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Improvement of Stalling Characteristics of an Axial-Flow Fan by Radial-Vaned Air-Separators

机译:径向通风空气分离器改善轴流风扇的失速特性

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摘要

An improved construction of air-separator device, which has radial-vanes embedded within its inlet circumferential opening with their leading-edges facing the moving tips of the fan rotor-blades so as to scoop the tip flow, was investigated with respect to the stall-prevention effect on a low-speed, single-stage, lightly loaded, axial-flow fan. Stall-prevention effects by the separator layout, relative location of the separator to the rotor-blades, and widths of the openings of the air-separator inlet and exit were parametrically surveyed. As far as the particular fan is concerned, the device together with the best relative location has proved to be able to eliminate effectively the stall zone having existed in the original solid-wall characteristics, which has confirmed the promising potential of the device. Guidelines were obtained from the data for optimizing relative locations of the device to the rotor-blades, maximizing the stall-prevention effect of the device, and minimizing the axial size of the device for a required stall-prevention effect, at least for the particular fan and possibly for fans of similar light-load fans. The data suggest the changing internal flow conditions affected by the device conditions.
机译:针对失速,研究了一种空气分离器装置的改进结构,该空气分离器装置的径向叶片嵌在其进气口周向开口内,其前缘面对风扇转子叶片的活动尖端,从而可吸收尖端气流。防止对低速单级轻载轴流风扇的影响。参数化地测量了分离器布局的防失速效果,分离器相对于转子叶片的相对位置以及空气分离器入口和出口的开口宽度。就特定的风扇而言,该设备及其最佳相对位置已被证明能够有效消除原来的实壁特性中存在的失速区,这已经确认了该设备的潜力。从数据中获得了用于优化装置相对于转子叶片的相对位置,最大化装置的失速防止效果以及最小化装置轴向尺寸以达到所需的失速防止效果的指南,至少对于特定情况而言风扇,也可能适用于类似轻载风扇的风扇。数据表明受设备条件影响的内部流量条件不断变化。

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