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Numerical investigation of fracture morphology effect on heat transfer characteristics of water flow through a single fracture

机译:裂缝形态对单裂缝水流传热特性影响的数值研究

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The understanding of fluid flow and heat transfer properties in fractured rock is still insufficient. This study numerically investigates the effect of fracture morphology on convective heat transfer between fracture surface and flowing fluid. Water flow and heat transfer in a single fracture with different degrees of surface roughness are simulated by a numerical model and compared with experimental data. Simulation results show that a rough surface enhances the heat transfer intensity compared with a smooth fracture. The water temperature at the outlet increases as the surface roughness increases. Water temperature in both rough fracture and smooth fracture increases nonlinearly along the flow direction. The temperature at the inner surface of the fracture fluctuates drastically where the fracture surface suddenly fluctuates. A morphology condition factor (MCF) is introduced to take into consideration the fracture morphology effect on heat transfer characteristics. A linear relationship between normalized MCF and normalized profile length can be observed. A model is proposed to describe variation of the MCF. The promoting effect of fracture surface roughness on heat transfer intensity is gradually reduced with the increase of flow rate.
机译:对裂隙岩石中的流体流动和传热特性的了解仍然不足。该研究数值研究了裂缝形态对裂缝表面与流动流体之间对流换热的影响。通过数值模型模拟了具有不同表面粗糙度的单个裂缝中的水流和传热,并与实验数据进行了比较。仿真结果表明,与光滑的裂缝相比,粗糙的表面增强了传热强度。随着表面粗糙度的增加,出口处的水温也会升高。粗糙裂缝和光滑裂缝中的水温都沿着流动方向非线性增加。裂缝内表面的温度剧烈波动,而裂缝表面突然波动。引入形态条件因子(MCF)来考虑断裂形态对传热特性的影响。可以观察到归一化的MCF和归一化轮廓长度之间的线性关系。提出了一个模型来描述MCF的变化。随着流速的增加,断口表面粗糙度对传热强度的促进作用逐渐减小。

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