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Identification of Double-layered Water filled Zones Using TEM: A Case Study in China

机译:利用透射电镜识别双层充水区:以中国为例

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摘要

At present in China, the use of the transient electromagnetic method (TEM) is emerging as a leading geophysical technique for exploration of water-filled zones in coal mines. These zones are more conductive than the host coal and are easy targets to map. However, there is a growing interest for the investigations of double-layered or multi-layered mined-out zones. Therefore, it is necessary to study the feasibility of TEM's abilities to detect double-layered, water-filled voids. In this study, the basic hydrogeological conditions of a survey area, located in the northern China, are described. The corresponding geophysical models of the single- and double-layered water-filled zones are developed from borehole logging data. Then, forward calculations of different models are carried out with 1D numerical simulations. The modeling results show that it is feasible for TEM to identify these types of targets under certain conditions, including instrument sensitivity, low resistivity for the water-filled zones, and shallower depths. Moreover, the field survey for locating double-layered water-filled zones in coal mines in the Datong region of Shanxi Province is verified by well drilling.
机译:目前,在我国,瞬态电磁法(TEM)正在成为煤矿充水带勘探的领先地球物理技术。这些区域比主煤更具导电性,并且很容易绘制目标。然而,人们对双层或多层开采区的调查越来越感兴趣。因此,有必要研究透射电镜探测双层、充满水的空隙的可行性。本文介绍了中国北方某调查区的基本水文地质条件。根据钻孔测井数据,建立了相应的单层和双层充水带地球物理模型。然后,通过一维数值模拟对不同模型进行正演计算。建模结果表明,TEM在一定条件下识别这些类型的目标是可行的,包括仪器灵敏度、充水区的电阻率低和较浅的深度。此外,通过钻井验证了山西省大同地区煤矿双层充水区定位的野外勘察结果。

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