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Ultrasonic And Numerical Modeling Of Reflections From Simulated Fractured Reservoirs

机译:模拟裂缝性储层反射的超声与数值模拟

摘要

Vve examine seismic waves scattered from anisotropic heterogeneity with laboratory dataand numerical modeling in order to develop modeling techniques for the characterizationof fracture properties in tight gas sands from surface seismic reflection data. Laboratory models representing features of a fractured reservoir were constructed using Phenolite (the "reservoir") embedded in a Lucite background, and seismic surveys were gathered over these models. In parallel with laboratory measurements, finite-difference modeling of reflections from a fractured medium were carried out. Fracture zone properties were calculated using an effective medium theory; the variation of fracture density produced a heterogeneous medium. The heterogeneity was modeled with a stochastic process, characterized by a probability density function and an auto-correlation function. Results from both modeling efforts show that prestacked AVO data can contain important information describing reservoir heterogeneity.
机译:Vve用实验室数据和数值模拟方法研究了各向异性各向异性驱散的地震波,以便开发出利用地表地震反射数据表征致密气砂岩裂缝特性的建模技术。使用嵌在Lucite背景中的辉光岩(“储层”)构造了代表裂缝储层特征的实验室模型,并对这些模型进行了地震勘测。在进行实验室测量的同时,对裂缝介质的反射进行了有限差分建模。使用有效介质理论计算断裂带的性质;裂缝密度的变化产生了非均质的介质。用随机过程对异质性进行建模,其特征在于概率密度函数和自相关函数。两次建模工作的结果均表明,叠前的AVO数据可以包含描述储层非均质性的重要信息。

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