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A study on directional resistivity logging-while-drilling based on self-adaptive hp-FEM

机译:基于自适应hp-FEM的定向电阻率随钻测井研究

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摘要

Numerical simulation of resistivity logging-while-drilling (LWD) tool response provides guidance for designing novel logging instruments and interpreting real-time logging data. In this paper, based on self-adaptive hp-finite element method (hp-FEM) algorithm, we analyze LWD tool response against model parameters and briefly illustrate geosteering capabilities of directional resistivity LWD. Numerical simulation results indicate that the change of source spacing is of obvious influence on the investigation depth and detecting precision of resistivity LWD tool; the change of frequency can improve the resolution of low-resistivity formation and high-resistivity formation. The simulation results also indicate that the self-adaptive hp-FEM algorithm has good convergence speed and calculation accuracy to guide the geologic steering drilling and it is suitable to simulate the response of resistivity LWD tools.
机译:随钻电阻率测井(LWD)工具响应的数值模拟为设计新颖的测井仪器和解释实时测井数据提供了指导。本文基于自适应hp有限元方法(hp-FEM)算法,针对模型参数分析了随钻测井仪的响应,并简要说明了定向电阻率随钻测井的地质导向能力。数值模拟结果表明,源距的变化对电阻率随钻测井仪的勘查深度和探测精度有明显影响。频率的变化可以提高低电阻率地层和高电阻率地层的分辨率。仿真结果还表明,自适应hp-FEM算法具有较好的收敛速度和计算精度,可指导地质导向钻井,适合模拟电阻率随钻测井仪的响应。

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