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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation on the effect of load distribution on the performances of a counter-rotating axial-flow fan
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Experimental investigation on the effect of load distribution on the performances of a counter-rotating axial-flow fan

机译:负荷分布对反旋转轴流风机性能影响的实验研究

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摘要

In the design procedure of a counter-rotating axial-flow stage, parameters such as the angular velocity ratio and the repartition of the work performed by each rotors are to be chosen. In the present Article, three counter-rotating stages are designed to meet the same working point. These stages have different repartitions of load between the front and rear rotor, different angular velocity ratios or mean stagger angles of the blades of the front rotors. The stage global characteristics and the unsteady features of the flow between the counter-rotating rotors are measured and compared. The three systems all have satisfying overall performances at the design point. Strong differences are observed in the flow field at partial flow rates, the rear rotor reducing the hub recirculation. The behaviour at partial flow rates is thus triggered by the rear rotor characteristics. The best compromise is obtained with a repartition of the loading of 60% for the front rotor and 40% for the rear rotor, with almost equal angular velocities.
机译:在反向旋转轴流级的设计过程中,选择诸如角速度比的参数和由每个转子执行的工作的重置。在本文中,设计了三个反向旋转级以满足相同的工作点。这些阶段在前转子和后转子之间具有不同的负载的载荷,不同的角速度比或前转子叶片的平均错开角度。测量并比较了反向转子之间的流动的阶段全局特性和流动的不稳定特征。三个系统都在设计点的整体表现方面都满足了整体性能。在部分流速下在流场中观察到强烈的差异,后转子降低了轮毂再循环。因此,部分流速的行为由后转子特性触发。通过重新分割前转子的载荷为60%的负荷和后转子的40%,具有几乎相等的角速度,获得了最佳折衷。

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