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Numerical Simulation of Electric Field Characteristics in Response to Water In-rush in Working Face

机译:电场特征响应于工作面的水涌的数值模拟

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According to the principle of resistivity detecting method and influencing law of resistivity in mining affected floor strata, different geoelectric models were constructed, such as model with water in-rush fractured zone in floor, working face advances to different distances, water in-rush after mining. Based on the "bipole-dipole" device, forward modeling was carried out by three-dimensional finite difference method. Apparent resistivity curves of different models can be obtained through numerical calculation and CT images can be obtained by processing the resistivity data with computerized tomography. Response characteristics of electric field in water in-rush working face can be analyzed by combing apparent resistivity curves with CT images. The results show that: good geological results could be achieved through numerical simulation of electric field response characteristics by using finite difference method and analyzing electric field characteristics of water in-rush in working face. This study provides theoretical basis for water in-rush detection using the resistivity method.
机译:根据电阻率检测方法和影响影响地板地层电阻率影响的原理,构建了不同的电气模型,如模型在地板中,工作面向不同的距离,水中的水流矿业。基于“双极 - 偶极”装置,通过三维有限差分法进行正向建模。可以通过数值计算可以通过数值计算获得不同模型的表观电阻率曲线,并且可以通过用计算机化断层扫描处理电阻率数据来获得CT图像。通过用CT图像梳理表观电阻率曲线,可以通过梳理水中的湍急工作面电场的响应特性。结果表明:通过采用有限差分法,通过使用有限差分法测定电场响应特性的数值模拟来实现良好的地质结果。本研究为使用电阻率法提供了水冲击检测的理论依据。

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