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Refrigerant flow instability as a means to predict the need for defrosting the evaporator in a retail display freezer cabinet

机译:制冷剂流动的不稳定性是预测零售展示冷冻柜中需要对蒸发器除霜的一种方法

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摘要

For refrigerated display cabinets to perform their function of keeping food cold, there must be free movement of air through the evaporator. The moisture in the ambient air entrained in the cabinet forms frost on the evaporator. It is traditional for heat to be applied to the evaporator at regular intervals to melt this frost. The frequency, typically 3-4 times per day, is enough to avoid the frost becoming excessive even in extreme conditions. For much of the time defrosting is not always necessary. A large portion of the energy used during a defrost is an overhead - heating and then cooling the metal and the food rather than melting the frost. The effect of this is examined in the paper along with the results from testing an algorithm that detects the need for a defrost from the pattern of refrigerant flow (or evaporator exit superheat). The algorithm allows the number of defrosts to be reduced without excessively raising the temperature of food stored in the cabinet. The reduction in energy and carbon dioxide emission were examined and were shown to be substantial.
机译:为了使冷藏展示柜执行其使食物保持低温的功能,必须使空气自由流动通过蒸发器。机柜中夹带的环境空气中的水分会在蒸发器上形成霜。传统上,定期向蒸发器施加热量以融化这种霜。该频率通常为每天3-4次,足以避免霜冻甚至在极端条件下也变得过多。在大多数情况下,除霜并非总是必要的。除霜过程中使用的大部分能量来自塔顶-加热然后冷却金属和食物,而不是融化霜。本文的效果以及测试算法的结果均在本文中进行了检验,该算法可根据制冷剂流的模式(或蒸发器出口过热)检测是否需要除霜。该算法可以减少除霜次数,而又不会过度提高橱柜中存储的食物温度。检查了能量和二氧化碳排放量的减少,结果表明该减少量很大。

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