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Numerical investigation of heat transfer enhancement in a dimpled cooling channel with different angles of the vortex generator

机译:涡流发生器不同角度的凹坑式冷却通道传热增强的数值研究

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摘要

This study carried out numerical simulations to investigate the flow and heat transfer characteristics for air flowing in a dimpled cooling channel with a vortex generator. A crescent-shaped protrusion was mounted as a vortex generator on the downstream of the dimple. A direct numerical simulation (DNS) was conducted in a dimpled cooling channel with a Reynolds number of 2800. Seven different cases were considered, including one general dimpled wall and dimpled wall with six different angles inside the vortex generator. For the vortex generator mounted cases, the main design variable is the angle inside the vortex generator, which varies from 0 to 75 degrees. The normalized thermo-performance factors were calculated to estimate the performance of the cooling channel. The normalized thermo-performance factors f/f(0), j/j(0), and the volume goodness factor decreases as theta increases. The dimpled channel with a vortex generator shows better normalized thermo-performances than the general dimpled channel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究进行了数值模拟,以研究涡流发生器在凹坑式冷却通道中流动的空气的流动和传热特性。新月形的突起作为涡流发生器安装在酒窝的下游。在雷诺数为2800的带凹坑的冷却通道中进行了直接数值模拟(DNS)。考虑了7种不同情况,包括一个普通的带凹坑的壁和涡流发生器内部具有6个不同角度的带凹坑的壁。对于安装在涡流发生器上的壳体,主要设计变量是涡流发生器内的角度,该角度在0到75度之间变化。计算归一化的热性能因子以估计冷却通道的性能。归一化的热性能因子f / f(0),j / j(0)和体积优度因子随theta的增加而降低。带有涡流发生器的凹坑通道比一般的凹坑通道具有更好的归一化热性能。 (C)2019 Elsevier Ltd.保留所有权利。

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