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首页> 外文期刊>International Journal of Thermal Sciences >Performance optimisation of laminar fully developed flow through square ducts with rounded corners
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Performance optimisation of laminar fully developed flow through square ducts with rounded corners

机译:通过圆角方管的层流完全展开流的性能优化

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摘要

A study on combined first and second law based optimisation of thermal-hydraulic performance of laminar fully developed flow through square ducts with rounded corners has been presented in this paper. The objective functions have been considered according to suggestions of Webb and Bergles [7]. Four specific geometric constraints have been imposed on the shape of the ducts and these ducts have also been subjected to three different thermal and (or) hydraulic constraints. Two different thermal boundary conditions have been considered and the correlations for friction factor and Nusselt numbers have been adopted from the study of Ray and Misra [21]. The results obtained from the present study clearly show that the optimal duct geometry strongly depends on geometric and thermal-hydraulic constraints, as well as, the objective functions and hence, no general comment can be made with respect to the superiority of a particular geometry of the ducts. Nevertheless, the present study also shows that although entropy generation minimisation may be considered to be an important tool, one requires being careful in using it for thermal-hydraulic optimisation since it may lead to contradictory results for some of the performance evaluation criteria.
机译:本文提出了基于第一定律和第二定律相结合的层流完全展开流经圆角方管的热工水力性能优化的研究。根据Webb和Bergles的建议考虑了目标函数[7]。在管道的形状上施加了四个特定的几何约束,并且这些管道也受到了三个不同的热和(或)水力约束。已经考虑了两种不同的热边界条件,并且从Ray和Misra的研究中采用了摩擦因数和Nusselt数的相关性[21]。从本研究中获得的结果清楚地表明,最佳的管道几何形状在很大程度上取决于几何形状和热工液压约束以及目标函数,因此,对于管道的特定几何形状的优越性,无法做出一般性评论。管道。尽管如此,本研究还表明,尽管熵产生最小化可能被认为是一种重要的工具,但在将其用于热工液压优化时仍需谨慎,因为它可能导致某些性能评估标准的结果相互矛盾。

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