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Design of Aspirated Compressor Blades Using Three-dimensional Inverse Method

机译:三维逆法设计吸气压缩机叶片

摘要

A three-dimensional viscous inverse method is extended to allow blading design with full interaction between the prescribed pressure-loading distribution and a specified transpiration scheme. Transpiration on blade surfaces and endwalls is implemented as inflow/outflow boundary conditions, and the basic modifications to the method are outlined. This paper focuses on a discussion concerning an application of the method to the design and analysis of a supersonic rotor with aspiration. Results show that an optimum combination of pressure-loading tailoring with surface aspiration can lead to a minimization of the amount of sucked flow required for a net performance improvement at design and off-design operations.
机译:扩展了三维粘性反演方法,以允许叶片设计在规定的压力-载荷分布与指定的蒸腾方案之间实现完全交互。叶片表面和端壁上的蒸腾作用是作为流入/流出边界条件实现的,概述了对该方法的基本修改。本文重点讨论了该方法在带吸力的超音速转子的设计和分析中的应用。结果表明,压力负载调整与表面抽吸的最佳组合可以使设计和非设计操作的净性能改善所需的抽吸流量最小化。

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