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Technical Solution for Protection of Heat Pump Evaporators Against Freezing the Moisture Condensed

机译:保护热泵蒸发器防止冷凝水凝结的技术方案

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This article is dedicated to the study of the processes of formation and freezing of condensate in heat exchangers using ambientair heat and is prepared according to the results of experimental investigations. The aim of this work has been set to elaboratean energy-independent technical solution for protection of heat-exchange equipment against freezing the moisture condensed on the heat-exchange surfaces while using the low-potential heat of ambient air in heat pump systems. The investigations have shown that at the temperatures of ambient air close to 0°C when using the «traditional» way of defrostation, which means the reverse mode of operation of heat pump, an intensive formation of ice is observed at the bottom part of evaporator (if not provided with tray heater). This effect is provoked by downward flow of thawed water and it’s freezing in the lower part of the heat-exchanger due to the fact that the tray and housing of heat pump have a temperature below zero. Thereafter, while the defrostation mode has been periodically used, the ice coat would be going to continue its growth, and by time significant area of evaporator could appear to be covered with ice. The results of the investigations presented in the article could be applied both to air-source heat pumps and to ventilation air heat recuperators.
机译:本文致力于利用环境空气热量研究热交换器中冷凝物的形成和冻结过程,并根据实验研究的结果进行了准备。这项工作的目的是制定一种与能源无关的技术解决方案,以保护热交换设备,防止在热泵系统中使用环境空气的低位热量时冻结凝结在热交换表面上的水分。研究表明,在使用“传统”除霜方式时,在环境空气温度接近0°C时,这意味着热泵的运行方式相反,在蒸发器底部观察到大量的冰形成。 (如果没有托盘加热器提供)。解冻水的向下流动会引起这种效果,并且由于热泵的托盘和壳体的温度低于零,因此在热交换器的下部冻结。此后,尽管已定期使用除霜模式,但冰衣将继续生长,到时蒸发器的大部分区域似乎会被冰覆盖。本文介绍的研究结果可以应用于空气源热泵和通风空气换热器。

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