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Site Effects on Ground Motion Directionality: Lessons from Case Studies in Japan

机译:网站对地面运动方向性的影响:日本案例研究的课程

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Earthquake ground motions (GMs) may display distinct characteristics in all directions within the horizontal plane. However, the causes of GM polarization are still not fully understood. Structural designs use maximum rotated intensity measures (IMRotD100) to accommodate variations of the GM with orientation, but the orientation associated with IMRotD100, beta, is not easily predictable. This study investigates the influence of linear site response to observed GM variability with direction. We analyze GMs recorded at the surface and at depth from four stations in the Japanese database, KiK-net. Selected events have moment magnitudes ranging 3-5, and rupture distances within 100 km. Findings provide evidence that site effects contribute to GM directionality, and that directional resonance can be observed at sites lacking significant topographic features. Additionally, values of beta at depth are not correlated to the orientation corresponding to their expected polarization (from S-wave radiation patterns), which provides evidence of non-negligible path contributions to GM directionality observed at our study sites.
机译:地震地面运动(GMS)可以在水平面内的所有方向上显示不同的特性。然而,GM极化的原因仍然不完全理解。结构设计使用最大旋转强度措施(IMROTD100)以适应GM以方向的变化,但与IMROTD100,BETA相关的方向不易预测。本研究调查了线性部位响应对观察到的转基因变异性方向的影响。我们分析了在表面上记录的GMS以及日本数据库中的四个站的深度,KIK-NET。所选事件具有3-5的时刻大小,并且在100公里范围内的破裂距离。调查结果提供了现场效应对GM方向性有所有助于方向性的证据,并且在缺乏显着的地形特征的地点可以观察到定向共振。另外,深度的β的值与对应于它们的预期偏振(来自S波辐射图案)的取向不相关,这提供了在我们的研究网站观察到的通用通用通用通用道路的不可忽略的路径贡献。

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