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A Fuzzy Logic Model for Predicting Dipole Shear Sonic Imager Parameters From Conventional Well Logs

机译:从常规测井曲线预测偶极剪切声波成像仪参数的模糊逻辑模型

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摘要

Sonic wave velocities, including compressional, shear, and Stoneley, are functional and practical parameters for various branches of reservoir characterization. In the last few years, several tools such as the dipole shear sonic imager (DSI) were introduced for measuring sonic wave velocities. Most of these instruments are expensive and drilling companies do not run them in all wells of a field because of economical restrictions. In this study, an accurate, intelligent, and indirect method was presented for prediction of sonic wave velocities, which are directly obtained from dipole shear sonic log, utilizing conventional well log data and fuzzy logic technique. Furthermore, the proposed methodology was applied on a carbonate reservoir of Iran. The results of the case study demonstrated the capabilities of fuzzy logic for estimation of sonic wave velocities, where DSI may not be run. The MSEs of the predicted V_p, V_s, and V_(st) in the test data calculated 1.47 (US/F), 4.96 (US/F), and 2.219 (US/F), respectively, which correspond to the R2 values of 91.8%, 89.3%, and 90.4%, respectively.
机译:包括压缩,剪切和斯通利在内的声波速度是储层表征各个分支的功能和实用参数。在最近几年中,引入了多种工具,例如偶极剪切声波成像仪(DSI),用于测量声波速度。这些工具大多数都是昂贵的,并且由于经济上的限制,钻井公司并未在油田的所有井中运行它们。在这项研究中,提出了一种准确,智能,间接的声波速度预测方法,该方法是利用常规测井数据和模糊逻辑技术直接从偶极剪切声波测井获得的。此外,所提出的方法已应用于伊朗的碳酸盐储层。案例研究的结果表明,模糊逻辑可以估算声速,而DSI可能无法运行。计算出的测试数据中预测V_p,V_s和V_(st)的MSE分别为1.47(US / F),4.96(US / F)和2.219(US / F),分别对应于分别为91.8%,89.3%和90.4%。

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