首页> 外文期刊>International Journal of Heat and Mass Transfer >Shape optimization of three-dimensional channel roughened by angled ribs with RANS analysis of turbulent heat transfer
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Shape optimization of three-dimensional channel roughened by angled ribs with RANS analysis of turbulent heat transfer

机译:斜肋粗糙化三维通道的形状优化及湍流传热的RANS分析

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摘要

A numerical procedure for optimizing the shape of three-dimensional channel with angled ribs extruded on both walls is presented to enhance turbulent heat transfer. The response surface based optimization is used as an optimization technique with Reynolds-averaged Navier-Stokes analysis of fluid flow and heat transfer. Shear stress transport (SST) turbulence model is used as a turbulence closure. Computational results for heat transfer rate show good agreements with experimental data. Four dimensionless variables such as, rib pitch-to-rib height ratio, rib height-to-channel height ratio, streamwise rib distance on opposite wall to rib height ratio, and the attack angle of the rib are chosen as design variables. The objective function is defined as a linear combination of heat transfer and friction loss related terms with a weighting factor. D-optimal method is used to determine the training points as a mean of design of experiment. Sensitivity of the objective function to each design variable has been evaluated. And, optimal values of the design variables have been obtained in a range of the weighting factor.
机译:提出了一种优化三维通道形状的数值程序,该三维通道的两个壁上都挤压有斜肋,以增强湍流的热传递。基于响应面的优化被用作Reynolds平均Navier-Stokes分析流体流动和传热的优化技术。剪切应力传递(SST)湍流模型被用作湍流闭合。传热速率的计算结果与实验数据吻合良好。选择四个无因次变量,如肋骨间距与肋骨的高度比,肋骨高度与通道的高度比,相对壁上的流向肋骨距离与肋骨高度比以及肋骨的迎角作为设计变量。目标函数定义为传热和摩擦损失相关项与加权因子的线性组合。 D-最优方法被用来确定训练点,作为实验设计的手段。目标函数对每个设计变量的敏感性已得到评估。并且,已经在加权因子的范围内获得了设计变量的最佳值。

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