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Predicting turbulence and heat transfer in 3-D curved ducts by near-wall second moment closures

机译:通过近壁二阶矩闭塞预测3-D弯曲管道中的湍流和热传递

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This paper presents discussions on predicting turbulence and heat transfer in two types of square sectioned U-bend duct flows with mild and strong curvature by recent second moment closures. Batten et al.'s [AIAA J. 37 (1999) 785] modified version of Craft and Launder's [Int. J. Heat Fluid Flow 17 (1996) 245] two-component-limit (TCL) turbulence model and Shima's [Int. J. Heat Fluid Flow 19 (1998) 549] wall-reflection free model are presently focused on. They are low-Reynolds-number models totally free from geometrical parameters. The former model is realizable and called the TCL model. For turbulent heat flux, a higher order version of the generalized gradient diffusion hypothesis by Suga and Abe [Int. J. Heat Fluid Flow 21 (2000) 37] is applied along with the TCL model. The results suggest that although both second moment closures are generally good enough for predicting flow and heat transfer in the case of mild curvature, only the realizable TCL model is reliable in the strong curvature case.
机译:本文介绍了有关通过最近的第二矩闭合来预测两种类型的具有轻微曲率和强曲率的方形截面U形弯管流动的湍流和传热的讨论。 Batten等人的[AIAA J. 37(1999)785]修改了Craft和Launder的[Int。 J. Heat Fluid Flow 17(1996)245]两组分极限(TCL)湍流模型和Shima's [Int。 [J.热流体流,19(1998)549]目前无壁反射模型受到关注。它们是完全没有几何参数的低雷诺数模型。前一个模型是可实现的,称为TCL模型。对于湍流,Suga和Abe提出的广义梯度扩散假设的更高阶版本[Int。 J. Heat Fluid Flow 21(2000)37]与TCL模型一起应用。结果表明,尽管在温和曲率情况下两个矩矩闭合通常都足以预测流量和传热,但在强曲率情况下只有可实现的TCL模型是可靠的。

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