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Numerical modeling on the sensitivity of directional dependent interface heat transfer on thermal transport in a coupled fracture-matrix system

机译:耦合断裂矩阵系统中方向相关界面传热对热输运敏感性的数值模拟

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摘要

The conventional dual-porosity model has been modified by considering the heat exchange term at the fracture-matrix interface in the governing equation for thermal transport within the low permeable rock-matrix as against its conventional consideration within the high permeable fracture. A finite volume numerical model has been developed in order to analyze the influence of the source/sink term which defines the heat transfer at the fracture matrix interface. The comparison of the spatial distribution for temperature within the fracture and within the reservoir matrix for two different models, (1) conventional model in which the source/sink heat transfer term included in the equation for thermal transport within the fracture; (2) proposed model in which the source/sink heat transfer term included in the equation for thermal transport within the rock-matrix, have been performed. In addition, the sensitivity of the reservoir matrix thermal conductivities, both horizontal and vertical, on thermal energy extraction from the reservoir matrix has also been analyzed using the proposed model. Numerical results suggest that the estimation of temperature distribution in the fracture and rock-matrix and thus quantifying the heat extraction from the reservoir matrix is underestimated in a fracture-matrix system by using the conventional thermal transport model. It has been also observed that the temperature distribution obtained in the fracture and the rock-matrix by considering the heat transfer term in the thermal transport equation within the fracture shows significant variation from the temperature distribution obtained by considering the heat transfer term in the equation for thermal transport within the rock-matrix.
机译:常规的双孔隙度模型已经通过在低渗透岩性岩体中的热传输控制方程中考虑裂缝-基质界面处的热交换项进行了修改,而不是在高渗透性裂隙中进行常规考虑。为了分析源/汇项的影响,开发了一个有限体积的数值模型,该源/汇项定义了裂缝矩阵界面处的热传递。比较两种不同模型在裂缝内和储层矩阵内温度的空间分布,(1)常规模型,其中源/汇传热项包括在裂缝内热传输方程中; (2)建议的模型,其中已经执行了包含在岩石矩阵内的热传输方程中的源/汇传热项。此外,还使用所提出的模型分析了水平和垂直储层基质热导率对从储层基质中提取热能的敏感性。数值结果表明,在裂缝-矩阵系统中,使用常规的热传输模型低估了裂缝和岩体中温度分布的估计值,从而量化了从储层基质中提取热量的数量。还已经观察到,在裂缝和岩石基体中,通过考虑裂缝内的热传递方程中的传热项获得的温度分布与通过考虑以下公式中的传热项获得的温度分布相比,存在显着变化。岩石基体内的热传输。

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