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Development of declustered processed earthquake accelerogram database for the Iranian Plateau: including near-field record categorization

机译:伊朗高原的降低处理地震加工的地震换热数据库:包括近场记录分类

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摘要

In this paper, a comprehensive accelerogram database of the Iranian plateau containing 3585 data with all three components is gathered. The raw data are processed by the wavelet-based denoising method, and results are compared with the contaminated data. All the data are classified into mainshock and aftershock categories using the time and spatial window method. Afterward, the data are categorized into the pulse-like and non-pulse-like events based on the detection of velocity pulse in any of horizontal and/or vertical directions. Eventually, among 3585 data, the ones with an average shear wave velocity of top 30m of subsurface soil profile are selected and their important ground motion parameters such as peak ground acceleration, velocity, and displacement, Arias intensity, ground motion duration, and acceleration response spectra are studied. It is observed that the intensity of vertical component of the accelerograms is almost at the same level as the strong horizontal direction or even more, in some cases. Near-field events cause more severe responses than far-field earthquakes. Generally, the mainshocks responses are slightly tougher than the aftershocks. By comparing the acceleration response spectra of the accelerograms with the ones obtained from the building design codes, the necessity of revising the existing standard spectra is revealed for considering the effects of mainshocks, aftershocks, near-field effects, as well as separate vertical component of the ground motions directly. Finally, the presented database, as a powerful tool, will give an interesting opportunity to the scientists and engineers who are enthusiastic to work on the Iranian plateau accelerograms.
机译:本文中,收集了包含所有三个组件的3585个数据的伊朗高原的全面的Accelerogram数据库。原始数据由基于小波的去侵染方法处理,并将结果与​​受污染的数据进行比较。所有数据都使用时间和空间窗口方法分为MainShock和Aftershock类别。之后,基于在水平和/或垂直方向中的任何一个中检测速度脉冲的检测,将数据分类为脉冲样和非脉冲状事件。最终,在3585个数据中,选择具有前30米前30米的平均剪切波速度的剪切波速度以及它们的重要地面运动参数,例如峰接地加速度,速度和位移,arias强度,地面运动持续时间和加速度响应。研究了光谱。观察到,在某些情况下,随着速度局的垂直分量的强度几乎与强水平方向甚至更多的水平相同。近场事件造成比远场地震更严重的响应。通常,主轴的响应比余震稍微变得略微粗糙。通过比较随着从建筑物设计代码获得的加速响应谱的加速度响应谱,揭示了修改现有标准光谱的必要性,用于考虑主轴,余震,近场效应的影响以及单独的垂直分量地面运动直接。最后,呈现的数据库作为一个强大的工具,将为科学家和工程师提供有趣的机会,他们热烈地在伊朗高原加入arcergrams上工作。

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