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Analytical solutions for transient temperature distribution in a geothermal reservoir due to cold water injection

机译:注入冷水导致地热储层瞬态温度分布的解析解

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摘要

An analytical solution to describe the transient temperature distribution in a geothermal reservoir in response to injection of cold water is presented. The reservoir is composed of a confined aquifer, sandwiched between rocks of different thermo-geological properties. The heat transport processes considered are advection, longitudinal conduction in the geothermal aquifer, and the conductive heat transfer to the underlying and overlying rocks of different geological properties. The one-dimensional heat transfer equation has been solved using the Laplace transform with the assumption of constant density and thermal properties of both rock and fluid. Two simple solutions are derived afterwards, first neglecting the longitudinal conductive heat transport and then heat transport to confining rocks. Results show that heat loss to the confining rock layers plays a vital role in slowing down the cooling of the reservoir. The influence of some parameters, e.g. the volumetric injection rate, the longitudinal thermal conductivity and the porosity of the porous media, on the transient heat transport phenomenon is judged by observing the variation of the transient temperature distribution with different values of the parameters. The effects of injection rate and thermal conductivity have been found to be profound on the results.
机译:提出了一种描述地热储层响应注入冷水的瞬态温度分布的解析解。该储层由一个封闭的含水层组成,夹在不同热地质性质的岩石之间。所考虑的热传递过程是对流,地热含水层中的纵向传导,以及将热传导传递给具有不同地质特性的下层和上层岩石。一维传热方程已使用拉普拉斯变换求解,并假设岩石和流体的密度和热特性恒定。随后得出两个简单的解决方案,首先忽略纵向传导热传递,然后再将热传递限制在围岩中。结果表明,围岩层的热损失在减缓储层冷却方面起着至关重要的作用。某些参数的影响,例如通过观察瞬态温度分布随参数值的变化来判断瞬态传热现象的体积注入率,纵向导热系数和多孔介质的孔隙率。已经发现注入速率和导热率的影响对结果有深刻的影响。

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