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UNSTEADY FLOW SIMULATIONS OF A TRANSONIC NOZZLE AND CASCADE FOR A TIME-DEPENDENT BOUNDARY FLOW

机译:跨音速喷嘴的不稳定流模拟和级联的时间依赖边界流量

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In this study we investigate unsteady compressible internal flow caused by flow fluctuations at an inlet or outlet flow-boundary. A finite-volume time-marching method has been developed for the unsteady flow analysis. This paper presents the proposed method and reports the results of a numerical investigation into the effects of a time-varying back pressure to a two-dimensional transonic nozzle and of a pulsating inlet flow to a transonic three-dimensional cascade of tapered blades. The computational model is based on a solution of the unsteady Euler equations for compressible flow. The time accurate solution is advanced by an explicit single-step second order time integration scheme. It has been found that the flow fluctuations at flow boundaries can cause strong unsteady effects on the operation of nozzles and cascades. Two modes of operation have been predicted for the unsteady flow in the nozzle: an upstream moving shock wave (mode-A) and an oscillating shock wave (mode-B). The results for the cascade have shown that the pulsating inlet flow causes the shock wave to originate, to move upstream and weaken over the period; the supersonic region on the blade surface varies continuously. The instantaneous mass flow rates and shock motions have been determined for them; they are important for their design and performance calculations.
机译:在这项研究中,我们调查在入口或出口流动边界造成的流量波动不稳可压缩内部流动。甲有限体积时间推进方法已被开发用于非定常流分析。本文呈现所提出的方法和数值调查随时间变化的背压以二维跨音速喷管和一个脉动进气流的影响的结果报告给锥形叶片的跨音速三维级联。计算模型是基于可压缩流动不稳定欧拉方程的溶液。时是准确的溶液是通过显式的单步二阶时间积分方案提前。已经发现,在流动的边界流的波动会造成喷嘴和级联操作强大的不稳定影响。两种操作模式已经被预测为在喷嘴的非定常流:上游移动冲击波(模式A)和振荡冲击波(模式B)。用于级联的结果表明,脉动入口流引起的冲击波来发起,移动上游和削弱在此期间;在叶片表面上的超音速区连续地变化。瞬时质量流量和冲击运动已经确定了他们;他们为自己的设计和性能计算的重要。

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