高负荷轴流压气机叶栅边界层吸力分离控制研究

X. Mao, Bo Liu, F. Yuan
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引用次数: 0

摘要

采用计算方法,增加了对高负荷轴流压气机叶栅边界层吸力分离控制的物理认识。本文所研究的叶栅既有沿整个叶跨的吸力面分离,也有轮毂角的三维分离。结果表明:吸力作用后流动结构会发生改变,从而导致损失和堵塞产生的变化。SS吸力方案可以有效控制尾缘附近边界层分离,并在一定程度上缓解三维分离。由于SS上存在边界层分离,不能简单地用三维分离的位移厚度来评价整体性能,还应考虑流型和涡结构的变化。在二次流发展的不同阶段,吸力控制的效果和作用机理不同。吸力控制适用于开发前期,且越早越好,不宜在开发中期进行控制。发展后期的吸力控制是另一种相对有效的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Separation Control by Boundary Layer Suction applied to a Highly-Loaded Axial Compressor Cascade
Computational method has been used to increase the physical understanding of the separation control by boundary layer suction in a highly-loaded axial compressor cascade. The investigated cascade in current paper has separations both on the suction surface (SS) along the whole blade span and three-dimensional separation in the hub corner. The results show that the flow structure can be changed after the suction, which leads to the variation of loss and blockage generation. The suction scheme on the SS can effectively control the boundary layer separation near trailing edge and to some extent mitigate the three-dimensional separation. The displacement thickness of the three-dimensional separation cannot be simply used to evaluate the overall performance due to the existence of the boundary layer separation on the SS, the variation of the flow pattern and vortex structures should also be considered. The effectiveness and mechanisms varies by conducting suction control at different development stage of the secondary flow. Applying suction control is suitable at the early development stage, and the earlier the better, while it is inappropriate to carry out the control at the middle development stage. The suction control at the late development stage is another relative effective method.
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