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国土资源遥感  2015, Vol. 27 Issue (2): 139-145    DOI: 10.6046/gtzyyg.2015.02.22
  技术应用 本期目录 | 过刊浏览 | 高级检索 |
青海省聚乎更煤矿区矿山地质环境遥感监测及质量评价
马世斌1,2, 李生辉1,2, 安萍1,2, 杨文芳1,2, 辛荣芳1,2
1. 青海省地质调查院, 西宁 810012;
2. 青海省青藏高原北祁连地质过程与矿产资源重点实验室, 西宁 810012
Remote sensing monitoring and quality evaluation for the mine geological environment of the Juhugeng coal mining area in Qinghai Province
MA Shibin1,2, LI Shenghui1,2, AN Ping1,2, YANG Wenfang1,2, XIN Rongfang1,2
1. Institute of Geological Survey of Qinghai Province, Xining 810012, China;
2. Qinghai Key Laboratory for North Qilian Geological Process and Mineral Resources of Tibetan Plateau, Xining 810012, China
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摘要 以2011年和2012年获取的2期IKONOS2数据为信息源,在波段组合、数据融合和正射纠正等图像预处理基础上,针对矿山地质环境问题进行人机交互解译,对青海省木里煤田聚乎更煤矿区因煤矿开发而引发的矿山地质环境问题及矿山环境恢复治理情况进行了遥感调查与监测; 并将矿山环境调查结果与矿区基础地理及地质资料相结合,根据矿区环境的实际状况,合理选择矿山地质环境评价因子及权重指标,对该矿区的矿山地质环境质量进行了动态评价。结果表明: 聚乎更煤矿区的矿山地质环境质量呈明显下降的趋势,2012年采矿活动对矿山地质环境有影响的面积较2011年增加了近10 km2,主要是地表植被直接或间接地受到破坏,且矿山环境恢复治理工作进程远远跟不上矿山环境恶化速度。
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张伟阁
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贾洋
关键词 地形校正Three Factor+C模型坡度分级离散系数同质系数    
Abstract:Taking the two-period IKONOS2 data acquired in 2011 and 2012 as the information sources, based on the band combination, data fusion and ortho-rectification, the authors made interactive interpretation of the mine geological environment problems, carried out the remote sensing investigation and monitoring work on coal mine environment problems and mine environmental recovery governance of the Juhugeng coal mining area in the Yushania coalfield of Qinghai, combined the mine environment survey results with the geographic and geological data of the mining area, and selected mine geological environment evaluation factors and weight indicators according to the environment condition of the mining area. The dynamic evaluation was conducted for the quality of mine geological environment. The results show that the mine geological environment quality of the Juhugeng coal mining area exhibits a downward trend, the area that affected the mine geological environment by mining activities in 2012 increased by nearly 10 km2 as compared with that in 2011, the vegetation was destroyed directly or indirectly, and the process of the work to control mine recovery couldn't keep up with the process of mine environmental degradation.
Key wordstopographic correction    Three Factor +C model    slope grading    dispersion index    homogeneity coefficient
收稿日期: 2014-03-06      出版日期: 2015-03-02
:  TP79  
基金资助:中国地质调查局地质调查项目"青海省重点矿集区矿产资源开发遥感调查与监测"(编号: 1212011121286)资助。
作者简介: 马世斌(1983-),男,工程师,主要从事遥感地质及遥感图像处理方面的研究。Email:msb19831010711@sohu.com。
引用本文:   
马世斌, 李生辉, 安萍, 杨文芳, 辛荣芳. 青海省聚乎更煤矿区矿山地质环境遥感监测及质量评价[J]. 国土资源遥感, 2015, 27(2): 139-145.
MA Shibin, LI Shenghui, AN Ping, YANG Wenfang, XIN Rongfang. Remote sensing monitoring and quality evaluation for the mine geological environment of the Juhugeng coal mining area in Qinghai Province. REMOTE SENSING FOR LAND & RESOURCES, 2015, 27(2): 139-145.
链接本文:  
https://www.gtzyyg.com/CN/10.6046/gtzyyg.2015.02.22      或      https://www.gtzyyg.com/CN/Y2015/V27/I2/139
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