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Application of the marine Ex-Bz transient system for delineating near shore resistive targets

机译:船用EX-BZ瞬态系统在岸电阻靶附近划定的应用

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Under certain conditions, multidimensional coastal effect significantly enhances relative target response of the broadside transient marine Ex-Bz system. The effect is caused by a redistribution of the induced currents between the resistive target and the sea bottom compared to that existing in a 1-D geometry. As a result, the effect strongly depends on specific geoelectric conditions in the near-shore environment. The first study of the effect in the Mediterranean coast of central Israel was addressing shallow groundwater problem under specific geoelectric, hydrogeological and geomorphological conditions. Under different conditions (e.g. deep targets and sharp near-shore bathymetry), the influence of the effect on target response might be significantly different. More general analysis carried out in this study comprises various geoelectric scenarios that include both shallow and deep resistive targets at different distances from the shore line as well as various geometries of the target and the near-shore bathymetry. The study includes three major exploration aspects of the system, namely signal detectability, lateral and vertical resolution. Taking into account poor lateral resolution of the classical frequency domain CSEM and the limited application in shallow sea, the described broadside transient Ex-Bz system might represent a desired alternative for delineating shallow and deep resistive targets in transition zone. (C) 2017 Elsevier B.V. All rights reserved.
机译:在某些条件下,多维沿海效果显着提高了广泛的瞬态海洋前BZ系统的相对目标响应。与在1-D几何形状中的电阻靶和海底之间的诱导电流的再分配是由电阻靶和海底之间的诱导电流的再分布来引起的效果。结果,该效果强烈取决于近岸环境中的特定地电条件。在以色列中部地区地区地质电气,水文地质和地貌条件下解决了浅层地下水问题的第一次研究。在不同的条件下(例如,深靶和尖锐的近岸浴),对目标反应的影响可能会显着不同。本研究开展的更多一般分析包括各种电路电影程,其包括距离岸线的不同距离的浅和深的电阻靶以及靶的各种几何形状和近岸沐浴浴。该研究包括系统的三个主要勘探方面,即信号可检测性,横向和垂直分辨率。考虑到古典频域CSEM的差的横向分辨率和浅海中的有限应用,所描述的宽边瞬态EX-BZ系统可能代表划定过渡区中浅层电阻靶的期望替代方案。 (c)2017 Elsevier B.v.保留所有权利。

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