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Site-specific ground motion simulation and seismic response analysis for microzonation of Nanded City, India

机译:印度楠德城微区划的场地特定地面运动模拟和地震响应分析

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摘要

We study strong ground motion characteristics and ground response analysis of different sites in Nanded City, India. Synthetic strong ground motion records are obtained for two scenario earthquakes of magnitude M 5.2 and M 6.8 in southern Peninsular India using the finite fault model. Shear-wave velocity averaged over top 30 m of the soil is obtained from multichannel analysis of surface wave survey at 60 sites at depths of 20-50 m below the ground surface. The sites in different parts of the city are characterized by peak ground acceleration (PGA) at the surface and bedrock level, 5 % damped response spectra at the ground surface and the amplification factor defined as the ratio of ground motion at the surface to that at the bedrock. The area east to the lineament is characterized by low V (S30) values ( 200 m/s), probably associated with Godavari River basin sediments with alluvial deposits, composed of brown clay with intercalated bands of sand and gravel. A relatively high PGA value at the surface of about 0.24 g for the M 5.2 target event and hence high ground motion amplification indicative of major damage are observed at sites E-NE to the lineament in the area that are associated with the top soil column consisting of unconsolidated river basin sediments with very low V (S30) values ( 200 m/s). The amplification factor for the city ranges from 3 to 8 for the highest target event of magnitude M 6.8. There is a strong lateral variation in PGA values at the surface for the part of the city lying to the east of the lineament and parallel to its trend, where a relatively high amplification factor of 6-8 is found at a dominant frequency of 1.5-2.5 Hz, which can be considered as a significant zone of amplification and hence areas with high seismic hazard. The site-specific response spectra show that the peak of spectral acceleration for different sites occurs around 3 Hz. There is a large spatial variation of spectral acceleration at any given frequency for the city. For example, site nos. 9 and 50 are characterized by a peak in spectral acceleration of 0.55 and 0.9 g, respectively, at 3 Hz frequency.
机译:我们研究了印度楠德市不同地点的强烈地面运动特征和地面响应分析。利用有限断层模型,获得了印度南部半岛南部M 5.2级和M 6.8级两种情景地震的合成强地面运动记录。通过对地表以下20-50 m深度的60个地点的表面波勘测进行多通道分析,可以获得在土壤顶部30 m处平均的剪切波速度。该城市不同地区的站点具有以下特征:地表和基岩水平处的峰值地面加速度(PGA),地表处5%的阻尼响应谱以及放大系数,其定义为地表处的地面运动与地面处的地面运动之比。基岩。沿线东部的特征是低的V(S30)值(<200 m / s),这可能与戈达瓦里河流域的沉积物有关,该沉积物具有冲积沉积物,该沉积物由棕色粘土组成,插有砂砾和砾石带。对于M 5.2目标事件,在地面上的PGA值相对较高,约为0.24 g,因此在与顶部土壤柱组成区域相关的区域E-NE处观测到指示重大破坏的高地面运动放大现象V(S30)值很低(<200 m / s)的未固结流域沉积物的数量。对于M 6.8级的最高目标事件,城市的放大系数在3到8之间。在沿线区域以东并平行于其趋势的部分城市,其表面的PGA值存在很大的横向变化,在1.5-主频率处发现相对较高的放大系数6-8。 2.5 Hz,可以认为是重要的放大区域,因此是地震危险性较高的区域。特定于站点的响应谱显示,不同站点的谱加速度峰值出现在3 Hz附近。在城市的任何给定频率下,频谱加速度的空间变化都很大。例如,站点编号。图9和图50的特征在于在3Hz频率下的光谱加速度的峰值分别为0.55和0.9g。

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