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首页> 外文期刊>Wiley Interdisciplinary Reviews. Developmental Biology >Geospatial Big Data-Based Geostatistical Zonation of Seismic Site Effects in Seoul Metropolitan Area
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Geospatial Big Data-Based Geostatistical Zonation of Seismic Site Effects in Seoul Metropolitan Area

机译:首尔大都市区地震现场效应的地理空间大数据基于地震统计分区

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摘要

Seismic site effects are influenced mainly by geospatial uncertainties corresponding to geological or geotechnical spatial variance. Therefore, the development of a geospatial database is essential to characterize site-specific geotechnical information in multiscale areas and to optimize geospatial zonation methods with potentially high degrees of spatial variability based on trial-and-error geostatistical assessments. In this study, a multi-source geospatial information framework, which included the construction of a big data platform, estimation of geostatistical density, optimization of the geostatistical interpolation method, assessment of seismic site effects, and determination of geospatial zonation for decision making, was established. Then, this framework was applied to the Seoul metropolitan area, South Korea. The GIS-based framework was established to develop the geospatial zonation of site-specific seismic site effects before considering the local characteristics of site effects dependent on topographic or geological conditions, based on a geospatial big-data platform in Seoul. The zonal conditions were composed of geo-layers, site effect parameters, and other multi-source geospatial maps for each administrative area, and infrastructure was determined based on the integration of the optimized geoprocessing framework.
机译:地震位点效应主要受到对应于地质或岩土空间空间方差的地理空间不确定性的影响。因此,地理空间数据库的开发对于在多尺度区域中表征特定于特地岩土信息的必不可少,并根据试验和错误地质统计学评估优化具有潜在高空间变异性的地理空间区分区分区方法。在这项研究中,一种多源地理空间信息框架,包括建设大数据平台,估计地质统计密度,优化地质统计插值方法,地震局部效应的评估,以及决策地理空间分区的测定,是决策的已确立的。然后,该框架适用于韩国首尔大都市地区。建立了基于GIS的框架,以在考虑依赖于首尔地理空间大数据平台的地形或地质条件的现场效应的局部特征之前,开发现场特异性地震部位效应的地理空间分区。区域条件由地理层,站点效应参数和每个管理区域的其他多源地理空间地图组成,基于优化的地理处理框架的集成来确定基础设施。

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