Simulated Earthquake Ground Motions Based on Evolution of Intensity and Frequency Content

机译:基于强度和频率含量演化的模拟地震地震动验证

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Simulated earthquake ground motions can be used in many recent engineering applications that require time series as input excitations. However, applicability and validation of simulations are subjects of debate in the seismological and engineering communities. We propose a validation methodology at the waveform level and directly based on characteristics that are expected to influence most structural and geotechnical response parameters. In particular, three time-dependent validation metrics are used to evaluate the evolving intensity, frequency, and bandwidth of a waveform. These validation metrics capture nonstationarities in intensity and frequency content of waveforms, making them ideal to address nonlinear response of structural systems. A two-component error vector is proposed to quantify the average and shape differences between these validation metrics for a simulated and recorded ground-motion pair. Because these metrics are directly related to the waveform characteristics, they provide easily interpretable feedback to seismologists for modifying their ground-motion simulation models. To further simplify the use and interpretation of these metrics for engineers, it is shown how six scalar key parameters, including duration, intensity, and predominant frequency, can be extracted from the validation metrics. The proposed validation methodology is a step forward in paving the road for utilization of simulated ground motions in engineering practice and is demonstrated using examples of recorded and simulated ground motions from the 1994 Northridge, California, earthquake.
机译:模拟地震地震动可用于许多需要时间序列作为输入激励的最新工程应用中。但是,模拟的适用性和验证是地震学和工程学界争论的主题。我们提出了一种在波形级别上并直接基于预期会影响大多数结构和岩土响应参数的特征的验证方法。特别是,三个时间相关的验证指标用于评估波形的强度,频率和带宽的变化。这些验证指标可捕获波形强度和频率含量的非平稳性,使其成为解决结构系统非线性响应的理想之选。提出了两个分量的误差矢量,以量化模拟和记录的地面运动对的这些验证指标之间的平均值和形状差异。由于这些量度与波形特征直接相关,因此它们可为地震学家提供易于解释的反馈,以修改其地震动模拟模型。为了进一步简化工程师对这些指标的使用和解释,说明了如何从验证指标中提取六个标量关键参数,包括持续时间,强度和主要频率。所提出的验证方法是在工程实践中利用模拟地震动铺平道路的一步,并使用来自1994年加利福尼亚州北岭地震的记录和模拟地震动示例进行了演示。

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