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首页> 外文期刊>International Journal of Mechanical Sciences >Effects of condensing moist air on shock induced oscillation around an airfoil in transonic internal flows
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Effects of condensing moist air on shock induced oscillation around an airfoil in transonic internal flows

机译:冷凝的湿空气对跨音速内部流动中机翼周围的激振引起的振荡的影响

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Shock induced oscillation around an airfoil in transonic internal flow fields are often observed due to complex shock wave boundary layer interaction. However, in actual flow where finite amount of water vapor is present in the air, the rapid expansion of the flow may give rise to non-equilibrium condensation. Effects of condensing moist air on unsteady shock induced oscillation were numerically studied for total back pressure to reservoir pressure ratios of 0.73-0.65. Results showed that in case with condensing moist air flows, the root mean square of shock induced pressure oscillation and the oscillation frequency were reduced significantly compared with those without the non-equilibrium condensation. However, there was an increase of total pressure loss for condensing moist air flows.
机译:由于复杂的冲击波边界层相互作用,经常观察到跨音速内部流场中翼型周围的激振引起的振荡。然而,在空气中存在有限量的水蒸气的实际流动中,流动的快速膨胀可能引起不平衡冷凝。对于总背压与储层压力之比为0.73-0.65的数值研究,研究了凝结湿空气对不稳定冲击引起的振荡的影响。结果表明,在凝结湿空气的情况下,与没有非平衡凝结的情况相比,冲击引起的压力振荡的均方根和振荡频率显着降低。但是,冷凝湿空气流的总压力损失增加了。

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