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GIS-BASED EARTHQUAKE DISASTER PREDICTION AND OPTIMUM PATH ANALYSIS FOR THE URBAN ROAD TRANSIT SYSTEM

机译:基于GIS的城市道路交通系统地震灾害预测与最优路径分析。

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In the earthquake disaster prediction of the urban road transit system (simplified as URTS), for bridge, 9 factors including the earthquake intensity, ground soil type failure extent of ground soil, superstructure type, the height, type and material of bridge pier, span length and span number of bridge were considered; for road, 7 factors including the primary earthquake intensity, soil type of the roadbed and ground, failure extent of ground soil, roadbed type, roadbed height and designed earthquake intensity were considered. The computer program for predicting the earthquake disaster of URTS was implanted in the GIS platform "Information System for Earthquake Resistance and Disaster Mitigation", which was developed based on SuperMap Objects. The prediction of earthquake disaster for the global or the arbitrary partial road sections within the URTS could be performed. Introducing the Warshall algorithm in Chart Theory, the connective reliability analysis for URTS was performed, and the connective probability matrix for road sections was provided. Considering the connective probability of URTS, adopting the method that each road section were designated a weight according its length, the optimum path between the arbitrary two points could be calculated and displayed in the interface. The calculation and analysis above mentioned were visually realized and demonstrated based on the GIS platform developed.
机译:在城市道路交通系统(简称URTS)的地震灾害预测中,桥梁的地震烈度,地基土类型破坏程度,上层建筑类型,桥墩的高度,类型和材料,跨度等9个因素考虑桥梁的长度和跨度;对于道路,考虑了主要地震烈度,路基和地面的土壤类型,地基土的破坏程度,路基类型,路基高度和设计地震强度等7个因素。在基于SuperMap Objects开发的GIS平台“抗震减灾信息系统”中植入了用于预测URTS地震灾难的计算机程序。可以对URTS内的全球或任意部分路段进行地震灾害的预测。在图表理论中引入Warshall算法,对URTS进行了连接可靠性分析,并提供了路段的连接概率矩阵。考虑到URTS的连接概率,采用根据路段的长度为其指定权重的方法,可以计算任意两点之间的最佳路径并显示在界面中。基于所开发的GIS平台,可以直观地实现和演示上述计算和分析。

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