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首页> 外文期刊>AIAA Journal >Multistage Coupling for Unsteady Flows in Turbomachinery
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Multistage Coupling for Unsteady Flows in Turbomachinery

机译:涡轮机械中非定常流动的多级耦合

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We present a three-dimensional time-linearized unsteady Euler solver for computing unsteady flows in multistage turbomachines. Using this approach, each blade row is modeled on a computational grid spanning a single blade passage. Within each blade passage, several time-linearized unsteady solutions, each of which have different frequencies and interblade phase angles, are computed. These various solutions are coupled together at the interrow boundaries between the blade rows. The coupling allows one to pass the pressure, entropy, and vorticity waves traveling between neighboring blade rows resulting in an efficient multistage analysis of unsteady flows in turbomachinery. Results that demonstrate the accuracy and efficiency of the method, as well as the importance of multistage effects, are presented for several geometries. In particular, we show that multistage effects can be significant for the aerodynamic loads acting on a given blade row. Furthermore, the method presented is highly efficient. For example, a flutter calculation requires only about three times the CPU time of one steady flow computation for each interblade phase angle and frequency considered.
机译:我们提出了一个三维时间线性化非定常欧拉求解器,用于计算多级涡轮机中的非定常流动。使用这种方法,每个叶片行都在跨越单个叶片通道的计算网格上建模。在每个叶片通道中,计算了几个时间线性化的非定常解,每个解具有不同的频率和叶片间相角。这些各种解决方案在叶片排之间的行边界处耦合在一起。这种耦合允许一个通过的压力,熵和涡流在相邻叶片行之间传播,从而对涡轮机械中的非定常流动进行了有效的多级分析。结果表明了该方法的准确性和效率,以及多阶段效应的重要性,并针对几种几何形状进行了介绍。特别是,我们表明,多级效应对于作用在给定叶片排上的空气动力负载可能很重要。此外,提出的方法是高效的。例如,对于所考虑的每个刀片间相位角和频率,颤动计算仅需要一个稳定流计算的CPU时间的三倍左右。

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