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Efficiency of a marine towed electrical resistivity method

机译:船用拖曳电阻率法的效率

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摘要

In contrast to marine sediments, because of large electrical resistivity anomalies found in sulfide deposits and methane hydrates, resistivity measurements such as marine towed electrical resistivity (MTER) might be a feasible method for discovering those natural minerals. To determine the feasibility of the MTER method we examined arrays consisting of a pole electrical dipole (PED), vertical electrical dipole (VED) and horizontal electrical dipole (HED). The VED array showed a maximum difference in electric fields of 36% and 105% in the resistive and conductive models, respectively, while the PED and HED arrays yielded worse results of around 13% to 19%, respectively. The VED array showed a higher difference in electric fields than both the HED and PED arrays in the two models. Therefore, we suggest that a VED array with a large electrical current would be most conducive leading to the discovery of such minerals during MTER surveys.
机译:与海洋沉积物相比,由于在硫化物矿床和甲烷水合物中发现较大的电阻率异常,因此诸如海洋拖曳电阻率(MTER)之类的电阻率测量可能是发现这些天然矿物的可行方法。为了确定MTER方法的可行性,我们检查了由电偶极子(PED),垂直电偶极子(VED)和水平电偶极子(HED)组成的阵列。在电阻和导电模型中,VED阵列的电场最大差异分别为36%和105%,而PED和HED阵列产生的不良结果分别约为13%至19%。与两个模型中的HED和PED阵列相比,VED阵列在电场上的差异更大。因此,我们建议使用大电流的VED阵列最有利于在MTER调查期间发现此类矿物。

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