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首页> 外文期刊>Energies >Unsteadiness of Tip Leakage Flow in the Detached-Eddy Simulation on a Transonic Rotor with Vortex Breakdown Phenomenon
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Unsteadiness of Tip Leakage Flow in the Detached-Eddy Simulation on a Transonic Rotor with Vortex Breakdown Phenomenon

机译:具有涡旋破坏现象的跨音速转子分离涡流模拟中叶尖泄漏流的不稳定性

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Tip leakage vortex (TLV) in a transonic compressor rotor was investigated numerically using detached-eddy simulation (DES) method at different working conditions. Strong unsteadiness was found at the tip region, causing a considerable fluctuation in total pressure distribution and flow angle distribution above 80% span. The unsteadiness at near choke point and peak efficiency point is not obvious. DES method can resolve more detailed flow patterns than RANS (Reynolds-averaged Navier–Stokes) results, and detailed structures of the tip leakage flow were captured. A spiral-type breakdown structure of the TLV was successfully observed at the near stall point when the TLV passed through the bow shock. The breakdown of TLV contributed to the unsteadiness and the blockage effect at the tip region.
机译:利用分离涡模拟(DES)方法,在不同工况下,对跨音速压缩机转子的叶尖泄漏涡(TLV)进行了数值研究。在尖端区域发现强烈的不稳定状态,导致总压力分布和流角分布在跨度超过80%时出现较大波动。在扼流点和峰值效率点附近的不稳定不是很明显。与RANS(雷诺平均Navier–Stokes)结果相比,DES方法可以解决更详细的流动模式,并且可以捕获尖端泄漏流的详细结构。当TLV通过弓形冲击时,在接近失速点成功地观察到了TLV的螺旋型击穿结构。 TLV的破坏导致尖端区域的不稳定和阻塞效应。

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