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Lateral variations of shallow shear-velocity structure in southwestern Taiwan inferred from short-period Rayleigh waves

机译:短周期瑞利波推导的台湾西南部浅层剪切速度结构的横向变化

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摘要

Short-period fundamental-mode Rayleigh waves with periods of 1.1~5.5 sec were used to investigate the lateral variations of shallow-depth shear-wave velocity structure up to a depth of 8 km under southwestern Taiwan. Through a priori regionalization, the region was divided into three subregions from the west to the east, and then the regionalized group velocity for each subregion was determined by a standard least-squares technique. By the structure inversion, the study region had obviously lateral velocity variations, which systematically increased from the west region to the east one. On the whole, the shear-wave velocity in the Western Foothills was higher than that in the Western Coastal Pain. Additionally, the three subregions all had a shear-wave velocity of less than 3 km/sec with the lowest one in the Western Coastal Plain near the coast, related to the thick sediments. These results were rather consistent with the geological features. For depths larger than 4 km, the velocity-gradient varying with depth in the Western Foothills was lower than that in the Western Coastal Plain. This is likely to interpret the reason that the seismic waves cannot be easily trapped within the Western Foothills; thus the short-period surface waves are poorly developed in that region.
机译:利用周期为1.1〜5.5秒的短周期基模瑞利波,研究台湾西南部8 km以内浅深度剪切波速度结构的横向变化。通过先验区域划分,将该区域从西到东划分为三个子区域,然后使用标准最小二乘法确定每个子区域的区域化分组速度。通过结构反演,研究区的横向速度变化明显,从西部向东部逐渐增加。总体而言,西山麓地区的剪切波速度高于西海岸痛。此外,这三个次区域的剪切波速度均小于3 km / sec,与海岸附近的西部沿海平原中的剪切波速度最低,与厚的沉积物有关。这些结果与地质特征相当一致。对于大于4 km的深度,西部山麓丘陵的速度梯度随深度而变化,低于西部沿海平原。这很可能解释了地震波不容易被困在西山麓地区的原因。因此,该区域的短周期表面波发展较差。

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