Two-dimensional analysis of low-pressure flows in an inclined square cavity with two fins attached to the hot wall
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Two-dimensional analysis of low-pressure flows in an inclined square cavity with two fins attached to the hot wall

机译:倾斜方腔中的低压流动的二维分析,两个翅片连接到热壁

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AbstractThe gaseous low-pressure flow of a steady-state two-dimensional laminar natural convection heat transfer in a cavity with an attached two solid fins to the hot wall is numerically investigated. Such flows can be found in many engineering applications such as the “evacuated” solar collectors and in the receivers of the solar Parabolic Trough Collectors (PTCs), nuclear reactor cooling and electronic equipment cooling. Buoyancy effect is modeled using Boussinesq approximation. Effects of Knudsen and Rayleigh numbers, location and length of the fins, conductivity ratio and fins porosity, and the tilt angle on the flow and heat transfer characteristics are investigated. Physical parameters ranges in this study are as follows;0Kn0.1,103Ra106,LFtakes the values of 0.25, 0.5 and 0.75?m,HFtakes the values of 0.25_0.5, 0.25_0.75 and 0.5_0.75,1Kr8000,0ε1and0°θ90°. It is shown that Nusselt number depends directly on Rayleigh number and inversely on Knudsen number. In addition, it is found that attaching two solid fins to the hot wall will enhance the heat transfer for such flows. Moreover, it is found that the porous fins are superior to the solid fins as far as the heat transfer is concerned. In addition, it is shown that for the geometry where the lower fin height to cavity length ratio is 0.25 and the upper fin height to cavity length ratio is 0.75, the best heat transfer is achieved. In addition, for the fin lengths considered in the study, it is concluded that by increasing the length of the fin, a better heat transfer is achieved. Also, it is found that by increasing the tilt angle of the cavity, a better heat transfer is achieved up to a certain value which was found to be (30°) where beyond this value, Nusselt number will decrease. In addition, it is found that by increasing the conductivity ratio up to a certain value (103), better heat transfer is gained. Finally, a correlation among Nusselt number and the parameters investigated in this research proposed asN
机译:<![CDATA [ 抽象 气体低压流量在腔内稳态二维层压自然对流传热传热在数值上研究了热壁的附着两个固体翅片。这些流量可以在许多工程应用中找到,例如“疏散”的太阳能收集器和太阳能抛物线收集器(PTCS)的接收器,核反应堆冷却和电子设备冷却。使用Boussinesq近似模拟浮力效应。研究了Chaudsen和Rayleigh数,翅片,电导率和翅片孔隙率的位置和长度,以及倾斜角度对流动和传热特性的影响。本研究中的物理参数范围如下; 0 k n 0.1 10 3 < MML:MI> R A 10 6 l f 占0.25,0.5和0.75?m, h F 以0.25_0.5,0.25_0.75和0.5_0.75, < MML:Mn> 1 K R 8000 0 < / mml:mn> ε 1 0 ° < MML:Mo>≤ θ 90 ° 。结果表明,纽带数量直接取决于瑞利数,并反映了knudsen号码。另外,发现将两个固体翅片连接到热壁将增强这种流动的热传递。此外,目前发现多孔翅片优于固体翅片,只要传热涉及。另外,示出了,对于腔高度与腔长比的几何形状为0.25并且上翅片高度为0.75,实现了最佳热传递。另外,对于在研究中考虑的翅片长度,得出结论,通过增加翅片的长度,实现了更好的传热。而且,发现通过增加腔的倾斜角度,达到更好的传热达到一定的值,该值被发现(30°),其中超出该值,NUSERET数将降低。另外,发现通过将电导率增加到一定值(10 3 ),获得了更好的热传递。最后,在本研究中调查的NUSERET数和参数之间的相关性,提出为 n

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