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Investigation on acoustic reflection logging of LWD using a flexible finite difference technique

机译:用柔性有限差分技术研究随钻声反射测井

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摘要

Acoustic reflection logging while drilling (LWD) measurement has overwhelming advantages in detecting reflectors outside the borehole, making it a prominent technology in geosteering during LWD operations. This paper carries out a comprehensive numerical investigation into the acoustic reflection logging responses in LWD environments by combining the analytical real axis integration (RAI) solution and an exquisitely improved finite difference method (FDM). Mutual validation of these two methods using typical and well-known cases ensures the reliability of the modelling methodology. Numerical studies on LWD and wireline acoustic reflection logging reveal that a ring source rather than four azimuthally orthogonal point sources can excite acoustic LWD monopole waves without interference from higher order wave modes. Lower order spatial differential operators are more efficient for FDM simulations of LWD cases when variance in the medium is obvious. Compared with the wireline monopole case, LWD monopole reflection acoustic logging can obtain higher quality reflected waves and has a superior ability to identify the azimuth of a geological reflector away from the borehole.
机译:随钻声波反射测井(LWD)测量在检测井眼外部反射器方面具有压倒性的优势,使其成为随钻测井作业期间地质导向的一项杰出技术。本文结合解析实轴积分(RAI)解决方案和精细改进的有限差分法(FDM),对LWD环境中的声反射测井响应进行了全面的数值研究。使用典型案例和众所周知的案例对这两种方法进行相互验证,可以确保建模方法的可靠性。对随钻测井和有线声反射测井的数值研究表明,环源而不是四个方位角正交点源可以激发声随钻测井单极波,而不会受到高阶波模的干扰。当介质中的差异很明显时,低阶空间微分算子对于LWD情况的FDM模拟更为有效。与有线单极情况相比,随钻测井单极反射声波测井可以获得更高质量的反射波,并且具有出色的能力来识别远离井眼的地质反射器的方位角。

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