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Numerical investigation of natural convection heat transfer in a symmetrically cooled square cavity with a thin fin on its bottom wall

机译:底壁上薄翅片对称冷却方腔中自然对流传热的数值研究

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In the present paper, natural convection fluid flow and heat transfer in a square cavity heated from below and cooled from sides and the ceiling with a thin fin attached to its hot bottom wall is investigated numerically. The right and the left walls of the cavity, as well as its horizontal top wall are maintained at a constant temperature Tc, while the bottom wall is kept at a constant temperature Th ,with Th > Tc. The governing equations are solved numerically using the finite volume method and the couple between the velocity and pressure fields is done using the SIMPLER algorithm. A parametric study is performed and the effects of the Rayleigh number and the length of the fin on the flow pattern and heat transfer inside the cavity are investigated. Two competing mechanisms that are responsible for the flow and thermal modifications are observed. One is the resistance effect of the fin due to the friction losses which directly depends on the length of the fin, whereas the other is due to the extra heating of the fluid that is offered by the fin. It is shown that for high Rayleigh numbers, placing a hot fin at the middle of the bottom wall has more remarkable effect on the flow field and heat transfer inside the cavity.
机译:在本文中,在从下面加热的正方形腔中的自然对流流体流动和传热与侧面和天花板用附着在其热底壁附着的薄翅片中进行。腔的右侧和左壁以及其水平顶壁保持在恒定温度Tc处,而底壁保持在恒温TH,TC。用有限体积法在数值上进行数值求解控制方程,并且使用更简单的算法进行速度和压力场之间的耦合。研究了参数研究,并研究了瑞利数和翅片的长度对腔内的流动图案和热传递的影响。观察到负责流量和热修改的两个竞争机制。一个是由于直接取决于翅片的长度的摩擦损失,鳍片的电阻效应,而另一个是由于鳍片提供的流体的额外加热。结果表明,对于高瑞利数,在底壁的中间放置一个热翅片对流场和腔内的热传递具有更显着的影响。

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