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NUMERICAL AND EXPERIMENTAL INVESTIGATION OF FLOW BEHAVIOUR AND AERODYNAMIC NOISE IN AXIAL FLOW FAN OF AIR-CONDITIONER

机译:空调轴流风机流动行为和空气动力噪声的数值和实验研究

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To improve aerodynamic performance and reduce noise for a split air conditioner outdoor unit fan, a hybrid method is developed, which combines the Computational Fluid Dynamics (CFD) flow simulation with Computational Aero Acoustics (CAA) noise analysis, where Large Eddy Simulation (LES) model and Ffowcs Williams-Hawkings (FW-H) acoustic analogy model are solved respectively for the unsteady flow characteristics and far field noise solutions. Experimental tests are conducted respectively for fan aerodynamic performance and acoustic behavior, with the aerodynamic performance test rig and semi-anechoic room. Numerical results demonstrates that the main dipole sound sources are located mainly on the blade trailing edge and tip surface, and shroud and casing inner surface, such a distribution is caused by fluctuations in instantaneous pressure associated with rotor-stator interaction. The casing dipole sources contribute largely to the total noise of the fan, and are the main causes for fan noise. It is demonstrated both numerically and experimentally that modifications of impeller blade geometry are effective to reduce the fan noise. Two redesign schemes, the concaved-trailing edge and flanging outer-edge blades, are used, but the latter is more effective in reducing the fan noise as well as shaft power simultaneously. The predicted SPL agrees well with the measured results at the fundamental frequency of the highest intensity, and the hybrid method used in the present study is justified.
机译:为了提高空气动力学性能并降低分流空调室外单元风扇的噪声,开发了一种混合方法,将计算流体动力学(CFD)流模拟与计算航空声学(CAA)噪声分析相结合,其中大涡模拟(LES)模型和FFOWS Williams-Hawkings(FW-H)声学类比模型分别用于非定常流量特性和远场噪声解决方案。实验测试分别进行风扇空气动力学性能和声学行为,采用空气动力学性能试验台和半透明室。数值结果表明,主偶极声源主要位于叶片后缘和尖端表面,以及护罩和壳体内表面上,这种分布是由与转子 - 定子相互作用相关的瞬时压力的波动引起的。套管偶极子源主要有助于风扇的总噪音,并且是风扇噪声的主要原因。在数值上和实验中展示了叶轮叶片几何形状的修改,可有效降低风扇噪声。使用两个重新设计方案,凹陷后缘和法兰外缘叶片,但后者更有效地减少风扇噪音以及轴功率。预测的SPL在最高强度的基本频率下测量结果良好,并且本研究中使用的混合方法是合理的。

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