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Investigation on coanda gap variable-camber inlet guide vanes for core driven fan stage

机译:核心驱动风机级柯恩达间隙变腔进气导叶的研究

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As a key part of the core driven fan stage (CDFS), variable-camber inlet guide vanes (VIGVs) must be stably and efficiently operated at two different operation modes including the single bypass mode and the double bypass mode. The design method was presented to generate the VIGVs with wide operating range of flow turning angles under the requirement of low loss in order to satisfy the needs of CDFS. The results of numerical simulation and experiment test showed that the use of Coanda type surface to design the slotted shape can effectively enhance the wall attachment performance of the leakage flow and suppress the development of the suction surface boundary layer behind the slotted position. Moreover, the Coanda type surface can reduce more than a half of total pressure loss than the conventional circle shape at the large flow turning angles. The VIGVs are in good agreement with the designing requirements of CDFS at the single and double bypass modes validated by the cascade experiment and three-dimensional simulation of CDFS.
机译:作为核心驱动风扇级(CDFS)的关键部分,可变室进气口导叶(VIGV)必须在两种不同的运行模式下稳定高效地运行,包括单旁路模式和双旁路模式。为了满足CDFS的需求,提出了一种在低损耗的要求下产生具有宽广的转向角工作范围的VIGV的设计方法。数值模拟和实验测试的结果表明,采用柯恩达型表面设计开槽形状可以有效地提高漏流的壁附着性能,并抑制开槽位置后面的吸力面边界层的发展。而且,在大的流动转向角处,柯恩达型表面可以比传统的圆形形状减少总压力损失的一半以上。 VIGV与CDFS的级联实验和三维仿真验证的单旁路和双旁路模式下的CDFS设计要求非常吻合。

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