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首页> 外文期刊>Stochastic environmental research and risk assessment >Stochastic Analysis Of Transient Three-phase Flow In Heterogeneous Porous Media
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Stochastic Analysis Of Transient Three-phase Flow In Heterogeneous Porous Media

机译:非均质多孔介质中瞬态三相流的随机分析

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摘要

In this manuscript, we extend the stochastic analysis of transient two-phase flow (Chen et al., Water Resour Res 42:W03425, 2006) to three-phase flow, i.e., water, air, and NAPL. We use the van Genuchten model and the Parker and Lenhard three-phase model to describe the relationships between phase saturation, phase relative permeability, and capillary pressure. The log-transformations of intrinsic permeability Y(x) = In k(x), soil pore size distribution parameter β_(ow)(x) - In α_(ow)(x) between water and NAPL, and β_(ao)(x) = In α_(ao)(x) between air and NAPL, and van Genuchten fitting parameter n(x) = In [n(x) - 1], are treated as stochastic variables that are normally distributed with a separable exponential covariance model. The Karhunen-Loeve expansion and perturbation method (KLME) is used to solve the resulting equations. We evaluate the stochastic model using two-dimensional examples of three-phase flow with NAPL leakage. We also conduct Monte Carlo (MC) simulations to verify the stochastic model. A comparison of results from MC and KLME indicates the validity of the proposed KLME application in three-phase flow. The computational efficiency of the KLME approach over MC methods is at least an order of magnitude for three-phase flow problems. This verified stochastic model is then used to investigate the sensitivity of fluid saturation variances to the input variances.
机译:在本手稿中,我们将瞬态两相流的随机分析(Chen等人,Water Resour Res 42:W03425,2006)扩展到三相流,即水,空气和NAPL。我们使用van Genuchten模型以及Parker和Lenhard三相模型来描述相饱和度,相相对渗透率和毛细管压力之间的关系。水和NAPL之间的固有渗透率Y(x)= In k(x),土壤孔径分布参数β_(ow)(x)-Inα_(ow)(x)和β_(ao)( x)=空气与NAPL之间的α_(ao)(x),并且van Genuchten拟合参数n(x)= In [n(x)-1]被视为随机变量,它们通常以可分离的指数协方差分布模型。 Karhunen-Loeve展开和摄动方法(KLME)用于求解所得方程。我们使用带有NAPL泄漏的三相流的二维示例来评估随机模型。我们还进行了蒙特卡洛(MC)仿真以验证随机模型。 MC和KLME结果的比较表明,建议的KLME应用在三相流中的有效性。相对于MC方法,KLME方法的计算效率对于三相流问题至少为一个数量级。然后,使用该经过验证的随机模型研究流体饱和度方差对输入方差的敏感性。

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