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Efficiency analysis of semi-open sorption heat pump systems

机译:半开放式吸附式热泵系统的效率分析

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摘要

Sorption systems traditionally fall into two categories: closed (for chilling and heat pumping) and open (for dehumidification). Recent work has explored the possibility of semi-open systems, which can perform heat pumping or chilling while utilizing ambient humidity as the working fluid of the cycle, and are capable of being driven by solar, waste, or combustion heat sources. The efficiencies of closed and open systems are well characterized and can be accurately determined from four temperatures (one for each of the main components desorber, absorber, condenser and evaporator). In this work, the performance potential of semi-open systems is explored by adapting expressions for the efficiency of closed and open systems to the novel semi-open systems. A key new parameter is introduced, which involves both the ambient dry bulb and ambient dew point temperature, since both are critical to semi-open absorber operation. The dew point temperature is necessary to capture the absorption performance, while the dry bulb temperature is needed to calculate sensible heat transfer with surrounding air. (C) 2016 Elsevier Ltd. All rights reserved.
机译:传统上,吸附系统分为两类:封闭式(用于冷却和热泵)和开放式(用于除湿)。最近的工作探索了半开放式系统的可能性,该系统可以在利用环境湿度作为循环的工作流体的同时进行热泵或制冷,并且可以由太阳能,废物或燃烧热源驱动。封闭和开放系统的效率具有良好的特征,可以从四个温度(解吸器,吸收器,冷凝器和蒸发器的每个主要组件各一个)精确确定。在这项工作中,通过将表示封闭式和开放式系统效率的表达式调整为新颖的半开放式系统,探索了半开放式系统的性能潜力。引入了一个关键的新参数,该参数涉及环境干球温度和环境露点温度,因为两者对于半开式吸收塔运行至关重要。露点温度是获得吸收性能所必需的,而干球温度则是计算与周围空气的显热传递所必需的温度。 (C)2016 Elsevier Ltd.保留所有权利。

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