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首页> 外文期刊>International Journal of Heat and Fluid Flow >Downstream evolution of junction flow three-component velocity fluctuations through the lens of the diagnostic plot
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Downstream evolution of junction flow three-component velocity fluctuations through the lens of the diagnostic plot

机译:通过诊断图的镜头下游流量三分量速度波动的下游演变

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Experimental measurements of the streamwise and transverse velocity components have been acquired in three spanwise/wall-normal planes in the wakes of both a streamlined 'wing' and a bluff 'wing' junction. The 'extended' diagnostic plot introduced by Alfredsson et al. (2011) (see figure 3 therein) is used as a benchmark to locally evaluate the departure of turbulent wing-body junction flow wakes from 'equilibrium' boundary layers. Both obstacles produce a secondary flow of Prandtl's first kind, which disrupts the equilibrium implied by the universality of the extended diagnostic plot. The plane wake of the obstacle itself (away from the junction) also disrupts this equilibrium. It is found that with downstream development the boundary layer eventually recovers to the base zero-pressure-gradient 'equilibrium', and that this recovery process emanates from the near-wall region. The transverse velocity components are also examined in "extended diagnostic"form, revealing that the wall-normal fluctuations recover to the zero-pressure-gradient case near the wall more rapidly than the wall-parallel components.
机译:在流线型的“翼”和虚张声的翼形交界处的唤醒中,已经在三个翼展/壁正常平面中获得了流动和横向速度分量的实验测量。 Alfredsson等人推出的“扩展”诊断图。 (2011)(参见图3中)用作本地评估湍流翼体结流唤起“均衡”边界层的偏离的基准。这两个障碍都会产生普朗特的第一类的二次流动,这破坏了扩展诊断图的普遍性所暗示的均衡。障碍物本身的平面唤醒(远离交界处)也破坏了这种平衡。发现,随着下游发展,边界层最终恢复到基本零压力梯度'平衡',并且该恢复过程从近壁区域散发出来。还在“扩展诊断”形式中检查横向速度分量,揭示壁正常波动恢复到壁附近的零压力梯度壳体,比壁平行分量更快。

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