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Numerical Simulation of Transient Electromagnetic Response of Unfavorable Geological Body in Tunnel

机译:隧道不利地质体瞬态电磁响应的数值模拟

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To investigate the transient electromagnetic method of response characteristics in the tunnel geological prediction, the finite element numerical simulation of unfavorable geological body of different location, different resistivity sizes, different shapes, and different volume size were carried out by ANSYS finite element software. The results show that secondary electromagnetic field of different location of unfavorable geological body have same decay rate, when detection distance from 30m to 70m, transient electromagnetic responses are strongest, followed distance from 10m to 30m and from 70m to 90m. The shape, volume and resistivity of unfavorable geological body have strong influence on transient electromagnetic response, unfavorable geological body more sleek, the greater the volume and the smaller the resistivity of unfavorable geological body, the secondary electromagnetic field decay slower.
机译:为了研究隧道地质预测中的响应特性的瞬态电磁方法,通过ANSYS有限元件进行不同位置,不同电阻率尺寸,不同形状和不同体积尺寸的不利地质体的有限元数值模拟。结果表明,当检测距离为30米至70米的检测距离时,瞬态电磁响应最强,瞬态电磁响应,瞬时电磁响应,瞬时电磁响应,距离为10米至30米,从10米到30米,从10m到30米的距离和70米到90米的次级电磁场具有相同的衰减速率。不利地质体的形状,体积和电阻率对瞬态电磁反应影响强,不利地质体更加时尚,体积越大,不利地质体的电阻率越大,二次电磁场衰减较慢。

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