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首页> 外文期刊>International Journal of Geosciences >Seismic Site Specific Study for Seismic Microzonation: A Way Forward for Risk Resiliency of Vital Infrastructure in Sikkim, India
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Seismic Site Specific Study for Seismic Microzonation: A Way Forward for Risk Resiliency of Vital Infrastructure in Sikkim, India

机译:地震岩石地震遗址的特异性研究:印度锡克基姆至关重要基础设施风险弹性的前进

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Seismic Microzonation comprising study of site specific seismic Microtremor ( H/V ratio) is deployed to generate seismological parameters (Peak Frequency, Peak Amplification, Site Vulnerability Index) that may help estimate requisite factors for sound building design codes that can be used to construct risk resilient infrastructures. In this paper the site of Pakyong, Sikkim, India has been investigated by dividing it into three differed zones (Zone 1, Zone II, Zone III). The study area is associated with site amplification factor varying from 1.47 to 11.49 with corresponding frequency variations from 0.5 Hz - 12.5 Hz in which site vulnerability index found varied from 0.2 to 220.6. The anomalous subsurface formation with its high amplification corresponds to the centre of the Pakyong sites having conspicuous trend in NW-SE direction suggesting the existence of geological formations of Chlorite, Phyllite with intercalations of Quartzite beneath the centre of Pakyong site. The risk associated with vulnerability index for different zones maintains its variability as Zone I > Zone II > Zone III, indicating the low vulnerability index values are attributed to compact parts of the sub-surface materials with less amplifications whilst high vulnerability index of the site corresponds to relatively lower strength of the sub-surface materials and soft sediments underlying the Pakyong site which can be used for constructing risk resilient structure by enhancing the stiffness coefficient of the sub-surface by providing plausible engineering solutions for the purpose.
机译:组织地震微微谐振术部署了现场特异性地震微调(H / V比率)的研究,以产生可帮助估计可用于构建风险的声音构建设计代码的必要因素的地震参数(峰值频率,峰值放大,位点漏洞指数。弹性基础设施。在本文中,通过将其分成三个不同的区域(第1区,第II区,第三区),研究了Pakyong,Sikkim,印度的遗址。研究区与从1.47至11.49不同的现场扩增因子相关,其具有0.5 Hz-12.5 Hz的相应频率变化,其中发现的位点脆弱性指数从0.2到220.6变化。具有其高扩增的异常地下形成对应于北京方向具有显着趋势的Pakyong网站的中心,表明亚氯酸盐的地质形成存在,具有朴仁遗址下方的石英岩嵌段。与不同区域的脆弱性指数相关的风险将其变化为区域I>区域II>区域III,指示低漏洞指数值归因于具有较少放大的子表面材料的紧凑型,而站点的高脆弱性指数对应于较少的扩增底表面材料的强度和潜在的沉积物的强度,可以用于通过为此目的提供合理的工程解决方案来通过提高子表面的刚度系数来构造风险弹性结构。

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