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A Mine Environmental GIS:Framework,Key Techniques,and Case Study

机译:矿山环境GIS:框架,关键技术和案例研究

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摘要

The large-scale coal mining has caused serious environmental pollution and ecological damage in the coal mining areas in China.The serious conditions are listed as below:the geological disasters such as landslide,dilapidation,mud-rock flow and so on aroused by mining subsidence;the side effects such as land occupying,side sloping,filtrating and raised dust brought by the waste rock and gangue heap;the ruin of the water cycle system when the groundwater is drained and the waste water is discharged;the air and noise pollution during the coal mining and the transporting processes.Based on the characteristics of acquisition and management of environmental information in China as well as the theory and technology of environmental inforrnatics and GIS,the Mine Environmental GIS(MEGIS)was studied and developed,and some key techniques were investigated.The objective of MEGIS is to manage,inquire and analyze environmental data and provide users with decision support for environmental protection.In the MEGIS,both the Point Mode and the Region Mode of the Gaussian Air Diffusion Model are used to simulate airpollution,and the water quality model is used to simulate the water pollution in 1-dimensional and 2-dimensional.The spatial discrete concentration points are used to build up Triangulated Irregular Network (TIN)which creates a new isoline or isosurface for environmental analysis in mining areas.Mining subsidence simulation and prediction model was used to analyze ground surface subsidence caused by mining.Using the proposed MEGIS it is much easier to update,manage and analyze environmental data,further to support environmental management decision-making.
机译:大规模采煤在我国煤矿地区造成了严重的环境污染和生态破坏。严重的情况如下:开采沉陷引起的滑坡,塌陷,泥石流等地质灾害。 waste石,石堆放引起的占地,边坡,渗滤,扬尘等副作用;排空地下水,排放废水时水循环系统的破坏;结合我国环境信息获取与管理的特点,结合环境信息学和GIS的理论与技术,研究开发了矿山环境GIS,并提出了一些关键技术。 MEGIS的目的是管理,查询和分析环境数据,并为用户提供环境保护的决策支持在MEGIS中,使用高斯空气扩散模型的点模式和区域模式来模拟空气污染,使用水质模型来模拟一维和二维水污染。空间离散浓度利用这些点建立不规则三角网(TIN),从而为矿区环境分析创建新的等值线或等值面。采矿沉陷模拟和预测模型用于分析采矿引起的地表沉陷。更易于更新,管理和分析环境数据,进一步支持环境管理决策。

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