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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >Transonic moist air flow around a symmetric disc butterfly valve with non-equilibrium condensation
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Transonic moist air flow around a symmetric disc butterfly valve with non-equilibrium condensation

机译:跨音速湿空气绕对称盘式蝶阀流动,具有非平衡冷凝

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摘要

Transonic flow around a symmetric disc butterfly valve is associated with the appearance of shock waves on valve surfaces. In this case, the interaction between shock waves and boundary layers becomes complex and thus generates the flow-induced aerodynamic instability. In the transonic or supersonic flow where vapour is contained in the main flow, the rapid expansion of the flow may give rise to non-equilibrium condensation. In the present study, the effect of non-equilibrium condensation of moist air on the shock-induced flow field oscillation around a butterfly valve was investigated numerically. The results showed that in cases with non-equilibrium condensation, the flow field aerodynamic instabilities such as root mean square of pressure oscillation and shock-induced oscillation frequency are reduced significantly compared with those without the non-equilibrium condensation. Moreover, the total pressure loss increases and the vortex shedding frequency is reduced with non-equilibrium condensation.
机译:围绕对称盘形蝶阀的跨音速流动与阀表面冲击波的出现有关。在这种情况下,冲击波与边界层之间的相互作用变得复杂,从而产生了流动引起的空气动力学不稳定性。在主流中包含蒸汽的跨音速或超音速流中,流的快速膨胀可能会导致非平衡冷凝。在本研究中,数值研究了湿空气的非平衡冷凝对蝶阀周围的激振流场振荡的影响。结果表明,与不平衡凝结相比,不平衡凝结的情况下,流场空气动力学的不稳定性,如压力振荡的均方根和激振引起的振荡频率的降低。而且,由于非平衡冷凝,总压力损失增加并且涡旋脱落频率降低。

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