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Optimal geometry of L and C-shaped channels for maximum heat transfer rate in natural convection

机译:L和C形通道的最佳几何形状可在自然对流中获得最大的传热速率

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The present paper documents the geometric optimization of L and C-shaped channels in laminar natural convection subject to global constraints. The objective is to maximize the heat transfer rate from the hot wall to the coolant fluid. Three different configurations were considered: (i) an L-shaped asymmetric vertical heated channel with an adiabatic horizontal inlet, (ii) an asymmetric vertical heated channel with an adiabatic vertical outlet, and finally, (iii) a C-shaped vertical channel with horizontal inlet and outlet. The two first configurations are free to morph according to two degrees of freedom: the wall-to-wall spacing and inlet (or outlet) height. The third configuration is optimized with respect to the wall-to-wall spacing, and the heights of the inlet and outlet ports. The effect of the inlet or outlet horizontal adiabatic duct lengths is also investigated. The optimization is performed numerically by using the finite element technique, in the range 10{sup}5 < Ra < 10{sup}7 for Pr = 0.7, where Ra is the Rayleigh number based on a fixed total height H of the channel. The numerical results show that optimization is relevant, since the three degrees of freedom considered have a strong effect on the heat transfer delivered from the hot wall to the fluid. The optimal geometric characteristics obtained numerically (i.e., optimal spacing, optimal height and lengths) are reported and correlated within a 7.5% maximal disagreement range.
机译:本文件记录了层状自然对流中受全局约束的L和C形通道的几何优化。目的是使从热壁到冷却液的热传递速率最大化。考虑了三种不同的配置:(i)具有绝热水平入口的L形不对称垂直加热通道,(ii)具有绝热垂直出口的不对称垂直加热通道,最后,(iii)具有绝热垂直出口的C形垂直通道水平进口和出口。前两个配置可根据两个自由度自由变形:壁间距和入口(或出口)高度。关于壁到壁的间隔以及入口和出口的高度,第三配置被优化。还研究了入口或出口水平绝热导管长度的影响。通过使用有限元技术在10 {sup} 5

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