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Experimental study of blade rigidity effects on the global and the local performances of a thick blades axial-flow fan

机译:叶片刚度对厚叶片轴流风机整体和局部性能影响的实验研究

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摘要

An experimental investigation on the aerodynamic performances of thick blades axial-flow fans was carried out in this study. Two fans are considered, the first one is rotomoulded (in plastic) and the second one is milled (in aluminium). Both have exactly the same shape, excepting that the rotomoulded fan has hollow blades. They were designed from an existing fan (manufactured by plastic injection process) used in the cooling system of an automotive vehicle power unit. As far as shape is concerned, the only difference between the two first fans and the traditional injected fan is the blade thickness, whereas as far as rigidity is concerned, the only difference between the rotomoulded and the milled fans is the ability of the rotomoulded fan to be deformed easier than the milled fan. The aim of this study is to determine on the one hand the influence of the blade thickness and on the other hand the way the deformation of the hollow blades may affect the global and the local performances. The global performances of the fans were measured in a test bench designed according to the ISO 5801 standards. The curve of the aerodynamics characteristics (pressure head versus flow rate) and of the global efficiency are slightly lower for the rotomoulded fan. The wall pressure fluctuations were also investigated for three flow rates: one corresponding to the maximum efficiencies of both fans and two others corresponding to an under-flow and an over-flow rate. The power spectral density (PSD) levels, estimated by the Welch method, are between six and nine times higher for the rotomoulded fan at nominal flow rate. At partial flow rate, however, the PSD levels are close for both fans.
机译:本研究对厚叶片轴流风机的空气动力学性能进行了实验研究。考虑使用两个风扇,第一个风扇滚塑成型(塑料),第二个风扇磨碎(铝制)。两者均具有完全相同的形状,只是滚塑风扇具有空心叶片。它们是根据用于汽车动力装置冷却系统的现有风扇(通过注塑工艺制造)设计的。就形状而言,两个第一风扇与传统喷射风扇之间的唯一区别是叶片厚度,而就刚度而言,滚塑风扇和铣削风扇之间的唯一区别是滚塑风扇的能力比铣刨风扇更容易变形。这项研究的目的是一方面确定叶片厚度的影响,另一方面确定中空叶片的变形可能影响整体性能和局部性能的方式。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。对于滚塑风扇,空气动力学特性(压头与流量之比)和整体效率的曲线略低。还研究了三种流速的壁压波动:一种对应于两个风扇的最大效率,另外两种对应于下溢率和上溢率。通过Welch方法估计的功率谱密度(PSD)水平在标称流速下比滚塑风扇高6到9倍。但是,在部分流量下,两个风扇的PSD级别都接近。

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