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首页> 外文期刊>Journal of Applied Remote Sensing >Using temporarily coherent point interferometric synthetic aperture radar for land subsidence monitoring in a mining region of western China
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Using temporarily coherent point interferometric synthetic aperture radar for land subsidence monitoring in a mining region of western China

机译:中国西部矿区土地沉降监测的临时相干点干涉合成孔径雷达

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摘要

Yuyang mine is located in the semiarid western region of China where, due to serious land subsidence caused by underground coal exploitation, the local ecological environment has become more fragile. An advanced interferometric synthetic aperture radar (InSAR) technique, temporarily coherent point InSAR, is applied to measure surface movements caused by different mining conditions. Fifteen high-resolution TerraSAR-X images acquired between October 2, 2012, and March 27, 2013, were processed to generate time-series data for ground deformation. The results show that the maximum accumulated values of subsidence and velocity were 86 mm and 162 mm/year, respectively; these measurements were taken above the fully mechanized longwall caving faces. Based on the dynamic land subsidence caused by the exploitation of one working face, the land subsidence range was deduced to have increased 38 m in the mining direction with 11 days' coal extraction. Although some mining faces were ceased in 2009, they could also have contributed to a small residual deformation of overlying strata. Surface subsidence of the backfill mining region was quite small, the maximum only 21 mm, so backfill exploitation is an effective method for reducing the land subsidence while coal is mined.
机译:余阳矿位于中国半干旱西部地区,由于地下煤炭剥削造成的严重土地沉降,当地生态环境变得更加脆弱。应用先进的干涉性合成孔径雷达(INSAR)技术,暂时相干点,以测量由不同采矿条件引起的表面运动。 2012年10月2日至2013年3月27日之间获得的十五个高分辨率Terrasar-X图像被处理以生成用于地面变形的时间序列数据。结果表明,沉降和速度的最大累积值分别为86毫米和162毫米/年;在综合机械化的长壁塌方面上采用这些测量。基于一个工作面利用引起的动态土地沉降,推导出土地沉降范围,以11天的煤提取在采矿方向上升38米。虽然2009年停止了一些采矿面,但它们也可能导致覆盖层的小残余变形。回填采矿区域的表面沉降相当小,最大仅为21毫米,因此回填剥削是降低煤炭煤炭沉降的有效方法。

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