Reflection and Transmission of Inhomogeneous Plane Waves in Thermoporoelastic Media

IF 4.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Surveys in Geophysics Pub Date : 2023-04-23 DOI:10.1007/s10712-023-09782-z
Wanting Hou, Li-Yun Fu, José M. Carcione
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引用次数: 1

Abstract

We study the reflection and transmission (R/T) characteristics of inhomogeneous plane waves at the interface between two dissimilar fluid-saturated thermoporoelastic media at arbitrary incidence angles. The R/T behaviors are formulated based on the classic Lord–Shulman (LS) and Green–Lindsay (GL) heat-transfer models as well as a generalized LS model, respectively. The latter results from different values of the Maxwell-Vernotte-Cattaneo relaxation times. These thermoporoelastic models can predict three inhomogeneous longitudinal (P1, P2, and T) waves and one shear (S) wave. We first compare the LS and GL models for the phase velocities and attenuation coefficients of plane waves, where the homogeneous wave has a higher velocity but weaker thermal attenuation than the inhomogeneous wave. Considering the oil–water contact, we investigate R/T coefficients associated with phase angles and energy ratios, which are formulated in terms of incidence and inhomogeneity angles, with the latter having a significant effect on the interference energy. The proposed thermoporoelastic R/T model predicts different energy partitions between the P and S modes, especially at the critical angle and near grazing incidence. We observe the anomalous behavior for an incident P wave with the inhomogeneity angle near the grazing incidence. The energy partition at the critical angle is mainly controlled by relaxation times and boundary conditions. Beyond the critical angle, the energy flux predicted by the Biot poroelastic and LS models vanishes vertically, becoming the opposite for the GL and generalized LS models. The resulting energy flux shows a good agreement with the R/T coefficients, and they are well proven by the conservation of energy, where the results are valuable for the exploration of thermal reservoirs.

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热孔弹性介质中非均匀平面波的反射与透射
研究了非均匀平面波在两种不同的饱和热孔弹性介质界面上任意入射角下的反射和透射(R/T)特性。分别基于经典的Lord-Shulman (LS)传热模型和Green-Lindsay (GL)传热模型,以及广义的LS模型,推导了R/T行为。后者是由麦克斯韦-维尔诺特-卡塔内奥弛豫时间的不同值引起的。这些热孔弹性模型可以预测三个非均匀纵波(P1、P2和T)和一个横波(S)。我们首先比较了LS和GL模型平面波的相速度和衰减系数,其中均匀波比非均匀波具有更高的速度但热衰减更弱。考虑到油水接触,我们研究了与相角和能量比相关的R/T系数,这些系数由入射角和非均匀角表示,后者对干涉能量有显著影响。提出的热孔弹性R/T模型预测了P模和S模之间不同的能量分配,特别是在临界角和近掠入射时。我们观察了入射P波在掠射角附近具有非均匀性角时的异常行为。临界角度处的能量分配主要受弛豫时间和边界条件的控制。超过临界角后,Biot多孔弹性模型和LS模型预测的能量通量垂直消失,而GL模型和广义LS模型预测的能量通量则相反。所得能量通量与R/T系数吻合较好,并得到了能量守恒定理的证明,对热储勘探具有一定的指导意义。
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来源期刊
Surveys in Geophysics
Surveys in Geophysics 地学-地球化学与地球物理
CiteScore
10.00
自引率
10.90%
发文量
64
审稿时长
4.5 months
期刊介绍: Surveys in Geophysics publishes refereed review articles on the physical, chemical and biological processes occurring within the Earth, on its surface, in its atmosphere and in the near-Earth space environment, including relations with other bodies in the solar system. Observations, their interpretation, theory and modelling are covered in papers dealing with any of the Earth and space sciences.
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