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Experimental Study of an Inclined Jet-In-Cross-Flow Interacting with a Vortex Generator

机译:斜射流与涡流相互作用的实验研究

摘要

An experiment is conducted on the effectiveness of a vortex generator (VG) in preventing lift-off of a jet-in-cross-flow (JICF), with film-cooling application in mind. The jet issues into the boundary layer at an angle of 20 to the free-stream. The effect of a triangular ramp-shaped VG is studied while varying its geometry and location. Detailed flow-field properties are documented for a specific case in which the height of the VG and the diameter of the orifice are comparable to the approach boundary layer thickness. This combination of VG and JICF produce a streamwise vortex pair with vorticity magnitude three times larger (and of opposite sense) than that found in the JICF alone. Such a VG appears to be most effective in keeping the jet attached to the wall. While most of the data are taken at a jet-to-freestream momentum flux ratio (J) of 2, limited surveys are done for varying J. The VG is found to have a significant effect even at the highest J (=11) covered in the experiment. Effect of parametric variation is studied mostly from surveys ten diameters downstream from the orifice. When the VG height is halved there is a lift-off of the jet. On the other hand, when the height is doubled, the jet core is dissipated due to larger turbulence intensities. Varying the location of the VG, over a distance of three diameters from the orifice, is found to have little impact. Rounding off the edges of the VG with increasing radius of curvature progressively diminishes the effect. However, a small radius of curvature may be quite tolerable in practice.
机译:考虑到膜冷却的应用,进行了涡流发生器(VG)防止横流喷射(JICF)升起的有效性的实验。射流以与自由流成20度的角度射入边界层。在改变其几何形状和位置的同时,研究了三角形斜坡形VG的效果。在特定情况下记录了详细的流场特性,在这种情况下,VG的高度和孔的直径可与进近边界层的厚度相媲美。 VG和JICF的这种组合产生的涡流对的涡流量比单独的JICF大三倍(且方向相反)。这样的VG似乎最有效地将射流固定在墙上。尽管大多数数据是在射流与自由流的动量通量比(J)为2的情况下获得的,但对于变化的J进行了有限的调查。即使在所覆盖的最高J(= 11)下,VG也具有显着影响在实验中。参数变化的影响主要是通过对孔板下游10个直径的调查来进行的。当VG高度减半时,喷嘴会升起。另一方面,当高度加倍时,由于较大的湍流强度,射流芯被消散。发现在距孔口三个直径的距离内改变VG的位置几乎没有影响。用增加的曲率半径修圆VG的边缘会逐渐减小效果。但是,实际上,小曲率半径是可以容忍的。

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