首页> 外文期刊>International Journal of Disaster Risk Science >Site-Specific Zonation of Seismic Site Effects by Optimization of the Expert GIS-Based Geotechnical Information System for Western Coastal Urban Areas in South Korea
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Site-Specific Zonation of Seismic Site Effects by Optimization of the Expert GIS-Based Geotechnical Information System for Western Coastal Urban Areas in South Korea

机译:通过优化基于专家GIS的韩国西部沿海城市地区岩土工程信息系统,对地震现场影响进行特定地点分区

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Earthquake-induced disasters are often more severe over soft soils than over firm soils or rocks owing to the seismic site effects related to the amplification of ground motion. On a regional scale, such differences can be estimated by spatially predicting the subsurface soil thickness over the entire target area. Generally, soil deposits are deeper in coastal or riverside areas than in inland regions. In this study, the seismic site effects in the coastal metropolitan areas of Incheon and Bucheon, South Korea, were assessed to provide information on seismic hazards. Spatial prediction of geotechnical layers was performed for the entire study area within an advanced GIS framework. Approximately 7500 existing borehole records in the Incheon and Bucheon areas were gathered and archived into a GIS database. Surface geotechnical data were acquired from a walk-over survey. Based on the optimized geo-data, spatial zoning maps of site-specific seismic response parameters, based on multiscale geospatial modeling, were created and presented for use in a regional seismic mitigation strategy. Seismic zonation was also performed to determine site coefficients for seismic design over the entire target area and to compare them with each other. We verified that the geotechnical data based spatial zonation would be useful for seismic hazard mitigation.
机译:由于与地面运动放大有关的地震现场影响,软土地上的地震灾害通常比坚固的土壤或岩石更为严重。在区域范围内,可以通过在空间上预测整个目标区域的地下土壤厚度来估算这种差异。通常,沿海或河岸地区的土壤沉积物比内陆地区的土壤沉积物深。在这项研究中,评估了韩国仁川和富川沿海大都市地区的地震现场影响,以提供有关地震灾害的信息。在高级GIS框架内对整个研究区域进行了岩土层的空间预测。收集了仁川和富川地区约7500个现有的井眼记录,并将其存档到GIS数据库中。地表岩土数据是从步行调查中获得的。基于优化的地理数据,基于多尺度地理空间模型,创建了针对特定地点的地震响应参数的空间分区图,并提出了用于区域减震策略的方法。还进行了地震分区,以确定用于整个目标区域的地震设计的场地系数,并将它们相互比较。我们验证了基于岩土数据的空间分区将对减轻地震危险有用。

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