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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Aerodynamic Optimization of High-Pressure Turbines for Lean-Burn Combustion System
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Aerodynamic Optimization of High-Pressure Turbines for Lean-Burn Combustion System

机译:稀薄燃烧系统高压涡轮的空气动力学优化

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Modern lean-burn combustors make use of high flow swirl to maintain flame stability. The swirling flow can persist downstream of the turbine first vane, changing the loading on the rotor, leading to a reduction in efficiency. This paper presents the results of an automatic optimization study carried out to mitigate the effect of high swirling flow on a high pressure turbine stage. A high-fidelity computational fluid dynamics (CFD)-based design optimization using a multipoint approximation (response surface) method is carried out to produce a new vane and a new rotor configuration with a significantly improved aerodynamic performance. It is demonstrated that the novel optimization methodology can cope well with a number of near equality constraints needed for a practical design.
机译:现代的稀薄燃烧器利用高流动涡流来维持火焰稳定性。涡流会持续存在于涡轮机第一叶片的下游,从而改变转子上的负载,从而导致效率降低。本文介绍了一项自动优化研究的结果,该研究旨在减轻高压涡轮级上高涡流的影响。使用多点逼近(响应面)方法进行了基于高保真计算流体力学(CFD)的设计优化,以生产具有显着改善的空气动力学性能的新叶片和新转子配置。事实证明,新颖的优化方法可以很好地应对实际设计所需的许多近似相等的约束。

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