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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >A time fractional convection-diffusion equation to model gas transport through heterogeneous soil and gas reservoirs
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A time fractional convection-diffusion equation to model gas transport through heterogeneous soil and gas reservoirs

机译:通过异构土壤和气体储层模型气体输送的时间分数对流扩散方程

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Fractional-derivative models have been developed recently to interpret various hydrologic dynamics, such as dissolved contaminant transport in groundwater. However, they have not been applied to quantify other fluid dynamics, such as gas transport through complex geological media. This study reviewed previous gas transport experiments conducted in laboratory columns and real-world oil-gas reservoirs and found that gas dynamics exhibit typical sub-diffusive behavior characterized by heavy late-time tailing in the gas breakthrough curves (BTCs), which cannot be effectively captured by classical transport models. Numerical tests and field applications of the time fractional convection-diffusion equation (fCDE) have shown that the fCDE model can capture the observed gas BTCs including their apparent positive skewness. Sensitivity analysis further revealed that the three parameters used in the fCDE model, including the time index, the convection velocity, and the diffusion coefficient, play different roles in interpreting the delayed gas transport dynamics. In addition, the model comparison and analysis showed that the time fCDE model is efficient in application. Therefore, the time fractional-derivative models can be conveniently extended to quantify gas transport through natural geological media such as complex oil-gas reservoirs. (C) 2018 Elsevier B.V. All rights reserved.
机译:最近已经开发了分数衍生物模型来解释各种水文动力学,例如地下水中的溶解污染物输送。然而,它们尚未应用于通过复杂地质介质量化其他流体动力学,例如气体输送。本研究审查了以前在实验室柱和现实世界油气储层进行的燃气运输实验,发现气体动力学表现出典型的次散扩散行为,其特征在于气体突破性曲线(BTC)中的繁重的后期拖尾,这不能有效地被古典传输模型捕获。时间分数对流 - 扩散方程(FCDE)的数值测试和现场应用已经表明,FCDE模型可以捕获观察到的气体BTC,包括它们的表观正偏振。敏感性分析进一步揭示了在FCDE模型中使用的三个参数,包括时间指数,对流速度和扩散系数,在解释延迟的气体传输动态中发挥不同的作用。此外,模型比较和分析表明,时间FCDE模型在应用中有效。因此,可以方便地扩展分数衍生物模型以通过自然地质介质(如复杂的油气储层)量化气体输送。 (c)2018年elestvier b.v.保留所有权利。

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