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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 study of blade thickness effects on the overall and local performances of a Controlled Vortex Designed axial-flow fan
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Experimental study of blade thickness effects on the overall and local performances of a Controlled Vortex Designed axial-flow fan

机译:叶片厚度对受控涡流设计轴流风机整体和局部性能影响的实验研究

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The purpose of this work is to study the effects of blade thickness on the performances of an axial-flow fan. Two fans that differ only in the thickness of their blades were studied. The first fan was designed to be part of the cooling system of an automotive vehicle power unit and has very thin blades. The second fan has much thicker blades compatible with the rotomoulding conception process. The overall performances of the fans were measured in a test bench designed according to the ISO-5801 standard. The curve of aerodynamics characteristics (pressure head versus flow-rate) is slightly steeper for the fan with thick blades, and the nominal point is shifted towards lower flow-rates. The efficiency of the thick blades fan is lower than the efficiency of the fan with thin blades but remains high on a wider flow-rate range. The mean velocity fields downstream of the rotors are very similar at nominal points with less centrifugation for the thick blades fan. Moreover, the thick blades fan maintains an axial exit-flow on a wider range of flow-rates. The main differences concern local properties of the flow: phase-averaged velocities and wall pressure fluctuations strongly differ at the nominal flow-rates. The total level of fluctuations is lower for the thick blades fan that for the thin blades fan and the spectral decomposition of the wall fluctuations and velocity signals reveal more harmonics for the thick blades fan, with less correlation between the different signals. For this kind of turbomachinery, the use of thick blades could lead to a good compromise between aerodynamic and acoustic performances, on a wider operating range.
机译:这项工作的目的是研究叶片厚度对轴流风扇性能的影响。研究了两个仅叶片厚度不同的风扇。第一个风扇被设计为汽车动力装置冷却系统的一部分,并且叶片非常薄。第二个风扇的叶片较厚,与滚塑成型工艺兼容。风扇的整体性能是在根据ISO-5801标准设计的测试台上测量的。对于带有厚叶片的风扇,空气动力学特性曲线(压头与流量的关系)稍微陡峭,标称点朝较低的流量方向移动。厚叶片风扇的效率低于薄叶片风扇的效率,但在较宽的流量范围内仍保持较高效率。转子下游的平均速度场在标称点非常相似,而厚叶片风扇的离心力较小。而且,厚叶片风扇在较宽的流量范围内保持轴向出口流量。主要差异涉及流动的局部特性:在标称流速下,相平均速度和壁压力波动存在很大差异。厚叶片风扇的总波动水平较低,薄叶片风扇的总波动水平较低,壁波动和速度信号的频谱分解显示出厚叶片风扇的谐波较多,而不同信号之间的相关性较小。对于这种涡轮机械,在较宽的工作范围内,使用较厚的叶片可能会导致气动性能和声学性能之间的良好折衷。

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