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首页> 外文期刊>Journal of Applied Geophysics >Dispersion and attenuation of acoustic waves in randomly heterogeneous media
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Dispersion and attenuation of acoustic waves in randomly heterogeneous media

机译:声波在随机异质介质中的色散和衰减

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We derive the effective displacement relation for acoustic waves in a spatially random heterogeneous one-dimensional medium. This relationship is expressed in terms of parameters #sigma#_R and #sigma#_A which represent the standard deviations of the randomly varying density #rho#(x) and the randomly varying Young's modulus #alpha#(x), of the medium. In this way, we build the contributions into the total displacement relationship for the spatially random heterogeneous medium and apply this result to determine the dispersion and attenuation of acoustic waves propagating in he random heterogeneous medium. Attenuation and dispersion of waves propagating in media with randomly varying properties has been the subject of much study. Most of this work has neglected the effects of intrinsic dispersion and attenuation in order to concentrate on the effects of the medium inhomogeneities. We demonstrate how intrinsic attenuation may be easily included in the theoretical development, and explore the combined effects of scattering-based and intrinsic attenuation and dispersion on wave propagation. We apply the solution to model interwell acoustic waves propagating in the Kankakee formation at the Buckhorn Test Site, IL. The modeling results show that the strong dispersion in the frequency range of 500-2000 Hz is due to the reservoir heterogeneity. Alternatively, the velocity dispersion for frequencies greater than 2000 Hz corresponds to the intrinsic properties of the reservoir.
机译:我们推导了空间随机异质一维介质中声波的有效位移关系。该关系用参数#sigma#_R和#sigma#_A表示,该参数表示介质的随机变化的密度#rho#(x)和随机变化的杨氏模量#alpha#(x)的标准偏差。这样,我们将贡献建立到空间随机异质介质的总位移关系中,并将此结果应用于确定在随机异质介质中传播的声波的色散和衰减。在具有随机变化特性的介质中传播的波的衰减和色散已成为许多研究的主题。为了集中于介质不均匀性的影响,大多数这项工作都忽略了固有色散和衰减的影响。我们演示了固有衰减如何轻松地包含在理论发展中,并探讨了基于散射的衰减和固有衰减与色散对波传播的综合影响。我们将该解决方案应用于在伊利诺伊州巴克霍恩试验场的Kankakee地层中传播的井间声波的建模。建模结果表明,在500-2000 Hz频率范围内的强色散是由于储层非均质性引起的。可替代地,对于大于2000Hz的频率,速度色散对应于储层的固有特性。

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