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首页> 外文期刊>Journal of environmental & engineering geophysics >Review of Geophysical Exploration on Mined-out Areas and Water Abundance
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Review of Geophysical Exploration on Mined-out Areas and Water Abundance

机译:矿区和水资源丰度的地球物理勘探研究综述

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With the increase in mining depth, the presence of goafs has become increasingly severe in mine safety. The accurate and effective detection of underground goafs and their water abundance is the key to ensure the safety of mine production. On the basis of the relevant research, this paper defines different goaf types from the perspective of geophysical exploration and discusses the geophysical prerequisites for goaf detection. DC methods, electromagnetic methods, seismic methods, and other geophysical methods on the ground and in the subsurface are reviewed and summarized using the method's principle, research status, and technical features. Research progress on the geophysical methods in goafs and their water abundance detection are introduced, including the electrical source short-offset transient electromagnetic method (SOTEM), the wave-field transformation and synthetic aperture of the transient electromagnetic method, and comprehensive detection. At the end of the paper, a direction for the development of coal mined-out areas and their water abundance detection is put forward, including information fusion technology, ground-airborne electromagnetic methods, magnetic resonance sounding (MRS), surface-borehole transient electromagnetic method, surfaceborehole seismic methods, and seismic while tunneling technology. The application prospects of these methods are discussed, and the results of this study are expected to considerably improve the location precision and resolution of the goaf detection on the basis of the implications of these techniques.
机译:随着开采深度的增加,采空区的存在对矿山安全的影响越来越大。准确有效地检测地下采空区及其水丰度是保证矿山生产安全的关键。在相关研究的基础上,本文从地球物理勘探的角度界定了不同的采空区类型,并探讨了采空区探测的物探前提条件。综述了地面和地下的直流方法、电磁方法、地震方法等地球物理方法,并结合该方法的原理、研究现状和技术特点进行了总结。介绍了采空区地球物理方法及其水丰度探测的研究进展,包括电源短偏移瞬态电磁法(SOTEM)、瞬态电磁法的波场变换和合成孔径以及综合探测。最后,提出了采煤区及其水丰度探测的发展方向,包括信息融合技术、地机电磁方法、磁共振测深(MRS)、地表井孔瞬态电磁法、地井地震法和随开挖地震技术。讨论了这些方法的应用前景,并期望本研究的结果能够基于这些技术的意义,大大提高采空区探测的定位精度和分辨率。

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