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Distributed heaters to reduce temperature rise in freezing cabinet during defrost process and its overall energy effect for a frost-free refrigerator

机译:分布式加热器在除霜过程中降低冷冻机柜的温度升高及其对无霜冰箱的整体能量效应

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In most frost-free refrigerators with a bottom defrost heater (BDH) for the evaporator, the mismatch between bottom-up dissipation of defrost heat and distributed coverage of frost extends defrost duration, which promotes defrost heat intrusion into freezing cabinets (FCs) and dominates temperature rise there. The objective of this article is to propose a method of reducing FC-temperature rise during defrost cycles for frost-free refrigerators. Based on the idea of better matching defrost heat dissipation and frost coverage, distributed defrost heaters (DDHs) were utilized by adding an extra heater (60 W) in the middle of the evaporator besides the original bottom one (180 W). Then, defrost performance was compared experimentally between BDH and DDHs cycles. Results show that DDHs resulted in 1.1 degrees C decline in FC-temperature rise with 3.3 min reduction in defrost duration. Moreover, the extra heater power hardly raised the overall energy consumption of the refrigerator, because the lower FC temperature after defrost reduced the energy consumption in the following recovery cycle, which compensated for the increase in the defrost cycle. Therefore, the utilization of DDHs is an efficient method in improving defrost performance and food storage quality. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:在蒸发器的底部除霜加热器(BDH)的最霜冻冰箱中,除霜热和霜的分布覆盖的自下而上耗散之间的不匹配延长了除霜持续时间,这促使除霜热侵入到冷冻机柜(FCS)和主导温度升起。本文的目的是提出一种在无霜冰箱的除霜循环期间减少Fc温度升高的方法。基于更好的匹配除霜散热和霜覆盖的思想,除了原始底部(180W)之外,通过在蒸发器的中间添加额外加热器(60W)来利用分布式除霜加热器(DDH)。然后,在BDH和DDHS循环之间通过实验进行解冻性能。结果表明,DDHS导致1.1摄氏度下降的FC温度升高,除霜持续时间为3.3分钟。此外,额外的加热器功率几乎没有提高了冰箱的整体能量消耗,因为除霜后的Fc温度下降降低了以下恢复循环中的能量消耗,这补偿了除霜循环的增加。因此,DDHS的利用是提高除霜性能和食物储存质量的有效方法。 (c)2018年Elsevier Ltd和IIR。版权所有。

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