RESEARCH ON RELATIONSHIP BETWEEN ELECTRICAL RESISTANCE TOMOGRAPHY AND THE MULTIPLE-SCALE SIZE AND DEPTH OF ROCK FRACTURE

F. Jing, Li Xiaozhao, A. Tarantino, H. Zhen, B. C. Lopes
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Abstract

Multiple sets of cracks exist in the fault fracture zone, damage zone and even intact rock mass, resulting in poor conductivity and high permeability of the hard rock fissure seepage channels. There are likely to become potential groundwater migration channels in the future, so that the underground engineering is facing huge challenges. To more accurately grasp the characteristics of the permeability of rock mass and fracture, it is extremely important to get hold of the phenomena of internal structure model, genetic mechanism and dynamics principle in the multiple scales size and depth of rock fracture. In assurance of an accurate analysis result in the multiple scales of rock mass fracture, mastering the principles and patterns of the solute and flow medium migration rule in pore and fracture can provide scientific basis for underground construction engineering.
电阻层析成像与多尺度岩石破裂尺寸及深度的关系研究
在断层破碎带、损伤带乃至完整岩体中均存在多组裂缝,导致硬岩裂隙渗流通道导电性差、渗透性高。未来有可能成为潜在的地下水迁移通道,使地下工程面临巨大的挑战。为了更准确地掌握岩体和裂隙的渗透性特征,掌握岩石裂隙在多尺度、大小和深度上的内部结构模式、成因机制和动力学原理等现象是极为重要的。掌握溶质和渗流介质在孔隙和裂隙中的运移规律的原理和模式,可以为地下工程建设提供科学依据,保证岩体裂隙多尺度的准确分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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