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Velocity and attenuation dispersion relations for the effective Biot model: Total-field formulation

机译:有效的Biot模型的速度和衰减色散关系:全场公式

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In this paper, two approaches - the host phase fields and the total fields, were respectively applied to formulate the effective Biot governing equations from the original double-porosity dual-permeability (DPDP) model. The host-phase formulation given previously in the literature is made under the assumption that the macroscopic fluid flux of the included phase is zero, so that this term can be ignored in the conservation of the momentum equation. The total-field formulation developed here has no such limiting assumption and gives rise to new and general governing equations that cover the host-field approach as a special case. By computing the phase velocity and attenuation dispersion curves of sample rocks, we show that the two sets of governing equations are consistent at a very low frequency but for larger volume fractions of phase 2, there is a significantly increasing discrepancy in the slow P-wave as the frequency increases. The slow P-wave, whilst difficult to observe, does exist and must be considered when computing the frequency-dependent reflection coefficients at an interface with a porous medium.
机译:在本文中,分别使用宿主相场和总场这两种方法从原始的双孔双渗透率(DPDP)模型公式化了有效的比奥特控制方程。先前在文献中给出的主体相公式是在假定所含相的宏观流体通量为零的假设下做出的,因此在动量方程的守恒中可以忽略该项。这里开发的总场公式没有这种局限性假设,因此出现了新的和通用的控制方程式,在特殊情况下,它涵盖了主场方法。通过计算样品岩石的相速度和衰减弥散曲线,我们发现两组控制方程在非常低的频率下是一致的,但是对于较大的相2体积分数,慢P波的差异明显增加随着频率的增加。缓慢的P波虽然难以观察,但确实存在,在计算与多孔介质的界面处的频率相关的反射系数时必须考虑。

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