冰岛Reykjanes储层地热井套管电极电阻率研究

L. Magnúsdóttir, M. Jonsson
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引用次数: 1

摘要

在冰岛西南部的Reykjanes地热储层进行了直流电阻率测量,以研究在井间电阻率测量中使用钢套管作为电极将电流传输到地下深处的可能性。研究了包括IDDP-2井在内的多口井,该井已被冰岛深层钻井项目(IDDP)深度加深至4.7 km。测量两个井套之间的电阻与井套与表面电极之间的电阻进行比较。结果表明,当使用套管作为电极时,电流会深入地下,并通过水渠从一个套管传播到另一个套管,而不是像使用表面电极时那样更靠近地面。在电阻率研究中,钢套管提供了良好的传导到地面,井间电阻率测量可用于获取地下信息,如井间裂缝连通性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geothermal Well Casings Used as Electrodes in a Resistivity Study at Reykjanes Reservoir in Iceland
Direct current resistivity measurements are performed at Reykjanes geothermal reservoir in southwest Iceland to investigate the possibility of using steel casings as electrodes to transfer electric current deep into the ground during cross-well resistivity surveys. Various wells are studied including well IDDP-2 that has been deepened by the Iceland Deep Drilling Project (IDDP) to a depth of 4.7 km. Electrical resistance measured between two well casings is compared to the resistance between a well casing and an electrode on the surface. The results indicate that the current travels deeper into the ground and through water channels from one casing to another when using the well casings as electrodes instead of traveling closer to the surface as when surface electrodes are used. Steel casings provide good conduction into the ground in resistivity studies and cross-well resistivity measurements can be used to gain information about the subsurface such as the fracture connectivity between wells.
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