首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.A; 20040614-17; Vienna(AT) >Improving Stall Margin by using an Air-separator for a Variable-pitch Axial-flow Fan
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Improving Stall Margin by using an Air-separator for a Variable-pitch Axial-flow Fan

机译:通过使用可变间距轴流风扇的空气分离器来提高失速裕度

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An air-separator for extending the operating range of a variable-pitch axial-flow fan has been developed. It has a circular-arc outer casing, a part of which forms the guide vane at the inlet of the air-separator. To obtain a wide operating range and to minimize penalties in terms of efficiency and noise, the influence of exposure and clearance ratios at various stagger-angle settings for rotor blades in low-speed and highspeed axial flow fans was experimentally investigated. Flow distributions and pressure fluctuations downstream of the rotor were also measured in order to investigate the influence of the air-separator on rotating stall. The distributions and fluctuations suggested that the air-separator decreased the blockage effect near the rotor tip and suppressed the rotating stall. Moreover, stall-margin and pressure-rise improvements were independent of the clearance ratio. These improvements depended on the exposure ratio and stagger-angle settings for the rotor blades. The fan efficiency for the air-separator also depended on the exposure ratio. In addition, the efficiency had the opposite tendency to the stall-margin and pressure-rise improvements. In contrast, the noise for the air-separator was independent of the exposure ratio and decreased as the clearance ratio increased. For the optimum combination of the exposure and clearance ratios, the stall-margin and pressure-rise were improved by over 20% with minimized penalties in terms of efficiency and noise. It is concluded from these results that the developed air-separator can provide a wide operating range for a variable-pitch axial-flow fan.
机译:已经开发出用于扩展可变螺距轴流风扇的工作范围的空气分离器。它具有一个圆弧形外壳,外壳的一部分在空气分离器的入口处形成导向叶片。为了获得较宽的工作范围并最大程度地减少效率和噪音方面的影响,对低速和高速轴流风扇中的转子叶片在各种交错角设置下的暴露和间隙比的影响进行了实验研究。还测量了转子下游的流量分布和压力波动,以研究空气分离器对旋转失速的影响。分布和波动表明,空气分离器减小了转子尖端附近的阻塞效应,并抑制了旋转失速。此外,失速裕度和压力上升的改善与间隙比无关。这些改进取决于转子叶片的暴露率和交错角度设置。空气分离器的风扇效率还取决于暴露率。另外,效率具有与失速裕度和压力上升改善相反的趋势。相反,空气分离器的噪声与暴露率无关,并且随着清除率的增加而降低。为了使曝露率和清除率达到最佳组合,失速裕度和压力上升可提高20%以上,同时在效率和噪音方面的损失最小。从这些结果可以得出结论,开发的空气分离器可以为变螺距轴流风扇提供较宽的工作范围。

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