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Seismic Microzonation Study of South Asian Cities and Its Implications to Urban Risk Resiliency under Climate Change Scenario

机译:气候变化情景下,南亚城市地震微微分析及其对城市风险弹性的影响

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摘要

In this study, an attempt has been made to review the existing framework of earthquake risk resiliency for the urban agglomerates of South Asian earthquake-prone countries (Afghanistan; Bangladesh; Bhutan, India, and Pakistan) with aim of suggesting a plausible model for earthquake risk resiliency for urban agglomerates of the region under the influence of uncontrollable climate change scenario. We demonstrated that the existing infrastructures can be retrofitted to mitigate and reduce the nature and extent of damages to structures to the greater extent whilst site response based comprehensive seismic microzonation is very much required for new settlements and for long-term sustainable urban planning by adopting multi-disciplinary investigations using integrated tools consisted of geophysical, geological, and geotechnical methodologies, which in turn help understand how and why underneath sub-surface layers get amplified to cause destruction of buildings and severe damages to critical infrastructures of South Asian Cities. It is inferred that implementation of fourth level comprehensive seismic Micro, Nano, Pico and Femto zonation study for almost all strategic cities of South Asia is a need of an hour in particular, and of the seismically prone regions of the world, in general, which would be helpful for generating a series of new parameters for development of multi-dimensional risk resilient building design codes for the safer and sustainable infrastructures of urban settlement. The methodology has wide-scale applicability to different kinds of structures and typology of the buildings.
机译:在这项研究中,已经尝试审查南亚地震 - 普遍国家(阿富汗;孟加拉国)的城市凝聚力的现有地震风险框架(阿富汗;不丹,印度和巴基斯坦),目的是建议地震典雅模型在无法控制的气候变化情景的影响下,该地区城市凝聚量的风险弹性。我们证明现有的基础设施可以改进,以减轻和降低结构的损害性质和程度,而在基于现场响应的综合地震微微态度,新的定居点以及通过采用多重 - 使用综合工具的专业调查包括地球物理,地质和岩土工业方法,反过来有助于了解亚表面层下方如何以及为何被放大,导致破坏建筑物和对南亚城市关键基础设施的严重损害。推测,实施四级综合地震微观,纳米,微微和毫微微区分研究,几乎所有战略城市都需要一个小时,以及世界的地震普通地区,一般来说有助于为开发多维风险的开发,为城市定居点的更安全和可持续基础设施开发多维风险建筑设计码的一系列新参数。该方法对建筑物的不同种类结构和类型学具有广泛的适用性。

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