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首页> 外文期刊>International Journal of Thermophysics >3D Numerical Modeling of Water-Rock Coupling Heat Transfer Within a Single Fracture
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3D Numerical Modeling of Water-Rock Coupling Heat Transfer Within a Single Fracture

机译:三维岩土耦合传热在单个骨折内的数值模型

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Understanding working fluids flow and heat transfer in Enhanced Geothermal System (EGS) is critically important for assessing production capabilities and heat extraction rates from hot dry rock (HDR) effectively. Water is a conventional working fluid of EGS; therefore, it is necessary to study water-rock coupling heat transfer within HDR fractures. A single fracture is a basic element of complex fracture systems of EGS, so there has been many researches investigating water flow and heat transfer through a single fracture within a cylindrical HDR specimen for preliminary study, and heat transfer coefficient (HTC) is often adopted to evaluate heat transfer performance between water and rock, but there is a lack of knowledge about the inner surface temperature (T-i), which is a key parameter to calculate HTCs, due to limitations of current experimental methods and analytical solutions. Numerical modeling can be an alternative way to help us have a more comprehensive understanding of the distributions of T-i, but the 2D numerical models only reveal the distribution of T-i along the flow direction without its distribution perpendicular to the flow direction, namely, the distribution along radius. Therefore, it is essential to conduct the corresponding 3D numerical modeling to obtain the radial distribution of T-i. In this paper, a 3D numerical model accounting for surface morphology is proposed to simulate water flow and heat transfer through a single fracture within a cylindrical HDR specimen and verified by experimental data. The results reveal that the radial distribution of T-i can be described by a quadratic function mostly, and neither the surface morphology nor the phase state has influence on the tendency of T-i. Finally, four relatively stable formulas to calculate HTCs so far are compared and discussed.
机译:了解增强地热系统(EGS)中的工作流体流量和热传递对于评估有效的热干岩(HDR)的生产能力和热提取率至关重要。水是EGS的常规工作流体;因此,有必要研究HDR骨折内的水岩联热传递。单个骨折是EGS复杂骨折系统的基本元素,因此许多研究通过单一骨折在圆柱形HDR标本中调查水流量和热传递进行初步研究,并且通常采用传热系数(HTC)评估水和岩石之间的传热性能,但由于当前实验方法和分析解决方案的限制,缺乏关于计算HTCS的关键参数的关键参数的知识。数值建模可以是帮助我们对TI的分布更全面了解的替代方法,但是2D数模仅透露沿着流动方向沿着流动方向垂直于流动方向的分布,即分布的分布半径。因此,必须进行相应的3D数值模型以获得T-I的径向分布。在本文中,提出了一种表面形态学的3D数值模型,以通过圆柱形HDR样本内的单个裂缝模拟水流量和热传递并通过实验数据验证。结果表明,T-I的径向分布可以通过二次函数来描述,并且表面形态和相位状态都没有对T-i的趋势影响。最后,比较了四个相对稳定的公式来计算到目前为止计算HTCS。

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