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Analytic Simulation of the Elastic Waves Propagation in the Neighborhood of Fluid Filled Wells with Monopole Sources

机译:单极子源注水井附近弹性波传播的解析模拟

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An analytic formulation to understand the scattering, diffraction and attenuation of elastic waves at the neighborhood of fluid filled wells is presented. An important, and not widely exploited, technique to carefully investigate the wave propagation in exploration wells is the logging of sonic waveforms. Fundamental decisions and production planning in petroleum reservoirs are made by interpretation of such recordings. Nowadays, geophysicists and engineers face problems related to the acquisition and interpretation under complex conditions associated with conducting open-hole measurements. A crucial problem that directly affects the response of sonic logs is the eccentricity of the measuring tool with respect to the center of the borehole. Even with the employment of centralizers, this simple variation, dramatically changes the physical conditions on the wave propagation around the well. Recent works in the numerical field reported advanced studies in modeling and simulation of acoustic wave propagation around wells, including complex heterogeneities and anisotropy. However, no analytical efforts have been made to formally understand the wireline sonic logging measurements acquired with borehole-eccentered tools. In this paper, the Graf's addition theorem was used to describe monopole sources in terms of solutions of the wave equation. The formulation was developed from the threedimensional discrete wave-number method in the frequency domain. The cylindrical Bessel functions of the third kind and order zero were re-derived to obtain a simplified set of equations projected into a bi-dimensional plane-space for displacements and stresses. This new and condensed analytic formulation allows the straightforward calculation of all converted modes and their visualization in the time domain via Fourier synthesis. The main aim was to obtain spectral surfaces of transfer functions and synthetic seismograms that might be useful to understand the wave motion produced by the eccentricity of the source and explain in detail the new arising borehole propagation modes. Finally, time histories and amplitude spectra for relevant examples are presented and the validation of time traces using the spectral element method is reported.
机译:提出了一种解析公式,以了解充液井附近弹性波的散射,衍射和衰减。认真研究探井中波传播的一项重要且未被广泛使用的技术是声波波形的测井。石油储层的基本决策和生产计划是通过解释此类记录而做出的。如今,地球物理学家和工程师面临着与进行裸眼测量相关的复杂条件下的采集和解释问题。直接影响声波测井响应的关键问题是测量工具相对于井眼中心的偏心率。即使使用扶正器,这种简单的变化也极大地改变了井周围波传播的物理条件。数值领域的最新工作报道了对声波在井周围传播(包括复杂的非均质性和各向异性)进行建模和模拟方面的高级研究。但是,尚未进行分析工作来正式了解用钻孔偏心工具获得的电缆声波测井测量结果。在本文中,格拉夫加法定理用于根据波动方程的解描述单极子源。该公式是根据频域中的三维离散波数方法开发的。重新推导了第三类零阶圆柱贝塞尔函数,以得到一组简化的方程组,这些方程组被投影到二维平面空间中,用于位移和应力。这种新的浓缩分析公式允许通过傅立叶合成在时域中直接计算所有转换模式及其可视化。主要目的是获得传递函数和合成地震图的频谱表面,这可能有助于理解由震源偏心产生的波运动并详细解释新出现的井眼传播模式。最后,给出了相关示例的时间历史和幅度谱,并报告了使用谱元法对时间迹线的验证。

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