首页> 外文会议>ASME Fluids Engineering Division Meeting;ASME Heat Transfer Conference;International Conference on Nanochannels, Microchannels and Minichannels >MICRO-COMPUTED TOMOGRAPHY PORE-SCALE STUDY ON NATURAL CONVECTION IN A CUBIC CAVITY FILLED WITH COMPLEX POROUS MEDIUM
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MICRO-COMPUTED TOMOGRAPHY PORE-SCALE STUDY ON NATURAL CONVECTION IN A CUBIC CAVITY FILLED WITH COMPLEX POROUS MEDIUM

机译:微观计算机断层扫描孔隙尺度研究,填充复杂多孔介质的立方体自然对流研究

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A pore-scale numerical simulation was carried out in this study to predict the natural convection in a cubic cavity filled with reconstructed porous medium using lattice Boltzmann Method (LBM). The computational porous domain was established with the micro-computed tomography technique. The natural convection phenomena were predicted with the pore-scale simulation for different thermal boundary conditions and fluid thermal properties. The results show that the natural convection in the present porous domain is more obvious as the side wall is heated compared to that as the bottom wall is heated. The existence of porous structure suppresses the natural convection in the cubic cavity. As Rayleigh number increases, the natural convection in the porous domain is enhanced accordingly. The heat flux distribution on the porous structure surface varies intensively due to the complex flow characteristic in the small pore spaces. The numerical approach presented in this study is to provide a promising solution that can simulate pore-scale natural convection in porous medium and can be further extended for the development of field-scale model for transport processes in porous medium.
机译:在该研究中进行了孔隙率的数值模拟,以预测使用晶格Boltzmann方法(LBM)的重建多孔介质的立方体中的自然对流。计算多孔结构域以微计算机断层扫描技术建立。通过针对不同的热边界条件和流体热性能的孔隙尺度模拟预测了自然对流现象。结果表明,与底壁加热相比,当前多孔结构域中的自然对流更明显,因为底壁加热。多孔结构的存在抑制了立方体中的自然对流。由于瑞利数增加,多孔结构域中的自然对流相应地增强。由于小孔空间中的复杂流动特性,多孔结构表面上的热量通量分布在很大地变化。本研究中呈现的数值方法是提供一种有前途的解决方案,可以在多孔介质中模拟孔径自然对流,并且可以进一步扩展到多孔介质中运输过程的现场规模模型的发展。

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