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An experimental study of flow and heat transfer in a differentially side heated cavity filled with coarse porous media

机译:充满粗糙多孔介质的差动侧加热腔中流动和传热的实验研究

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Flow and heat transfer in a differentially side heated cubic cavity filled with relatively large solid spheres forming a coarse porous medium have been studied experimentally. Nusselt numbers were measured for Rayleigh numbers between 1.9 x 10(7) and 1.7 x 10(9), solid-to-fluid conductivity ratios between 0.32 and 618, and for different sphere sizes (d/H = 0.065, 0.14, 0.20), and packing geometries. The heat transfer results indicate that the presence of a porous medium in the cavity decreases the heat transfer compared to the pure-fluid cavity unless the solid spheres are highly conductive. We present a new Nusselt number correlation for coarse porous media based on porous medium dimensionless numbers. Particle image velocimetry and liquid crystal thermography measurements were performed in a refractive index-matched porous medium to obtain pore-scale velocity and temperature fields. The results show that the layers of spheres adjacent to the hot/cold walls play the most prominent role in the heat transfer reduction by hindering the formation of high-velocity boundary layers along the hot/cold walls, causing a portion of the boundary layer fluid to divert away from these walls, thus changing the stratified temperature distribution to a tilted one which leads to a lower overall heat transfer. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:实验研究了在不同侧加热的立方腔中的流动和传热,该立方腔充满了较大的固体球,形成了粗糙的多孔介质。对于1.9 x 10(7)和1.7 x 10(9)之间的瑞利数,0.32和618之间的固液电导率比以及不同的球体尺寸(d / H = 0.065、0.14、0.20),测量Nusselt数以及包装的几何形状。传热结果表明,与纯流体空腔相比,空腔中多孔介质的存在会降低传热,除非固体球具有高导电性。我们提出了一种基于多孔介质无量纲数的粗糙多孔介质的新Nusselt数相关性。在折射率匹配的多孔介质中进行了颗粒图像测速和液晶热成像测量,以获得孔尺度速度和温度场。结果表明,与热/冷壁相邻的球体层通过阻止沿热/冷壁形成高速边界层,导致一部分边界层流体,在热传递减少中发挥了最突出的作用。从而从这些壁上转移开来,从而将分层温度分布改变为倾斜的温度分布,从而导致总热量传递降低。 (C)2019作者。由Elsevier Ltd.发布

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