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A Synthetic Method for Atmospheric Diffusion Simulation and Environmental Impact Assessment of Accidental Pollution in the Chemical Industry in a WEBGIS Context

机译:WEBGIS环境下化学工业大气扩散模拟及环境污染环境影响评价的综合方法

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摘要

The chemical industry poses a potential security risk to factory personnel and neighboring residents. In order to mitigate prospective damage, a synthetic method must be developed for an emergency response. With the development of environmental numeric simulation models, model integration methods, and modern information technology, many Decision Support Systems (DSSs) have been established. However, existing systems still have limitations, in terms of synthetic simulation and network interoperation. In order to resolve these limitations, the matured simulation model for chemical accidents was integrated into the WEB Geographic Information System (WEBGIS) platform. The complete workflow of the emergency response, including raw data (meteorology information, and accident information) management, numeric simulation of different kinds of accidents, environmental impact assessments, and representation of the simulation results were achieved. This allowed comprehensive and real-time simulation of acute accidents in the chemical industry. The main contribution of this paper is that an organizational mechanism of the model set, based on the accident type and pollutant substance; a scheduling mechanism for the parallel processing of multi-accident-type, multi-accident-substance, and multi-simulation-model; and finally a presentation method for scalar and vector data on the web browser on the integration of a WEB Geographic Information System (WEBGIS) platform. The outcomes demonstrated that this method could provide effective support for deciding emergency responses of acute chemical accidents.
机译:化学工业对工厂人员和附近居民构成潜在的安全风险。为了减轻潜在的损害,必须开发一种用于紧急响应的综合方法。随着环境数值模拟模型,模型集成方法和现代信息技术的发展,已经建立了许多决策支持系统(DSS)。但是,现有系统在综合仿真和网络互操作方面仍然存在局限性。为了解决这些限制,将成熟的化学事故模拟模型集成到WEB地理信息系统(WEBGIS)平台中。实现了完整的应急响应工作流程,包括原始数据(气象信息和事故信息)管理,各种事故的数值模拟,环境影响评估以及模拟结果的表示。这样就可以对化学工业中的急性事故进行全面,实时的模拟。本文的主要贡献是基于事故类型和污染物的模型集的组织机制。一种用于多事故类型,多事故物质和多仿真模型的并行处理的调度机制;最后是在集成了Web地理信息系统(WEBGIS)平台的Web浏览器上显示标量和矢量数据的方法。结果表明,该方法可为确定急性化学事故的应急响应提供有效的支持。

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