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实验室频段的双孔岩石模型与喷射流

机译:实验室频段的双孔岩石模型与喷射流

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Biot theory research has been extended to the multi-scale heterogeneity in actual rocks. Focused on laboratory frequency bandwidth studies, we discuss the relationships between double-porosity and BISQ wave equations, analytically derive the degeneration method for double-porosity's return to BISQ, and give three necessary conditions which the degeneration must satisfy. By introducing dynamic permeability and tortuosity theory, a full set of dynamic double-porosity wave equations are derived. A narrow band approximation is made to simplify the numerical simulation for dynamic double-porosity wavefields. Finally, the pseudo-spectral method is used for wave simulation within the laboratory frequency band (50 kHz). Numerical results have proved the feasibility for dynamic double-porosity's description of squirt flow and the validity of the quasi-static approximation method.
机译:BIOS理论研究已经扩展到实际岩石中的多尺度异质性。专注于实验室频率带宽研究,我们讨论了双孔隙率和双Q波动方程之间的关系,分析导出了双孔隙度返回BISQ的退化方法,并提供了退化必须满足的三种必要条件。通过引入动态渗透性和曲折性理论,推导了一整套动态双孔隙波浪方程。使窄带近似用于简化动态双孔隙度波场的数值模拟。最后,伪光谱方法用于实验室频带(50kHz)内的波模拟。数值结果证明了动态双孔隙度的可行性,对喷射流的描述和准静态近似方法的有效性。

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