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Basement topography of the Kathmandu Basin using microtremor observation

机译:利用微震观测加德满都盆地地下室地形

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摘要

Kathmandu Valley, an intermontane basin of the Himalaya, has experienced many destructive earthquakes in the past. The observations of the damage pattern during the 1934 Earthquake (M_w = 8.1), in particular, suggest that the spectral ground amplification due to fluvio-lacustrine sediments plays a major role in intensifying the ground motion in the basin. It is, therefore, imperative to conduct a detailed study about the floor variation of sediments in the basin. In this paper, a preliminary attempt was made to estimate the thickness of soft sediment in the Kathmandu Basin using microtremor observations. The measurements of microtremors were carried out at 172 sites spaced at a grid interval of 1 km. The results showed that the predominant frequency varies from 0.488 Hz to 8.9 Hz. A non-linear regression relationship between resonance frequency and sediment depth was proposed for the Kathmandu Basin. The thickness of lacustrine sediments at various points in the basin was estimated using the proposed equation, and then the estimated thickness was used to plot a digital elevation model of the basement topography and cross profiles of the sediment distribution in the basin. The results were validated by correlating the estimated sediment thickness with geology and geomorphology of the study area.
机译:喜马拉雅山间流域的加德满都谷地过去曾遭受过许多破坏性地震。特别是对1934年地震(M_w = 8.1)期间破坏模式的观察表明,由潮湖沉积物引起的频谱地面放大在增强盆地的地面运动方面起着重要作用。因此,有必要对流域内沉积物的底面变化进行详细研究。本文通过微震观测,初步估算了加德满都盆地的软沉积物厚度。微震的测量是在以1 km的网格间隔隔开的172个位置进行的。结果表明,主要频率在0.488 Hz至8.9 Hz之间变化。提出了加德满都盆地共振频率与沉积深度之间的非线性回归关系。使用提出的方程式估算盆地中各个点的湖相沉积物厚度,然后将估算的厚度用于绘制地下室地形的数字高程模型和盆地沉积物分布的剖面图。通过将估算的沉积物厚度与研究区的地质和地貌联系起来,验证了结果。

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