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Prediction and measurement of axial flow fan aerodynamic and aeroacoustic performance in a split-type air-conditioner outdoor unit

机译:分体式空调室外机轴流风机空气动力和空气声学性能的预测和测量

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摘要

The study has focused on outdoor unit noise reduction by fan geometry modification with the refined numerical and experimental approaches. The outlet louver, electric motor and its support are included to refine the flow and acoustic model and a hybrid method incorporating CFD and CAA is used to predict the noise behavior. The fan performance curve is well-predicted; the moderate acoustic power is obtained on the outlet louver, motor support and motor exhibiting a significant contribution to overall noise behavior. The aeroacoustic test is conducted in an anechoic chamber and the obtained results are compared with the semi-anechoic chamber ones, and the unremarkable differences are produced, which indicate the ground floor being of some influence. Both modified fan geometries are effective to reduce the noise but the flanging outer-edge blade is more effective. The noise directivities of three geometry fans are investigated both numerically and experimentally and the produced asymmetric characteristics are analyzed.
机译:该研究集中于通过改进的数值和实验方法,通过改变风扇的几何形状来降低室外机的噪声。包括出口百叶窗,电动机及其支撑件,以改善流动和声学模型,并使用结合CFD和CAA的混合方法来预测噪声行为。风扇性能曲线可以很好地预测;在出气百叶窗,马达支架和马达上获得适度的声功率,这对整体噪声性能起着重要作用。在消声室中进行空气声学测试,并将获得的结果与半消声室中的结果进行比较,并产生了不明显的差异,这表明底层有一定的影响。两种改进的风扇几何形状均可有效降低噪音,但折边的外缘叶片则更有效。数值和实验研究了三种几何风扇的噪声指向性,并分析了产生的非对称特性。

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