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Influence of the Chemical Composition of Completion Fluids on the Propagation of Electromagnetic Waves within Oil Wells

机译:完井液的化学成分对电磁波在油井中传播的影响

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摘要

The propagation or electromagnetic waves in the annular region of oil wells was studied. The present study aims to analyse the propagation attenuation along the well, as well as the input impedance determined by a source placed near the wellhead. A coaxial waveguide model was adopted with heterogeneous dielectrics and losses. First, a wave equation solution for the waveguide is presented, assuming a homogeneous medium with losses, by solving the equation in cylindrical coordinates using the vector potential technique. An uncertainty analysis model is then developed to model the heterogeneous characteristics of the medium. Monte Carlo simulations were performed with the created model using data gathered from the literature. The results of the simulations indicate that propagation in the transverse electromagnetic mode has the smallest attenuation and that for depths of up to 4000 m, there is an attenuation of less than 52 dB. Furthermore, the input impedance ranges from 10 Ω to 10 kΩ because of the uncertainties involved in the problem in question.
机译:研究了油井环形区域内的传播或电磁波。本研究旨在分析沿井的传播衰减,以及由放置在井口附近的震源确定的输入阻抗。同轴波导模型被采用具有不均匀的电介质和损耗。首先,通过使用矢量势技术在圆柱坐标系中求解方程,提出了一种假设具有损耗的均质介质的波导波动方程解。然后开发不确定性分析模型以对介质的异质性建模。使用从文献中收集的数据,使用创建的模型执行蒙特卡洛模拟。仿真结果表明,在横向电磁模式下的传播具有最小的衰减,对于深度达4000 m的情况,其衰减小于52 dB。此外,由于所涉及问题的不确定性,输入阻抗范围为10Ω至10kΩ。

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