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首页> 外文期刊>Journal of propulsion and power >Robust Design Optimization of Gas Turbine Compression Systems
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Robust Design Optimization of Gas Turbine Compression Systems

机译:燃气轮机压缩系统的稳健设计优化

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Gas turbine compression systems are required to perform adequately over a range of operating conditions-Complexity has encouraged the conventional design process for compressors to focus initially on one operating point, usually the most common or arduous, to draw up an outline design. Generally, only as this initial design is refined is its offdesign performance assessed in detail. Not only does this necessarily introduce a potentially costly and time-consuming extra loop in the design process, but it also may result in a design whose offdesign behavior is suboptimal. A version of nonintrusive polynomial chaos was previously developed in which a set of orthonormal polynomials was generated to facilitate a rapid analysis of robustness in the presence of generic uncertainties with good accuracy. In this paper, this analysis method is incorporated in real time into the design process for the compression system of a three-shaft gas turbine aeroengine. This approach to robust optimization is shown to lead to designs that exhibit consistently improved system performance with reduced sensitivity to offdesign operation.
机译:要求燃气轮机压缩系统在一定范围内的运行条件下具有足够的性能-复杂性促使压缩机的常规设计过程最初将重点放在一个工作点上,通常是最常见或最艰巨的工作点,以草拟轮廓设计。通常,只有在改进初始设计后,才会详细评估其非设计性能。这不仅必定会在设计过程中引入潜在的昂贵且费时的额外循环,而且还可能导致设计的非设计行为不理想。先前已经开发了一种非侵入式多项式混沌的版本,其中生成了一组正交多项式,以便于在具有通用精度的情况下以良好的准确性快速分析鲁棒性。在本文中,这种分析方法被实时地结合到三轴燃气轮机航空发动机压缩系统的设计过程中。事实证明,这种强大的优化方法可导致设计表现出持续改进的系统性能,同时降低对非设计运行的敏感性。

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