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HIGH-ORDER, FINITE-DIFFERENCE MODELING OF MULTIPOLE LOGGING IN FORMATIONS WITH ANISOTROPIC ATTENUATION AND ELASTICITY

机译:具有各向异性衰减和弹性的地层中多极测井的高阶有限差分建模

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A realistic description of the formation seen by an acoustic logging tool includes intrinsic attenuation, anisotropy, and spatial variations of the formation properties. These features are included in finite-difference (FD) modeling of acoustic full waveform multipole logging. Intrinsic attenuation is included using a phenomenological model that allows for many physical causes of attenuation, including viscous fluid flow losses, to be modeled. Furthermore, the attenuation, the corresponding velocity dispersion, and the elasticity can have any type of axisymmetric anisotropy. To increase computational speed and numerical precision, high-order FD operators that fully exploit vector processing architecture are used. The problem of using these operators near the symmetry axis in cylindrical coordinates is solved using symmetry arguments. Excellent results are obtained when comparing the calculations with the discrete wavenumber method. When correctly implemented, the FD model has the same numerical precision as the discrete wavenumber method but allows more general formations to be analyzed. Incorrect staggering of the high-order FD scheme gives artifacts equivalent to the inclusion of a thin layer between the fluid and the formation. [References: 33]
机译:声波测井仪对地层的真实描述包括固有衰减,各向异性和地层性质的空间变化。这些功能包括在声学全波形多极测井的有限差分(FD)建模中。使用现象学模型包括本征衰减,该模型允许对衰减的许多物理原因进行建模,包括粘性流体流量损失。此外,衰减,相应的速度色散和弹性可以具有任何类型的轴对称各向异性。为了提高计算速度和数值精度,使用了充分利用矢量处理体系结构的高阶FD运算符。使用对称参数解决了在圆柱坐标中的对称轴附近使用这些算符的问题。将计算结果与离散波数方法进行比较时,可获得出色的结果。如果正确实施,FD模型的数值精度与离散波数方法相同,但可以分析更一般的形式。高阶FD方案的不正确交错会产生与在流体和地层之间包含薄层等效的伪影。 [参考:33]

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