China Research Institute of Radiowave Propagation, Xinxiang, Henan, China.
PLoS One. 2024 Apr 17;19(4):e0302032. doi: 10.1371/journal.pone.0302032. eCollection 2024.
An increasing number of measurement electrodes have been designed to satisfy the demand for high-resolution detection using galvanic logging technology in complex formations. The forward modeling response analysis of logging tools has important guiding significance in the design of galvanic logging tools. Based on a three-dimensional finite element numerical simulation method, we established a forward model of galvanic multi-electrodes in a complex formation. We also designed a symmetrical resistance network model of the formation with equivalent resistance between two electrodes. A symmetrical resistance network was derived using the balanced bridge method. The asymmetrical admittance matrix was extended to a symmetrical extended admittance matrix to realize a convenient calculation of the equivalent symmetrical resistance network in complex formations. Verification of the microcolumn-focused logging tool, with nine electrodes in a simulated standard well, and an evaluation of the degree of invasion in an actual oil well indicate that this calibration method can improve the measurement accuracy of galvanic logging instruments.
为了满足复杂地层中使用电流测井技术进行高分辨率探测的需求,已经设计出越来越多的测量电极。在电流测井工具的设计中,测井工具的正演模型响应分析具有重要的指导意义。本文基于三维有限元数值模拟方法,建立了复杂地层中电流多电极的正演模型。同时,还设计了一种具有两个电极之间等效电阻的地层对称电阻网络模型。采用平衡桥法推导出对称电阻网络,并将不对称导纳矩阵扩展为对称扩展导纳矩阵,以实现复杂地层中等效对称电阻网络的便捷计算。通过对模拟标准井中的九个电极的微柱聚焦测井工具的验证以及对实际油井侵入程度的评估,表明这种校准方法可以提高电流测井仪器的测量精度。