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Development of the ball-spine inverse design algorithm to swirling viscous flow for performance improvement of an axisymmetric bend duct

机译:旋转粘性流的球-脊逆设计算法的改进,以改善轴对称弯管的性能

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In the present study, the ball-spine inverse design algorithm is developed for swirling viscous flow regime to improve the performance of an axisymmetric 90-degree bend duct between the radial and axial diffuser of a centrifugal compressor. Performance improvement of the 90-degree bend duct is accomplished to increase its pressure recovery without separation. First, the effects of geometric parameters on flow separation are numerically studied and a safe margin is obtained for prevention of flow separation and stall. Then, the safe margin is enlarged to reach a higher pressure recovery via the shape modification of duct walls. The shape modification process integrates the BSA as shape modification algorithm and an axisymmetric flow analysis code as flow solver. Shape modification process is carried out by improving the current wall pressure distribution and applying it to the inverse design algorithm. Results show merits and robustness of the BSA for duct design in swirling viscous flow regime whereby the pressure recovery coefficient of the 90-degree bend duct increases up to 7%. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:在本研究中,开发了球脊逆设计算法,用于旋流粘性流态,以改善离心压缩机的径向和轴向扩散器之间的轴对称90度弯管的性能。 90度弯管的性能得以提高,以增加其压力恢复而无需分离。首先,对几何参数对流动分离的影响进行了数值研究,并获得了防止流动分离和失速的安全裕度。然后,通过改变管壁的形状来扩大安全裕度以达到更高的压力恢复。形状修改过程将BSA作为形状修改算法,并将轴对称流动分析代码集成为流动求解器。通过改善当前壁压力分布并将其应用于逆向设计算法来进行形状修改过程。结果表明,BSA在旋流粘性流态下用于风管设计的优点和稳健性使90度弯管的压力恢复系数提高了7%。 (C)2016 Elsevier Masson SAS。版权所有。

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