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Heat transfer and fluid transport of supercritical CO2 in enhanced geothermal system with local thermal non-equilibrium model

机译:局部热非平衡模型增强地热系统中超临界CO2的传热与流体运输

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The heat transfer and fluid transport of supercritical CO2 in enhanced geothermal system (EGS) is studied numerically with local thermal non-equilibrium model, which accounts for the temperature difference between solid matrix and fluid components in porous media and uses two energy equations to describe heat transfer in the solid matrix and in the fluid, respectively. As compared with the previous results of our research group, the effect of local thermal non-equilibrium mainly depends on the volumetric heat transfer coefficient ah, which has a significant effect on the production temperature at reservoir outlet and thermal breakthrough time. The uniformity of volumetric heat transfer coefficient ah has little influence on the thermal breakthrough time, but the temperature difference become more obvious with time after thermal breakthrough with this simulation model. The thermal breakthrough time reduces and the effect of local thermal non-equilibrium becomes significant with decreasing ah.
机译:用局部热非平衡模型进行数值研究超临界CO2在增强地热系统(EGS)中的传热和流体传输,其占局部热非平衡模型,其考虑了多孔介质中的固体基质和流体组分之间的温差,并使用两个能量方程来描述热量分别在固体基质和流体中转移。与我们的研究组的先前结果相比,局部热非平衡的效果主要取决于体积传热系数αH,这对储层出口时的生产温度具有显着影响和热突破时间。体积传热系数α的均匀性均对热突破时间几乎没有影响,但随着该模拟模型的热突破后的时间变得更加明显。热突破时间降低,局部热非平衡的效果随着减小α而变得显着。

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