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Numerical investigations of circular tube fitted with helical screw-tape inserts from the viewpoint of field synergy principle

机译:从场协同原理的角度研究装有螺旋胶带的圆管的数值研究

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3-D numerical simulations are performed for heat transfer and fluid flow characteristics of the tubes fitted with helical screw-tape inserts. The comparison between the RNG k-epsilon turbulence model and the SST k-omega turbulence model in prediction of swirling flow shows that the latter has better qualitative and quantitative agreements with the experimental results than the former. The simulation results show that the novel helical inserts with right and left twists alternately have better heat transfer performance than that of the helical inserts with uniformly right twists. The simulation results are analyzed from the viewpoint of field synergy principle, it is found that the principle could explain well the mechanism of heat transfer enhancement of the helical twist inserts. The smaller the mean intersection angle between the temperature gradient and velocity vector, the larger the Nusselt number; in addition, the smaller local intersection angle also implies the higher local heat transfer coefficient.
机译:对装有螺旋形胶带的管子的传热和流体流动特性进行了3-D数值模拟。 RNGk-ε湍流模型和SSTk-ω湍流模型在旋流预测中的比较表明,后者与实验结果具有更好的定性和定量吻合。仿真结果表明,新型的右旋和左旋螺旋插入件比具有均匀右旋的螺旋插入件具有更好的传热性能。从场协同原理的角度对仿真结果进行了分析,发现该原理可以很好地解释螺旋加捻刀片的传热机理。温度梯度和速度矢量之间的平均相交角越小,则努塞尔数越大;反之,另外,较小的局部相交角也意味着较高的局部传热系数。

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