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Axial Compressor Mean-Line Analysis: Choking Modelling and Fully-Coupled Integration in Engine Performance Simulations

机译:轴向压缩机均值线分析:发动机性能模拟中窒息建模和完全耦合集成

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A mean-line compressor performance calculation method is presented that covers the entire operating range, including the choked region of the map. It can be directly integrated into overall engine performance models, as it is developed in the same simulation environment. The code materializing the model can inherit the same interfaces, fluid models, and solvers, as the engine cycle model, allowing consistent, transparent, and robust simulations. In order to deal with convergence problems when the compressor operates close to or within the choked operation region, an approach to model choking conditions at blade row and overall compressor level is proposed. The choked portion of the compressor characteristics map is thus numerically established, allowing full knowledge and handling of inter-stage flow conditions. Such choking modelling capabilities are illustrated, for the first time in the open literature, for the case of multi-stage compressors. Integration capabilities of the 1D code within an overall engine model are demonstrated through steady state and transient simulations of a contemporary turbofan layout. Advantages offered by this approach are discussed, while comparison of using alternative approaches for representing compressor performance in overall engine models is discussed.
机译:的平均线压缩机性能计算方法,提出覆盖整个运行范围内,包括地图的细颈区域。它可以直接集成到整个发动机的性能车型,因为它是在相同的仿真环境开发。代码具体化模型可以继承相同的接口,流体模型,求解,如发动机循环模型,允许一致的,透明的和强大的模拟。为了解决收敛问题,当压缩机接近操作或哽咽操作区域内,在叶片排和整体压缩机水平的方法模型窒息条件提出。压缩机特性图的缩口部分因而数值建立,允许充分的知识和处理的级间的流动条件。这样窒息建模功能中示出,用于在公开的文献在第一时间,为的多级压缩机的情况。总发动机模型内的一维代码的积分功能通过当代涡轮风扇布局的稳态和瞬态仿真证明。这种做法提供的优点进行了讨论,而使用替代的比较为代表的讨论整体的发动机型号压缩机性能的方法。

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