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Application of DInSAR for Short Period Monitoring of Initial Subsidence Due to Longwall Mining in the Mountain West United States

机译:DInSAR在美国西部山区长壁开采初始沉降的短期监测中的应用

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Differential Interferometric Synthetic Aperture Radar (DInSAR), a satellite-based remote sensing technique, has application for monitoring subsidence with high resolution over short periods. DInSAR uses radar images to measure centimeter-level surface displacements. In the images, ground resolution can be relatively high, with each data point (pixel) representing the average displacement over an area of several square meters. The image data are acquired regularly which allows subsidence to be monitored sequentially over short periods; imaging periods typically range from weeks to months. Monitoring subsidence over short periods with high spatial resolution has potential to provide insight into the dynamics of subsidence and into relationships between mine advance and subsidence. In this study, for three longwall mines in the western United States, initial subsidence occurring at the start of longwall advance is quantified over short periods (12 to 72 days). C-band interferometric wide swath Synthetic Aperture Radar (SAR) images from the Sentinel satellites are used to quantify the subsidence. Overall, the data show initial development of subsidence, expansion of the subsidence trough, and the advance of subsidence in the direction of mining.
机译:差分干涉合成孔径雷达(DInSAR)是一种基于卫星的遥感技术,已应用于在短期内以高分辨率监视沉降的应用。 DInSAR使用雷达图像来测量厘米级的表面位移。在图像中,地面分辨率可能相对较高,每个数据点(像素)代表几平方米面积的平均位移。定期采集图像数据,从而可以在短时间内连续监测沉降;成像期通常从几周到几个月不等。以高空间分辨率在短期内监控沉降,可能会提供对沉降动态以及矿山前进与沉降之间关系的深入了解。在这项研究中,对于美国西部的三座长壁矿山,在短时间内(12到72天)对在长壁推进开始时发生的初始沉降进行了量化。来自前哨卫星的C波段干涉宽幅合成孔径雷达(SAR)图像用于量化沉降。总体而言,数据显示了沉降的初步发展,沉降槽的扩大以及沉降在采矿方向上的发展。

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