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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Sub-system level numerical simulation investigation of the S-shaped inlet and the rear subsonic fan-stage
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Sub-system level numerical simulation investigation of the S-shaped inlet and the rear subsonic fan-stage

机译:S形进气道和后亚音速风扇级的子系统级数值模拟研究

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For investigating the evolution process of a half flush-mounted air intake exit distortion in the downstream flow field and also its effects on the fan-stage performance, sub-system level numerical simulation of the whole structure of the air intake and the fan-stage was carried out. Considering large boundary layer ingestion, a scheme that bleeding air from stator for blowing control in the front air intake was also proceeded. At the same time, both the single fan-stage with uniform air admission and the single airintake without fan-stage are researched for comparison. The results show that giving a real exit boundary or not has significant impact on the airintake numerical simulation results, especially to the circumferential total pressure distortion and the swirl distortion at the airintake exit. Due to large boundary layer ingesting, the aerodynamic performance of the fan-stage declines a lot. As comparing with the homogeneous air admission condition, the maximum isentropic efficiency and the choked mass flow of the fan-stage decrease about 4.17% and 1.31%, respectively. After bleeding air from the stator, the overall performance of the fan-stage changes significantly. It improves a lot when the fan-stage works between the maximum efficiency point and the stall margin while decreases under other conditions. The distorted low energy fluid from upstream always covers several passages as it goes through the fan-stage. And in the meanwhile, severe flow separation appears at suction side of stator blades, no matter the bleed air flow control executed or not. Impact of the design of the bleed air pipe on the control effect is large, and the best bleed air pipe for flow control is needed to further research in the future.
机译:为了研究在下游流场中半嵌入式安装的进气口出口畸变的演变过程及其对风扇级性能的影响,对进气口和风扇级整个结构的子系统级数值模拟进行了。考虑到较大的边界层摄入,还进行了从定子放出空气以控制前进气口中的吹气的方案。同时,对具有统一进气口的单风扇级和没有风扇级的单进气口进行了比较研究。结果表明,给出一个真实的出口边界对进气数值模拟结果,特别是对进气出口的圆周总压力畸变和涡旋畸变有重大影响。由于大量吸入边界层,风扇级的空气动力学性能大大降低。与均匀进气条件相比,风扇级的最大等熵效率和节流质量流量分别降低了约4.17%和1.31%。从定子排出空气后,风扇级的整体性能会发生明显变化。当风扇级在最大效率点和失速裕度之间工作时,它会大大改善,而在其他条件下会减少。来自上游的变形低能流体在通过风扇级时始终会覆盖多个通道。同时,无论是否执行引气流量控制,静叶片的吸入侧都会出现严重的气流分离。引气管的设计对控制效果的影响很大,未来需要对用于控制流量的最佳引气管进行进一步的研究。

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