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首页> 外文期刊>Journal of spatial science >A collaborative virtual geographic environment for emergency dam-break simulation and risk analysis
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A collaborative virtual geographic environment for emergency dam-break simulation and risk analysis

机译:协作虚拟地理环境,用于紧急溃坝模拟和风险分析

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摘要

Since barrier lakes are affected by a highly changing and complex environment, it is always a great challenge to determine the proper actions that must be performed within a limited amount of time. Existing methods have some restrictions, such as the dispersed data resources and personnel, the loose model integration, and the complicated and unfriendly user interface, which results in low efficiency of dam-break risk assessment under emergency response conditions. These issues were addressed in this paper by constructing a collaborative virtual geographic environment (CVGE), which supports three levels of deeper applications including sharing of distributed resources, tightly geographic process simulation and visualisation analysis, and geographic collaboration. A virtual resource environment and mobile computing service were designed for the distributed resource sharing. A spatiotemporal process model based on cellular automata and parallel computing optimisation was proposed and integrated for real-time simulation and analysis of dam-break risk assessment of barrier lakes. A distributed virtual geographic scene and collaborative workflow were designed to improve the operational efficiency of the models with respect to initiation, computation, output visualisation and analysis. A prototype system was developed to support collaborative dam-break risk assessment of the Xiaojiaqiao barrier lake in Anxian County, Sichuan Province, China. The experimental results indicate that the proposed method could efficiently improve the efficiency of dam-break risk assessment on data supporting, model computation, and visualisation analysis.
机译:由于屏障湖泊受瞬息万变的复杂环境的影响,因此确定必须在有限的时间内执行的正确操作始终是一个巨大的挑战。现有方法存在数据资源和人员分散,模型集成松散,用户界面复杂,不友好等局限性,导致应急响应条件下大坝溃坝风险评估效率低下。本文通过构建协作虚拟地理环境(CVGE)解决了这些问题,该环境支持三个更深层次的应用程序,包括共享分布式资源,紧密的地理过程仿真和可视化分析以及地理协作。设计了虚拟资源环境和移动计算服务用于分布式资源共享。提出了一种基于元胞自动机和并行计算优化的时空过程模型,并将其集成到障碍湖溃坝风险评估的实时仿真和分析中。设计了分布式虚拟地理场景和协作工作流,以提高模型在初始化,计算,输出可视化和分析方面的运营效率。开发了一个原型系统,以支持对中国四川省安县的小家桥障碍湖的溃坝风险进行协作评估。实验结果表明,该方法可以有效提高大坝溃坝风险评估的数据支持,模型计算和可视化分析效率。

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