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Numerical simulation to optimize the design of double glazed doors for closed refrigerated vertical display cabinets

机译:数值模拟优化封闭式冷藏立式展示柜双层玻璃门的设计

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摘要

Due to the great awareness of global warming, energy savings should be on the mind of all design engineers. Saving energy in refrigerated vertical display cabinets, which is a major supermarket appliance, is of great importance to users and manufacturers. The aim of this paper is to investigate how to minimize energy usage of refrigerated vertical display cabinets by optimizing the design of its double glazed door. Choosing the gap width can be crucial for optimizing the refrigerator efficiency. ududThe computational fluid dynamics software ‘Fluent’ is used to predict the heat gain through the double glazed door by solving a steady 2-D model for the natural convection in the air gap including heat transfer due to radiation. The air gap investigated is 1.5m high and assumed to have different width 5, 10, 15, 17, 20, 25, 30 & 35 mm which gives aspect ratios in the range 300–43. Results show that as the gap size increases (i.e. aspect ratio decreases) the heat gain due to natural convection decreases up to a limit and then reaches almost a constant value while the radiation heat transfer shows an opposite trend. However, the total heat transfer gain decreases until it reaches a constant value. These results suggest that increasing the gap width improves the door’s efficiency; but only up to a certain limit after which the increase in the gap width does not affect the heat transfer anymore. Results also show that at the small gap width (i.e. high aspect ratio), heat transfer due to convection and radiation is almost equal and as the gap width increases, the radiation component starts to have more dominance. This suggests that the use of a type of glass with lower emittance properties may enhance the thermal effectiveness of the door.ud
机译:由于对全球变暖的高度了解,所有设计工程师都应考虑节约能源。冷藏立式展示柜(一种主要的超市设备)中的节能对于用户和制造商而言非常重要。本文的目的是研究如何通过优化双层玻璃门的设计来最大程度地减少冷藏立式展示柜的能耗。选择间隙宽度对于优化冰箱效率至关重要。 ud ud计算流体动力学软件“ Fluent”用于通过求解气隙中自然对流的稳态二维模型(包括由于辐射引起的传热)来预测双层玻璃门的热量增加。所研究的气隙高度为1.5m,并假定其宽度分别为5、10、15、17、20、25、30和35 mm,这使得宽高比在300-43范围内。结果表明,随着间隙尺寸的增加(即纵横比减小),由于自然对流引起的热增益减小到一个极限,然后几乎达到恒定值,而辐射传热则呈现相反的趋势。然而,总的传热增益减小直到达到恒定值。这些结果表明,增加缝隙宽度可以提高门的效率。但是仅达到一定的极限,之后间隙宽度的增加不再影响传热。结果还表明,在较小的间隙宽度(即高纵横比)下,由于对流和辐射引起的热传递几乎相等,并且随着间隙宽度的增加,辐射分量开始占主导地位。这表明使用具有较低发射率特性的玻璃可以增强门的热效率。 ud

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    Mossad Ruth;

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  • 年度 2006
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