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Analogue model study of EM induction in elongated conductors—2D and 3D induction arrow responses

机译:细长导体中电磁感应的模拟模型研究— 2D和3D感应箭头响应

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Magnetic induction arrow responses of elongated conductors embedded in a uniformly resistive host earth and underlain by a conductive substratum are studied with the aid of laboratory analogue model measurements. The dependence on period, the overburden depth, and the underlying conductive basement depth, are examined for three different conductor lengths that were chosen so as to include the transition in the responses from two dimensional (2D) to those of three dimensional (3D) structures. The characteristic period Tc (the period at which the in-phase anomalous response of the elongated conductor model is maximum and the quadrature response is minimum) is found to depend on the conductor length, the overburden depth, and the conductive basement depth. A decrease in conductor length or conductive basement depth, each have the effect of decreasing both the response amplitude and the characteristic period, while increasing the overburden depth has the effect of increasing the characteristic period and decreasing the response amplitude. At short periods, say below the characteristic period, the responses appear to be roughly 2D, and to become progressively more 3D-like with increasing period above the characteristic period.
机译:借助实验室模拟模型测量,研究了嵌入均匀电阻性主体接地层中并由导电底层埋藏的细长导体的磁感应箭头响应。对于三种不同的导体长度,检查了对周期,上覆深度和下层导电基底深度的依存关系,以选择包括二维(2D)到三维(3D)结构的响应的过渡。发现特征周期Tc(细长导体模型的同相异常响应最大,而正交响应最小的周期)取决于导体长度,覆盖层深度和导电基底深度。导体长度或导电基底深度的减小均具有减小响应幅度和特征周期两者的效果,而增大覆盖层深度具有增大特征周期并减小响应幅度的效果。在较短的时间段(例如低于特征周期),响应似乎大致为2D,并且随着特征周期之上的周期增加,响应逐渐变得更像3D。

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