综合电阻率和感应极化技术在Kegbara-Dere, Gokana LGA, Rivers State溢油调查中的应用

William J. S, Udom, G. J, Emujakporue G. O
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引用次数: 0

摘要

溢油是一种非常复杂的现象,需要使用综合技术进行详细的调查,以确定研究区域的主要污染物异常情况,因此需要调查溢油污染物是获取数据的关键,这将有助于提供必要的补救信息。利用二维电阻率和诱导极化层析成像技术对研究区域进行了建模,以描绘由石油泄漏和矿化体引起的羽流。采用二维数据采集技术获取视电阻率和激电数据。电阻率和激电层析成像的解释表明,碳氢化合物羽流特征被地下极化体的特征所掩盖。电阻率异常与激电异常的识别和隔离是本研究的重点。电阻率和诱导极化层析成像用于准确描绘地幔柱边界,也用于识别被地下粘土和其他矿化体所掩盖的区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of Electrical Resistivity and Induced Polarization Technique for Oil Spill Investigation in Kegbara-Dere, Gokana LGA, Rivers State
Oil spill is a very complex phenomenon which requires detailed investigation using integrated techniques to identify the major contaminant anomalies in the study area, hence the need to investigate the spill contaminant is very key to obtaining data that would aid in the provision of requisite information for remediation. The study area was modelled using 2-D resistivity and induced polarization tomography for delineation of plumes resulting from the oil spills and those caused by mineralized bodies. 2-D data acquisition techniques were used to obtain apparent resistivity and IP data. Interpretation of electrical resistivity and IP tomograms shows that the hydrocarbon plumes signatures are masked by signatures from polarized bodies within the subsurface. The identification and isolation of the resistivity anomalies from the IP anomalies are of major concern in this research. Resistivity and induced polarization tomograms are used to accurately delineate the plume boundaries and also identify of regions masked by the presence of clays and other mineralized bodies within the subsurface.
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