煤炭工程 ›› 2021, Vol. 53 ›› Issue (4): 141-146.doi: 10.11799/ce202104029

• 研究探讨 • 上一篇    下一篇

煤矿井下电磁随钻测量水平钻进信号强度预测

徐林,邵春   

  1. 中国地质大学(武汉)资源学院
  • 收稿日期:2020-06-16 修回日期:2020-07-27 出版日期:2021-04-20 发布日期:2021-05-17
  • 通讯作者: 邵春 E-mail:shaochun_74@163.com

Signal strength prediction of electromagnetic measurement-while-drilling during horizontal drilling in underground coal mine

  • Received:2020-06-16 Revised:2020-07-27 Online:2021-04-20 Published:2021-05-17

摘要: 针对电磁随钻测量在煤矿井下水平钻进中信号衰减严重、适用深度受限的问题,采用电磁波在层状介质中的传播理论和基于二级离散复镜像法的插值算法求得层状有耗介质中的电场分量,结合分段脉冲基函数和点匹配的矩量法计算钻杆上电流和煤层中电场分布,进而计算孔口的信号强度。基于此,利用本模型分析了由基本顶、直接顶、煤层、直接底和基本底构成的5层信道信号强度的影响因素。仿真结果表明,信号强度随煤层和围岩电阻率先逐渐增大,后达到饱和,而煤层对信号强度的影响最显著|设置电极位于钻杆同侧、增大下部钻杆长度、减小钻杆接头之间的接触阻抗和减小信号频率可以提高信号强度。

关键词: 水平钻井, 层状地层, 电磁随钻测量, 信号强度预测, 矩量法

Abstract: Aiming at the problem of severe signal attenuation and limited applicable depth of electromagnetic- while-drilling measurement in horizontal drilling in underground coal mine, the electric field components in layered lossy medium are solved with the propagation theory of electromagnetic wave in layered medium and the interpolation algorithm based on two-level discrete complex image method, and the current on drill pipe and electric field in coal seam are calculated by moment method of piecewise pluse functions and point matching, then the signal strength at pithead is obtained. Moreover, the 5-layer signal channel composed of basic roof, immediate roof, coal seam, immediate floor and the basic floor was built with the developed model. Then, the factors affecting signal strength were analyzed. The simulation results show that the signal strength increases first and then reaches saturation with the increase of the resistivity of coal seam and surrounding rock, while the coal seam has the most significant effect on the signal strength. Setting electrodes on the same side of the drill pipe, increasing the length of the lower drill pipe, reducing the contact impedance between the drill pipe joints and reducing the signal frequency are the effective methods to enhance the signal strength.

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