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Numerical Study on Internal Flow of Small Axial Flow Fan with Splitter Blades

机译:带有分流叶片的小型轴流风机内部流动的数值研究

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The splitter blades are widely used in axial compressors and play an active role in the improvement of the overall performance of compressors. However, little research on the application of splitter blades to small axial flow fans is conducted. This paper designs a splitter blade small axial flow fan (model B) with a small axial flow fan as the prototype fan (model A) by adding short blades at the second half part of the passageway among long blades of model A. The steady simulation for the two models was conducted with the help of RNG k-ε turbulence model provided by software Fluent, and static characteristics and internal flow characteristics of the two models were compared and analyzed. Results show that splitter blades can improve the unsteady flow in the small flow rate region and also have a positive role to increase static pressure rise and efficiency in the higher flow rate region. The variation of static pressure gradient on the meridian plane in model B is well-distributed. The static pressure on the blade surface of model B distributes more uniformly. Splitter blades can suppress the secondary flow from pressure side to suction side in the leading edge because the pressure difference between suction side and pressure side in model B is generally lower than that of model A. And it also can restrain the vortex shedding and flow separation, and further it may be able to get the aerodynamic noise lower because static pressure gradient on the blade surface is well-distributed and the vortex shedding is not developed. Therefore, the performance of the fan with splitter blades is better than that of the prototype fan. The findings of this paper can be a basis for the design of high performance small axial flow fans.
机译:分流叶片广泛用于轴流压缩机,并在改善压缩机整体性能方面发挥了积极作用。但是,很少有人对将分离叶片应用于小型轴流风机进行研究。本文通过在模型A的长叶片之间的通道的后半部分增加短叶片,设计了以小轴流风机作为原型风机(模型A)的分流叶片小轴流风机(模型B)。稳态仿真在Fluent软件提供的RNGk-ε湍流模型的帮助下,对这两个模型进行了分析,并对这两个模型的静态特性和内部流动特性进行了比较和分析。结果表明,分流叶片可以改善小流量区域的不稳定流动,并且在增加高流量区域的静压上升和效率方面也具有积极作用。模型B中子午面上的静压力梯度变化是均匀分布的。 B型叶片表面的静压力分布更均匀。分流叶片可以抑制前缘从压力侧到吸力侧的二次流,因为模型B的吸力侧和压力侧之间的压差通常低于模型A。它还可以抑制涡旋脱落和流分离而且,由于叶片表面上的静压力梯度分布均匀且涡旋脱落没有发展,因此可以降低空气动力噪声。因此,带分割叶片的风扇的性能要优于原型风扇。本文的发现可以为高性能小型轴流风机的设计提供依据。

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