埃及东部沙漠Wadi Natash浅层断裂构造控制下的数值场址谱放大

M. Thabet
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引用次数: 0

摘要

Wadi Natash地区在15 ~ 10hz、10 ~ 7hz和7 ~ 5hz三个频带宽度上呈现出场址频谱放大模式。这些放大模式是在50米深度处传播的S波的二维等效线性数值模拟结果。发现横波的传播方向与断裂面倾斜方向平行。此外,在正断层和逆断层上得到的放大模式往往高度依赖于频带宽度和断层几何参数。最大放大因子表明在上覆断裂带层产生非常高的导S波能量。研究结果表明,S波的引导效率与断层类型及其相关参数(断层带宽度、断层层间连续性等)和频带宽度密切相关。
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Numerical Site Spectral Amplification Due to Structural Control of Shallow Faults in Wadi Natash, Eastern Desert, Egypt
Site spectral amplification patterns at Wadi Natash area are exhibited in three frequency band widths of 15 ~ 10 Hz, 10 ~ 7 Hz, and 7 ~ 5 Hz. These amplification patterns result from numerical two-dimensional equivalent linear simulations of propagating S -waves at 50 m depth. The S -wave's propagation direction is found to be parallel to the dipping direction of the fault plane. Additionally, the resulted amplification patterns above both normal and reverse faults tend to be highly dependent on the frequency band width and fault geometrical parameters. The maximum amplification factors indicate producing very high guided S -wave's energy in the overlying fault zone layers. The present results suggest that S -wave's guiding efficiency is strongly dependent on the fault type and its relevant parameters, such as fault zone width and fault continuity in layers, and on the frequency band width.
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