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A numerical study on entropy generation induced by turbulent forced convection in curved rectangular ducts with various aspect ratios

机译:纵横比不同的矩形弯管中湍流强迫对流产生熵的数值研究

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The present paper analyzes the entropy generation induced by turbulent forced convection in a curved rectangular duct with external heating by numerical methods. The problem is assumed as steady, three-dimensional and turbulent. The flow features, including the secondary flow motions, the distribution of local entropy generation as well as the overall entropy generation in the whole flow fields, are analyzed. For a baseline case with Re=20,000, external heat flux q~*=0.112 and aspect ratio γ=1, the results show the entropy generation induced by the frictional irreversibility concentrates within the regions adjacent to the duct walls, whereas the entropy generation resulted from the heat transfer irreversibility only significantly occurs near the outer wall of the duct where the external heat flux imposed. Except the baseline case, two additional cases with aspect ratio equal to 0.25 and 4 are calculated. Through the comparison of the three aspect-ratio cases, it is seen that the resultant entropy generations in the flow fields for the three cases are all dominated by the frictional irreversibilities. Among the three aspect-ratio cases, the resultant entropy generation is minimal in the γ=1 case. Accordingly, the case with γ=1 is concluded to be the optimal aspect ratio under the current flow condition based on the minimal entropy generation principle.
机译:本文利用数值方法分析了外部加热下矩形弯管内湍流强迫对流引起的熵产生。该问题假定为稳定的,三维的和湍流的。分析了整个次流场的流动特征,包括二次流动,局部熵产生的分布以及整体熵的产生。对于Re = 20,000,外部热通量q〜* = 0.112和长宽比γ= 1的基线情况,结果表明,摩擦不可逆性集中在管道壁附近的区域中引起了熵的产生,而熵的产生是由于由传热引起的不可逆性仅在管道的外壁强加外部热通量的地方显着发生。除基线情况外,还计算了另外两个纵横比等于0.25和4的情况。通过对三种长宽比情况的比较,可以看出,对于这三种情况,流场中所产生的熵的产生全都由摩擦不可逆性主导。在这三种长宽比情况下,在γ= 1情况下产生的熵最小。因此,基于最小熵产生原理,将γ= 1的情况推断为当前流动条件下的最佳纵横比。

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