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PERFORMANCE OPTIMIZATION OF A SECONDARY REFRIGERANT DISPLAY CABINET USING TESTS AND CFD MODELLING

机译:二级制冷剂展示柜的性能优化使用测试和CFD造型

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摘要

In this paper a computational investigation to address some of the design parameters that have significant effects on the performance of a secondary refrigerant refrigerated display cabinet is presented. The investigated design parameters include air curtain velocity, width, discharge angle and positioning of the air curtain outlet from the front edge of the display cabinet's top shelf. In addition the effect of using honeycomb on the flow path at the air curtain outlet was also investigated. A 3D CFD model was constructed to assess the effect of the side flow on the performance of the vertical display cabinet. The suitability of using 2D CFD to carry out the display cabinet design optimization was investigated and it was concluded that for the length of the cabinet considered, the flow could be assumed to be two-dimensional for most of the cabinet length. The results also indicated that the optimum air curtain mass flow rate constituted approximately a third of the total air mass flow rate. For the geometry considered with respect to air curtain discharge and top shelf outer edge position it was found that shaping the honeycomb to produce more uniform flow and reduce recirculation at the inner edge of the air curtain outlet improved the air curtain performance and led to a 4% reduction in the cabinet load.
机译:在本文中,提出了一种计算研究,以解决对二次制冷剂冷藏展示柜的性能具有显着影响的一些设计参数。调查的设计参数包括空气帘速度,宽度,排出角度和空气幕出口从显示柜顶部架子的前边缘定位。此外,还研究了使用蜂窝物对空气幕出口处的流动路径上的效果。构建了3D CFD模型以评估侧流对垂直显示柜的性能的影响。研究了使用2D CFD进行显示柜设计优化的适用性,并且得出结论,对于所考虑的机柜的长度,可以假设流动对大部分机壳长度是二维。结果还表明,最佳空气幕质质量流量大约是总空气质量流量的大约三分之一。对于相对于空气幕放电和顶部架子外边缘位置考虑的几何形状,发现蜂窝状形成更均匀的流动并减少空气幕出口的内边缘的再循环,从而改善了空气幕动,并导致了4机柜负荷减少%。

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