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Design and experimental study of a silica gel-water adsorption chiller with modular adsorbers

机译:带有组合式吸附器的硅胶水吸附式冷却器的设计和实验研究

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A silica gel-water adsorption chiller driven by low-grade heat is developed. System configuration without any vacuum valves includes two sorption chambers, a 4-valve hot/cooling water coupled circuit and a 4-valve chilled water circuit. Each sorption chamber is composed of one adsorber, one condenser and one evaporator. The design of this chiller, especially the design of modular adsorber, is suitable for low-cost industrial production. Efficient and reliable heat and mass recovery processes are also adopted. This chiller is tested under different conditions and it features the periodic variations of temperatures and cooling power. Through the experimental study, the optimal cooling time, mass recovery time and heat recovery time are 720 s, 40 s and 24 s, respectively. Besides, the obtained cooling power, COP and SCP are 42.8 kW, 0.51 and 125.0 W kg(-1), respectively, under typical conditions of 86/30/11 degrees C hot water inlet/cooling water inlet/chilled water outlet temperatures, respectively. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:开发了低热量驱动的硅胶水吸附式制冷机。没有任何真空阀的系统配置包括两个吸附室,一个4阀热水/冷却水耦合回路和一个4阀冷冻水回路。每个吸附室由一个吸附器,一个冷凝器和一个蒸发器组成。该冷却器的设计,尤其是模块化吸附器的设计,适合于低成本工业生产。还采用了高效可靠的热量和质量回收过程。该冷水机在不同的条件下进行了测试,并且具有温度和冷却功率的周期性变化。通过实验研究,最佳冷却时间,质量恢复时间和热恢复时间分别为720 s,40 s和24 s。此外,在典型的86/30/11摄氏度热水入口/冷却水入口/冷却水出口温度条件下,获得的冷却功率COP和SCP分别为42.8 kW,0.51和125.0 W kg(-1),分别。 (C)2016 Elsevier Ltd和IIR。版权所有。

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