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Experiment and response analysis of marine monostatic EM instrument toward mapping seafloor sulfide massive deposit

机译:海洋单机EM仪器朝向海底硫化物大量矿床的实验与响应分析

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We performed numerical and physical experiment with a marine monostatic electromagnetic (EM) survey system, which is developed primarily for exploration of seafloor mineral deposits. The system is a multi-frequency EM system housed to endure high pressure in deep sea up to 2000 m. To keep stable altitude of the system from the seafloor in rough seafloor topography condition, the system is connected rigidly to ROV (Remotely Operated Vehicle). We performed a test with the new loop EM system by keeping altitude of ROV 2 m above from the seafloor at a depth of 300 m sea water. Experimental results showed that electromagnetic anomaly was clearly identified at the location of metallic object, and the pattern of the EM responses matches well with the theoretical responses from a 3-D integral equation EM modeling code. With the off-shore test and the numerical analysis, we confirmed that the method of operation of the EM survey system by ROV is readily feasible, and the system are expected to detect actual seafloor sulfide massive deposits in the highly conductive seafloor environment.
机译:我们对海洋单体电磁(EM)调查系统进行了数值和物理实验,该系统主要用于探索海底矿物矿床。该系统是一个多频的EM系统,持续到深海的高压高达2000米。为了保持系统的稳定高度从海底地形地形条件下的海底状态,该系统刚性地连接到ROV(远程操作的车辆)。我们通过将ROV的高度从海底保持在300米海水的深度,通过将ROV 2米的高度保持一致,与新环路EM系统进行了测试。实验结果表明,在金属物体的位置清楚地识别了电磁异常,并且EM响应的图案与来自3-D整体式EM建模代码的理论响应良好匹配。随着离岸试验和数值分析,我们证实,ROV的EM调查系统操作方法易于可行,并且预计该系统将检测高导电海底环境中的实际海泡硫化物大量沉积物。

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