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首页> 外文期刊>The Aeronautical Journal >Numerical study of uneven wall-heating effect for a one side rib-roughened cooling channel subject to rotation
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Numerical study of uneven wall-heating effect for a one side rib-roughened cooling channel subject to rotation

机译:一侧肋粗化冷却通道旋转时壁加热不均匀效应的数值研究

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This paper investigates the impact of the wall-heating conditions on the heat transfer performance of a rotating channel with one side smooth and one side roughened by 45 degrees inclined ribs. Previous experimental and numerical studies for single-ribbed wall-heated channels showed that rotation has a significant negative impact on heat transfer performance. In order to investigate this uncommon behaviour, RANS simulations were conducted under three different wall-heating conditions in the present study: ribbed wall heated, all walls heated and adiabatic conditions. Numerical results show that the presence of uneven wall-heating conditions has a negligible impact on the stationary case, but it has a large influence on rotational cases, in both, the heat transfer and the flow field. The underlying reason is that in rotating cases, uneven heating results in different buoyancy effects on the trailing and leading walls of the channel that alter the main flow velocity profile. As a consequence, also secondary flows and heat transfer performance are affected.
机译:本文研究了壁面加热条件对旋转通道的传热性能的影响,该旋转通道的一侧光滑且一侧经45度倾斜肋粗化。以前对单肋壁加热通道进行的实验和数值研究表明,旋转对传热性能有很大的负面影响。为了研究这种不常见的行为,在本研究中,在三种不同的壁加热条件下进行了RANS模拟:带肋壁加热,所有壁加热和绝热条件。数值结果表明,不均匀的壁加热条件的存在对固定情况的影响可以忽略不计,但在旋转情况下,无论在传热还是在流场方面,其影响都很大。根本原因是,在旋转情况下,加热不均匀会在通道的后壁和前壁上产生不同的浮力效应,从而改变主流流速分布。结果,二次流和传热性能也受到影响。

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