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Supersonic jet flow control using semi-circular corrugated tabs

机译:使用半圆形波纹片的超音速喷射流控制

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Purpose The purpose of this study is to increase the jet mixing effectiveness of Mach 1.6 axisymmetric jet using semi-circular corrugated triangular tabs (Tabs A, B and C), in which the locations of the semi-circular corrugations are varied along the leaned sides of the triangular tabs. Design/methodology/approach The tabs are fixed at the exit of the nozzle facing each other 180 degrees apart. To quantify the jet mixing effectiveness of the semi-circular corrugated tabs, Pitot pressure measurements were carried out for the cases of over-expansion, marginally over-expansion and under-expansion levels of Mach 1.6 jet, along the jet centerline and the jet spread, along and normal to the tab axis. Findings The results exhibit that the semi-circular corrugated Tab A augments the jet mixing when compared to Tabs B and C. This impact in jet mixing is strongly due to the small-scale vortices shed from the tabs and the mixed effect of the corrugation locations and expansion ratio. The maximum percentage reduction in core length is about 73.6 per cent for the jet with semi-circular corrugated Tab A at NPR 5, whereas it is 71.4 and 67.1 per cent for Tabs B and C, respectively. Practical implications - The reduction in core length of the jet with minimum thrust loss is obtained by controlling the jet used with semi-circular corrugated triangular tabs of equal blockage ratio 5.12 per cent with respect to the nozzle exit diameter. Originality/value The locations of the semi-circular corrugations varied systematically at the equally leaned sides of the triangular tab ensure the novelty of this study.
机译:目的这项研究的目的是使用半圆形波纹三角形凸片(制表符A,B和C)提高Mach 1.6轴对称射流的射流混合效率,其中半圆形波纹的位置沿倾斜边变化三角形的标签。设计/方法/方法固定片固定在喷嘴的出口处,彼此面对,彼此间隔180度。为了量化半圆形波纹片的射流混合效果,沿着射流中心线和射流展布,对马赫1.6射流的过度膨胀,边际过度膨胀和膨胀不足水平进行了皮托管压力测量,沿着并垂直于制表符轴。研究结果表明,与Tabs B和C相比,半圆形瓦楞纸Tab A增强了射流混合。对射流混合的影响主要归因于Tabs产生的小规模旋涡和瓦楞位置的混合效应和膨胀率。对于NPR 5,使用半圆形波纹Tab A的喷气机,芯长最大减少百分比约为73.6%,而对于Tab B和C分别为71.4和67.1%。实际意义-通过控制与相对于喷嘴出口直径的堵塞率为5.12%的相等阻塞比率为5.12%的半圆形波纹状三角形凸耳一起使用,可以使喷头的芯长减小,而推力损失最小。独创性/价值半圆形波纹的位置在三角形凸片的同等倾斜侧系统地变化,确保了这项研究的新颖性。

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