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Analytical solutions for movement of cold water thermal front in a heterogeneous geothermal reservoir

机译:非均质地层中冷水热锋运动的解析解

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In the present study an analytical model has been presented to describe the transient temperature distribution and advancement of the thermal front generated due to the reinjec-tion of heat depleted water in a heterogeneous geothermal reservoir. One dimensional heat transport equation in porous media with advection and longitudinal heat conduction has been solved analytically using Laplace transform technique in a semi infinite medium. The heterogeneity of the porous medium is expressed by the spatial variation of the flow velocity and the longitudinal effective thermal conductivity of the medium. A simpler solution is also derived afterwards neglecting the longitudinal conduction depending on the situation where the contribution to the transient heat transport phenomenon in the porous media is negligible. Solution for a homogeneous aquifer with constant values of the rock and fluid parameters is also derived with an aim to compare the results with that of the heterogeneous one. The effect of some of the parameters involved, on the transient heat transport phenomenon is assessed by observing the variation of the results with different magnitudes of those parameters. Results prove the heterogeneity of the medium, the flow velocity and the longitudinal conductivity to have great influence and porosity to have negligible effect on the transient temperature distribution.
机译:在本研究中,已经提出了一个分析模型来描述瞬态温度分布和由于非均质地热储层中补充热量的水的注入而产生的热锋的发展。在半无限介质中使用拉普拉斯变换技术已解析地求解了具有对流和纵向热传导的多孔介质中的一维热传递方程。多孔介质的非均质性由流速的空间变化和介质的纵向有效热导率表示。此后,还可以忽略纵向传导,这取决于在多孔介质中对瞬态传热现象的贡献可忽略不计的情况,从而得出一种更简单的解决方案。还推导了具有恒定岩石和流体参数值的均匀含水层的解决方案,目的是将结果与非均质含水层的结果进行比较。通过观察结果随这些参数的不同幅度变化,可以评估所涉及的某些参数对瞬态传热现象的影响。结果证明,介质的非均质性,流速和纵向电导率对瞬态温度分布影响很大,而孔隙率对瞬态温度分布的影响可忽略不计。

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