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A rock physics modelling algorithm for simulating the elastic parameters of shale using well logging data

机译:利用测井数据模拟页岩弹性参数的岩石物理建模算法

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As a high-resolution geophysical method employed by the oil and gas industry, well logging can be used to accurately investigate reservoirs. Challenges associated with shale gas reservoir exploration increase the importance of applying elastic parameters or velocity at the logging scale. An efficient shale rock physics model is the foundation for the successful application of this method. We propose a procedure for modelling shale rock physics in which an appropriate modelling method is applied for different compositions of shale rock. The stiffnesses of the kerogen and fluid (oil, gas or water) mixture are obtained with the Kuster-Toks?z model, which assumes that the fluid is included in the kerogen matrix. A self-consistent approximation method is used to model clay, where the clay pores are filled with formation water. The Backus averaging model is then used to simulate the influence of laminated clay and laminated kerogen. Elastic parameter simulations using well logging data show the importance of treating the volume fractions of laminated clay and kerogen carefully. A comparison of the measured compressional slowness and modelled compressional slowness shows the efficiency of the proposed modelling procedure.
机译:作为石油和天然气工业采用的高分辨率地球物理方法,测井可用于准确调查油藏。与页岩气储层勘探相关的挑战增加了在测井规模上应用弹性参数或速度的重要性。一个有效的页岩岩石物理模型是成功应用该方法的基础。我们提出了一种对页岩物理进行建模的程序,其中对不同的页岩成分应用了一种适当的建模方法。干酪根和流体(油,气或水)混合物的刚度是使用Kuster-Toks?z模型获得的,该模型假定流体包含在干酪根基质中。使用自洽近似方法对粘土进行建模,其中粘土孔隙充满地层水。然后使用Backus平均模型来模拟层状粘土和层状干酪根的影响。使用测井数据进行的弹性参数模拟显示了小心处理层压粘土和干酪根的体积分数的重要性。测量的压缩慢度和建模的压缩慢度的比较表明了所提出的建模过程的效率。

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