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Basin Structure and Numerical Simulation for the Mechanisms of Seismic Disasters

机译:地震灾害机理的盆地结构与数值模拟

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In the present study seismic wave propagation in heterogeneous media is numerically simulated by using the pseudospectral method with the staggered grid RFFT differentiation in order to clarify the cause for the complicated distribution characteristics of strong ground motion in regions with basin structure. The results show that the maximum amplitudes of simulated ground acceleration waveforms are closely related to the basin structure. Interference of seismic waves in the basin strongly affects the distribution of maximum seismic waveforms, which may result in peak disasters during earthquakes. Peak disasters might be away from basin boundaries or earthquake faults. Seismic energy transmitted into the basin from the bedrock can hardly penetrate the bottom of the basin and then travel back into the bedrock region.The seismic energy is absorbed by basin media, and transferred into the kinematical energy of seismic waves with great amplitude in the basin. Seismic waves between basins may result in serious damage to buildings over the basin. This is significant for aseismatic research. Geological surveys in and around urban areas would benefit aseismatic research and mitigation of seismic disasters of a city. Such geological surveys should involve seismic velocity structure in the media above the bedrock besides such subjects as active faults and geological structure.
机译:在本研究中,利用具有交错网格RFFT微分的伪谱方法,对异质介质中的地震波传播进行了数值模拟,以弄清盆地结构区域中强地面运动复杂分布特征的原因。结果表明,模拟的地面加速度波形的最大振幅与盆地结构密切相关。流域内地震波的干扰极大地影响了最大地震波形的分布,可能会在地震期间造成峰值灾害。高峰灾害可能远离盆地边界或地震断层。从基岩传递到盆地的地震能量几乎不能穿透盆地底部,然后又传播回基岩区域。地震能量被盆地介质吸收,并转化为盆地中振幅较大的地震波的运动能。 。盆地之间的地震波可能会严重破坏盆地上方的建筑物。这对于抗震研究意义重大。城市及其周围地区的地质调查将有利于减震研究和减轻城市的地震灾害。除了活动断层和地质结构等主题外,这种地质调查还应涉及基岩上方介质中的地震速度结构。

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