首页> 外文期刊>International Journal of Heat and Mass Transfer >Visualization of heat flow using Bejan's heatline due to natural convection of water near 4 ℃ in thick walled porous cavity
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Visualization of heat flow using Bejan's heatline due to natural convection of water near 4 ℃ in thick walled porous cavity

机译:由于壁厚的多孔腔中4℃附近的水自然对流,使用Bejan热线可视化热流

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摘要

A numerical study on natural convection heat transfer of cold water near 4 ℃ in a thick bottom walled cavity filled with a porous medium has been performed. It is assumed that the cavity is isothermally heated from the outside of the thick bottom wall and cooled from ceiling. The finite-difference method has been used to solve the governing partial differential equations of heat and fluid flow. Effects of thermal conductivity ratio, Rayleigh number and bottom wall thickness on heat transfer from the bottom to the ceiling have been studied. The heatline visualization technique has been used to demonstrate the path of heat transport through the enclosure. Moreover, streamlines and isotherms have been used to present fluid flow and temperature distributions. The obtained results show that multiple circulation cells are formed in the cavity and the local Nusselt numbers at the bottom wall and solid-fluid interface are highly affected by formed cells. The increase of Rayleigh number and thermal conductivity ratio increases heat transfer through the cavity. However, the increase of thickness of the bottom wall reduces the mean Nusselt number. Almost one-dimensional conduction heat transfer is observed in the solid bottom wall of the cavity.
机译:在充满多孔介质的厚底壁腔中,对4℃附近冷水的自然对流传热进行了数值研究。假设从厚底壁的外部等温加热空腔,并从天花板冷却。有限差分法已被用于求解热流和流体流的控制偏微分方程。研究了导热系数,瑞利数和底壁厚度对从底部到天花板的热传递的影响。热线可视化技术已用于演示通过外壳的热传递路径。此外,流线和等温线已被用于呈现流体流量和温度分布。获得的结果表明,在空腔中形成了多个循环单元,并且在底壁和固体-流体界面处的局部Nusselt数受形成单元的影响很大。瑞利数和导热率的增加增加了通过腔的热传递。但是,底壁厚度的增加会降低平均Nusselt数。在空腔的实心底壁中观察到几乎一维导热。

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