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基于GIS和神经网络模型的场地地震液化势风险评价 被引量:2
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作者 汤皓 陈国兴 《武汉大学学报(信息科学版)》 EI CSCD 北大核心 2007年第8期727-730,共4页
基于组件式GIS(COMGIS)技术,调用水平成层土地震反应分析程序SHAKE91来实现设定地震下地震动影响场的模拟;调用Matlab神经网络工具箱来完成场地地震液化势评价模型在COMGIS系统中的模块化;利用GIS技术对评价结果进行空间复合,给出场地... 基于组件式GIS(COMGIS)技术,调用水平成层土地震反应分析程序SHAKE91来实现设定地震下地震动影响场的模拟;调用Matlab神经网络工具箱来完成场地地震液化势评价模型在COMGIS系统中的模块化;利用GIS技术对评价结果进行空间复合,给出场地潜在的地层液化势空间分布图。 展开更多
关键词 场地地震液化势 风险评价 组件式GIS人工神经网络模型 MATLAB软件
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Intensity measures for seismic liquefaction hazard evaluation of sloping site
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作者 陈志雄 程印 +2 位作者 肖杨 卢谅 阳洋 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3999-4018,共20页
This work investigates the correlation between a large number of widely used ground motion intensity measures(IMs) and the corresponding liquefaction potential of a soil deposit during earthquake loading. In order to ... This work investigates the correlation between a large number of widely used ground motion intensity measures(IMs) and the corresponding liquefaction potential of a soil deposit during earthquake loading. In order to accomplish this purpose the seismic responses of 32 sloping liquefiable site models consisting of layered cohesionless soil were subjected to 139 earthquake ground motions. Two sets of ground motions, consisting of 80 ordinary records and 59 pulse-like near-fault records are used in the dynamic analyses. The liquefaction potential of the site is expressed in terms of the the mean pore pressure ratio, the maximum ground settlement, the maximum ground horizontal displacement and the maximum ground horizontal acceleration. For each individual accelerogram, the values of the aforementioned liquefaction potential measures are determined. Then, the correlation between the liquefaction potential measures and the IMs is evaluated. The results reveal that the velocity spectrum intensity(VSI) shows the strongest correlation with the liquefaction potential of sloping site. VSI is also proven to be a sufficient intensity measure with respect to earthquake magnitude and source-to-site distance, and has a good predictability, thus making it a prime candidate for the seismic liquefaction hazard evaluation. 展开更多
关键词 soil liquefaction liquefaction potential index intensity measure(IM) pore pressure generation seismic response prediction
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