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The role of fracture surface roughness in macroscopic fluid flow and heat transfer in fractured rocks

机译:裂缝表面粗糙度在裂缝性岩石宏观流体流动和传热中的作用

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Rock fractures are major conduits for fluid flow in fractured rocks, and the convective heat transfer between rock fracture surfaces and circulating fluid is a critical issue in heat recovery in fractured rocks. It has been demonstrated that fracture surface roughness has a significant influence on the mechanical, hydraulic, thermal and transport behavior of single fractures. This study aimed to assess the effects of local surface roughness of fractures on fluid flow and heat transfer processes at the macroscopic scale of fracture networks. Two distributions of Joint Roughness Coefficient (JRC) were determined based on the JRC data in Oskarshamn/Forsmark, Sweden and Bakhtiary, Iran. Two empirical models relating hydraulic apertures to mechanical apertures were considered. A total of ninety-one realizations that considered different JRC distributions and empirical models of mechanical-hydraulic apertures were studied. The results show that fracture surface roughness can affect the fluid flow and heat transfer processes in fracture networks to various extents, mainly depending on the empirical models of mechanical-hydraulic apertures. In other words, the role of fracture surface roughness in macroscopic fluid flow and heat transfer in fractured rocks is critical, when using a model of mechanical-hydraulic apertures that predicts significant reduced hydraulic apertures. Discrete fracture networks models with the normal distribution of JRC are less permeable than those with the lognormal distribution of JRC, using the fitting parameters of in-situ JRC data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:岩石裂缝是裂隙岩石中流体流动的主要管道,岩石裂隙表面与循环流体之间的对流传热是裂隙岩石热量回收的关键问题。已经证明,裂缝的表面粗糙度对单个裂缝的机械,水力,热和运输行为具有重大影响。这项研究旨在评估裂缝网络宏观范围内裂缝局部表面粗糙度对流体流动和传热过程的影响。根据瑞典奥斯卡港/福斯马克和伊朗巴赫蒂的JRC数据确定了联合粗糙度系数(JRC)的两种分布。考虑了将液压孔与机械孔相关的两个经验模型。总共研究了91个考虑了不同JRC分布和机械液压孔的经验模型的实现。结果表明,裂缝表面粗糙度可在不同程度上影响裂缝网络中的流体流动和传热过程,这主要取决于机械液压孔的经验模型。换句话说,当使用机械液压孔模型预测液压孔显着减小时,裂缝表面粗糙度在宏观流体流动和裂缝岩石传热中的作用至关重要。使用原位JRC数据的拟合参数,具有JRC正态分布的离散裂缝网络模型的渗透性比具有JRC对数正态分布的模型少。 (C)2016 Elsevier Ltd.保留所有权利。

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