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Numerical investigation of natural convection heat transfer over annular finned horizontal cylinder

机译:环形翅片水平圆柱自然对流换热的数值研究

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摘要

Natural convection heat transfer from a finned horizontal cylinder has been studied numerically. The present numerical investigation is able to capture a complete picture of natural convection over an annular finned cylinder from where easy visualization about the plume structure and flow field over the tube-fin surface can be obtained pictorially. In the present study, numerical simulations of full Navier-Stokes equation along with the energy equation have been conducted for a horizontal tube with annular fins of constant thickness for the laminar range of 5 ≤ Ra_s ≤ 10~8. Optimization studies on the conjugate heat transfer characteristics have been conducted to find the best fin spacing and fin-to-tube diameter ratio for maximum heat transfer. With addition of fins to the heated surface, heat transfer increases and gets a maximum value, then heat transfer starts to decrease. The optimum fin spacing for maximum heat transfer varies between 5 mm and 6 mm roughly for Raleigh number range of 5 ≤ Ra_s ≤ 10~8. The effect of the parameters like D/d, S/d and Ra_s on Nu_s and Nu_D are analyzed and a correlation for average Nusselt number has been developed for natural convection from a finned horizontal cylinder. A correlation for optimum fin spacing has also been developed as a function of Ra_s and D/d which may be useful for design of various heat exchangers.
机译:对翅片式水平圆柱体的自然对流换热进行了数值研究。目前的数值研究能够捕获环形翅片圆柱体上自然对流的完整情况,从那里可以直观地看到羽状结构和翅片表面上的流场的可视化。在本研究中,对于层厚为5≤Ra_s≤10〜8的恒定厚度的环形翅片的水平管,已经进行了完整的Navier-Stokes方程和能量方程的数值模拟。已经对共轭传热特性进行了优化研究,以找到最佳的翅片间距和翅片与管的直径比,以实现最大的传热。在散热片上增加散热片后,传热增加并达到最大值,然后传热开始减少。对于5≤Ra_s≤10〜8的罗利数范围,最大传热的最佳散热片间距大约在5 mm至6 mm之间。分析了诸如D / d,S / d和Ra_s之类的参数对Nu_s和Nu_D的影响,并为翅片式水平圆柱的自然对流开发了平均Nusselt数的相关性。还已经根据Ra_s和D / d开发了最佳翅片间距的相关性,这对于各种热交换器的设计可能是有用的。

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