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A small-scale silica gel-water adsorption system for domestic air conditioning and water heating by the recovery of solar energy

机译:一种小型硅胶水吸附系统,用于国内空调和水供暖恢复太阳能

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摘要

A small-scale silica gel-water adsorption system with modular adsorber, which utilizes solar energy to achieve the cogeneration of domestic air conditioning and water heating effect, is proposed and investigated in this paper. A heat recovery process between two adsorbers and a mass recovery process between two evaporators are adopted to improve the overall cooling and heating performance. First, the adsorption system is tested under different modes (different mass recovery, heat recovery, and cogeneration time) to determine the optimal operating conditions. Then, the cogeneration performance of domestic cooling and water heating effect is studied at different heat transfer fluid temperatures. The results show that the optimal time for cogeneration, mass recovery, and heat recovery are 600 s, 40 s, and 40 s, respectively. When the inlet temperature of hot water is around 85°C, the largest cooling power and heating power are 8.25 kW and 21.94 kW, respectively. Under the condition of cooling water temperature of 35°C, the obtained maximum COP_c, COP_h, and SCP of the system are 0.59, 1.39, and 184.5 W/kg, respectively.
机译:采用模块化吸附器的小型硅胶水吸附系统,采用太阳能实现国内空调和水供热效果的热电联产,并在本文中研究。采用两个吸附器之间的热回收过程和两个蒸发器之间的质量回收过程,以改善整体冷却和加热性能。首先,吸附系统在不同的模式(不同质量恢复,热回收和热烧伤时间)下进行测试以确定最佳操作条件。然后,在不同的传热流体温度下研究了国内冷却和水加热效果的热电联产性能。结果表明,热电联产,质量回收和热回收的最佳时间分别为600秒,40秒和40秒。当热水的入口温度约为85°C时,最大的冷却功率和加热功率分别为8.25kW和21.94千瓦。在冷却水温度为35℃的条件下,所获得的最大COP_C,COP_H和SCP分别为0.59,1.39和184.5W / kg。

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