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Analytical model for convection-conduction heat transfer during water injection in fractured geothermal reservoirs with variable rock matrix block size

机译:岩体块尺寸可变的裂缝性地热油藏注水对流传导换热分析模型

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The purpose of management in geothermal reservoirs is to economically enhance the energy recovery. This paper describes a model to analyze the process of cold water injection into a fully penetrating well with a number of n equally spaced horizontal fractures in a fractured geothermal reservoir. Previous models basically focused on the numerical and semi-analytical methods or a combination of two. Here, an analytical model is presented in which the effects of thermal convection and conduction are investigated. This solution has the ability to account the following phenomena: convection transport in fractures and conduction from the matrix block to the fracture. Specified assumptions are made which allow the model to be formulated as two coupled one-dimensional partial differential equations, one for the fracture and one for the matrix block in the direction perpendicular to the fracture. The convection-conduction heat transfer between fracture and matrix is not affected by the matrix block size distribution in dual porosity models. In the present study, a heat transfer model is introduced for a radial system with matrix block size distribution to assess the heat transfer shape factor known as a matrix-fracture exchange coefficient. The results delineated that heat transfer is strongly dependable on matrix block size distribution during the early time region. To calculate the total amount of heat extracted from a geothermal reservoir, two methods were defined and also a conceptual definition for the thermal recovery efficiency was presented. Finally, the proposed model was validated by comparing the results of the analytical solution with a pre-defined numerical method in the literature.
机译:地热储层管理的目的是经济上提高能量回收率。本文描述了一个模型,用于分析裂缝性地热储层中具有n个等间距水平裂缝的全渗透井中冷水注入过程。以前的模型基本上集中于数值和半分析方法或两者的结合。在这里,提出了一个分析模型,其中研究了热对流和传导的影响。该解决方案具有解决以下现象的能力:裂缝中的对流传输以及从基体块到裂缝的传导。进行了指定的假设,这些假设使模型可以公式化为两个耦合的一维偏微分方程,一个用于裂缝,一个用于垂直于裂缝方向的矩阵块。在双孔隙度模型中,裂缝与基质之间的对流传导传热不受基质块尺寸分布的影响。在本研究中,为具有矩阵块尺寸分布的径向系统引入了热传递模型,以评估称为矩阵-断裂交换系数的热传递形状因子。结果表明,在早期时间段内,热传递强烈取决于矩阵块的大小分布。为了计算从地热库中提取的热量总量,定义了两种方法,并提出了热回收效率的概念定义。最后,通过将解析解的结果与文献中预定的数值方法进行比较,对所提出的模型进行了验证。

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