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Aerodynamic performance improvement of up-flow outdoor unit of air conditioner by redesigning the bell-mouth profile

机译:重新设计喇叭口外形,提高了空调上流式室外机的空气动力学性能

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To improve the aerodynamic performance of an up-flow outdoor unit in a split-type air conditioner, experimental and numerical investigations on the propeller fan system of the outdoor unit are performed. Based on the prototype analysis, the propeller fan has a complex vortical flow field near the rotor tip. The vortex structures cause blockage effect on the through flow and have influence on the aerodynamic performance of the outdoor unit. The bell-mouth configuration is redesigned to control the vortex structures. It is shown that the redesigned bell-mouth can weaken the tip vortex and reduce the blockage effect. The redesigned bell-mouth is fabricated and installed on the outdoor unit with 2-blade fan to perform experimental validation. The measured results demonstrate that the aerodynamic efficiency of the outdoor unit is improved by 1.2% with use of the redesigned bell-mouth. The 3-blade fan solution is also attempted to provide more work capacity to enhance the flow rate. (C) 2014 Elsevier Ltd and IIR. All rights reserved.
机译:为了提高分体式空调器中向上流动的室外机的空气动力学性能,对室外机的螺旋桨式风扇系统进行了实验和数值研究。根据原型分析,螺旋桨式风扇在转子尖端附近具有复杂的涡流场。涡流结构对通流产生阻塞作用,并影响室外机的空气动力性能。重新设计了喇叭口配置,以控制涡流结构。结果表明,重新设计的喇叭口可以减弱尖端的涡流并降低堵塞效果。重新设计的喇叭口被制成并安装在带有2叶片风扇的室外机上,以进行实验验证。测量结果表明,使用重新设计的喇叭口,室外机的空气动力学效率提高了1.2%。还尝试了三叶风扇解决方案,以提供更多的工作能力以提高流速。 (C)2014 Elsevier Ltd和IIR。版权所有。

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