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Decay of supersonic rectangular jet issuing from a nozzle with diagonal expansion ramps

机译:从具有对角线膨胀斜面的喷嘴发出的超音速矩形射流的衰减

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This paper addresses the effect of expansion ramps on the decay characteristics of a controlled supersonic rectangular jet. A Mach 1.8 rectangular jet issuing from a converging-diverging nozzle of aspect ratio 2 and Reynolds number 1.861?105 is considered as the base model for the study. Two separate nozzle models with expansion ramps placed at the diagonal ends on major and on the minor internal surface are considered for the present study. The diagonal placements of ramps induce additional vortices near the nozzle exit apart from the corner vortices emanating from the rectangular corners. Experimental and computational investigations at different expansion levels are carried to prove the enhanced mixing rate due to the induced vortex. The ramps on the minor side caused maximum supersonic core length reduction of 44% at an inlet total pressure of 4 bar and a minimum of 27% at an inlet total pressure of 8 bar. The maximum and minimum core length reductions caused by the ramps placed on the major side are 22% and 11% at inlet total pressures 6 and 8 bar respectively. Both experimental and numerical studies show that shock waves are rendered weak by the minor side placement of ramps at all expansion levels.
机译:本文探讨了膨胀斜面对受控超声速矩形射流衰减特性的影响。从纵横比为2且雷诺数为1.861-105的会聚-发散喷嘴发出的1.8马赫矩形射流被认为是该研究的基本模型。对于本研究,考虑了两个单独的喷嘴模型,它们的膨胀斜面位于主要和次要内表面的对角线端。斜面的对角线位置会在喷嘴出口附近引起额外的漩涡,除了矩形角产生的角漩涡。进行了不同膨胀水平的实验和计算研究,以证明归因于涡流而提高了混合速率。次侧的斜面在入口总压力为4 bar时使最大超声速芯长减少了44%,在入口总压力为8 bar时最小了27%。在入口总压力为6 bar和8 bar时,由放置在主侧的斜坡引起的最大和最小堆芯长度减少分别为22%和11%。实验和数值研究均表明,在所有扩展水平上,次要的斜坡放置都会使冲击波变弱。

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