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INTERNAL FLOW AND NOISE INVESTIGATIONS ABOUT THE CROSS-FLOW FAN WITH DIFFERENT BLADE ANGLES

机译:带有不同叶片角的横流风扇的内部流动和噪声研究

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The experimental and numerical studies have been carried out to investigate the flow and the noise characters of the three impellers with different blade angles in a cross-flow fan (CFF). Firstly, the aerodynamic performances of the fan with these impellers are obtained experimentally and the averaged flow patterns inside the impellers are measured by the three-hole probe. Secondly, the far-field noise generated by CFF with different impellers has been measured in a semi-anechoic chamber under different throttling conditions. Thirdly, the two-dimensional unsteady CFD simulations have been performed by commercial software. The internal flow patterns influenced by the different blade angles have been summarized through the computational results. The accuracy of the calculations is validated by the corresponding experimental ones. The detail analysis has been carried out on the unsteady vortex flow properties of the three impellers, which is considered to be the main factor that influences the aerodynamic and aeroacoustic performance of the CFF. Finally, the relative far field noise generated by different impellers are evaluated by an empirical formula based on the assumption that the total sound pressure levels are proportional to the sixth power law of the relative velocity on the outer and inner circumferences of the impeller. The circumferential distributions of relative velocity are provided from the numerical solutions. The varying trends of predicted results agree well with the actual relative noise of the CFF with three different impellers.
机译:已经进行了实验性和数值研究,以研究具有不同叶片角度的三个叶轮的流动和噪声特征在横流风扇(CFF)中。首先,通过实验获得与这些叶轮的风扇的空气动力学性能,并且通过三孔探针测量叶轮内的平均流动图案。其次,在不同的限制条件下在半透道室中测量了CFF与不同叶轮产生的远场噪声。第三,通过商业软件执行了二维不稳定的CFD模拟。通过计算结果总结了由不同叶片角度影响的内部流动图案。计算的准确性由相应的实验结果验证。已经对三个叶轮的不稳定涡流流动性质进行了细节分析,这被认为是影响CFF的空气动力学和气动性能的主要因素。最后,由不同叶轮产生的相对远场噪声由基于假设的经验公式评估总声压水平与叶轮的外周和内圆周上的相对速度的第六动力律成比例。从数值解决方案提供相对速度的圆周分布。预测结果的不同趋势与CFF的实际相对噪声与三种不同的叶轮相吻合。

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