Detecting voids in a 0.6 m coal seam, 7 m deep, using seismic reflection

Richard D. Miller, Don W. Steeples
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引用次数: 70

Abstract

Surface collapse over abandoned subsurface coal mines is a problem in many parts of the world. High-resolution P-wave reflection seismology was successfully used to evaluate the risk of an active sinkhole to a main north-south railroad line in an undermined area of southeastern Kansas, USA. Water-filled cavities responsible for sinkholes in this area are in a 0.6 m thick coal seam, 7 m deep. Dominant reflection frequencies in excess of 200 Hz enabled reflections from the coal seam to be discerned from the direct wave, refractions, air wave, and ground roll on unprocessed field files. Repetitive void sequences within competent coal on three seismic profiles are consistent with the “room and pillar” mining technique practiced in this area near the turn of the century. The seismic survey showed that the apparent active sinkhole was not the result of reactivated subsidence but probably erosion.

利用地震反射探测7 m深0.6 m煤层的空洞
废弃地下煤矿的地表塌陷在世界上许多地方都是一个问题。高分辨率p波反射地震学成功地用于评估美国堪萨斯州东南部一个破坏地区南北铁路主干线的活动性天坑的风险。造成该地区陷落孔的充水空腔位于厚0.6 m、深7 m的煤层中。超过200 Hz的主反射频率可以从未处理的现场文件上的直接波、折射波、空气波和地滚波中识别出煤层的反射。3条地震剖面上可采煤内的重复空洞序列与本地区在世纪之交采用的“房柱”采矿技术相吻合。地震调查表明,明显的活动天坑不是重新沉陷的结果,而可能是侵蚀的结果。
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