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首页> 外文期刊>Engineering Geology >Site response of deep alluvial deposits in the northern coast of Izmir Bay (Turkey) and a microzonation study based on geotechnical aspects
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Site response of deep alluvial deposits in the northern coast of Izmir Bay (Turkey) and a microzonation study based on geotechnical aspects

机译:伊兹密尔湾(土耳其)北海岸深冲积物的场地响应和基于岩土工程的微区划研究

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摘要

Izmir, the third largest city with fast economically growths, in western Turkey, has experienced various moderate-to-large historical and recent earthquakes. Karsryaka, Cigli districts and their surrounding areas, located in northern coast of Izmir Bay and one of the major economically and residentially developing districts, are subject to strong shakings due to deep sediments and shallow-soft liqueflable soils in the area. The purpose of this study is to develop a comprehensive microzonation model based on geotechnical aspects and put forth this model for use of residential developments in the area. The properties and dynamic behavior of the Quaternary alluvial soils in the study area were assessed using geotechnical and geophysical data gathered from 461 boreholes and 205 microtremor recordings. One-dimensional dynamic site response analyses were performed with Equivalent-linear Earthquake site Response Analysis (EERA) software by using the simulated earthquake time histories. The maximum ground surface acceleration values obtained from the dynamic analyses were also used for liquefaction potential assessment. Soil classification, dynamic soil properties under different earthquake excitations, spectral amplification, variation of soil predominant period, and liquefaction potential of the study area were evaluated and mapped. The produced maps showed that highest earthquake hazardous soil conditions are located along the shoreline and in the densely populated section of the southwestern part of the study area
机译:伊兹密尔(Izmir)是土耳其西部经济发展迅速的第三大城市,曾经历过各种中等到大型的历史和近期地震。位于伊兹密尔湾北部沿海地区和主要的经济和住宅开发区之一的Karsryaka,Cigli地区及其周边地区,由于该地区深厚的沉积物和浅软的可液化土壤而遭受强烈震动。这项研究的目的是基于岩土工程方面开发一个综合的微区带模型,并提出该模型用于该地区的住宅开发。使用从461个钻孔和205个微震记录中收集的岩土工程和地球物理数据,评估了研究区第四纪冲积土的特性和动力学行为。使用等效线性地震现场响应分析(EERA)软件,通过模拟地震时间历史记录进行一维动态现场响应分析。从动态分析获得的最大地面加速度值也用于液化潜力评估。评估并绘制了土壤分类,不同地震激发下的动态土壤特性,光谱放大,土壤优势期的变化以及液化潜力的地图。生成的地图显示,地震危险性最高的土壤条件位于海岸线和研究区域西南部的人口稠密地区

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