为研究泵驱动两相复合制冷机组的工作特性,特别是换热性能随工质泵频率和室内外温差的变化规律,搭建泵驱动两相复合制冷机组的实验装置,对其进行了实验研究.在本实验装置中,蒸气压缩制冷模式分别采用2.63 k W压缩机和3.75 k W压缩机作...为研究泵驱动两相复合制冷机组的工作特性,特别是换热性能随工质泵频率和室内外温差的变化规律,搭建泵驱动两相复合制冷机组的实验装置,对其进行了实验研究.在本实验装置中,蒸气压缩制冷模式分别采用2.63 k W压缩机和3.75 k W压缩机作为驱动元件,泵驱动两相冷却模式采用带变频器的工质泵驱动.结果表明:室内温度25℃、室外温度10℃时,机组换热量随工质泵频率先增大后减小,在工质泵频率为35 Hz时达到最大值;能效比(energy efficiency ratio,EER)随工质泵频率初始变化不明显,然后逐渐降低.在室外温度为0~30℃时,实验获得了2种运行模式的性能变化情况和最佳转换温度.展开更多
A heat pipe type adsorption ice maker with two adsorbers for fishing boats is designed by using ammonia as refrigerant and compound of activated carbon-CaCl2 as adsorbent. This type of heat pipe adsorber can solve the...A heat pipe type adsorption ice maker with two adsorbers for fishing boats is designed by using ammonia as refrigerant and compound of activated carbon-CaCl2 as adsorbent. This type of heat pipe adsorber can solve the problem of incompatibility between ammonia, copper, seawater and steel. The working process of the ice maker with 8.7kg adsorbent per bed is simulated. The results show that the optimal semi-cycle time is about 9 min at the evaporating temperature of -15℃, where the corresponding cooling power, specific cooling power per kilogram adsorbent SCP and coefficient of refrigerant performance COP are respectively 3.6kW, 217W·kg-1 and 0.404.展开更多
文摘为研究泵驱动两相复合制冷机组的工作特性,特别是换热性能随工质泵频率和室内外温差的变化规律,搭建泵驱动两相复合制冷机组的实验装置,对其进行了实验研究.在本实验装置中,蒸气压缩制冷模式分别采用2.63 k W压缩机和3.75 k W压缩机作为驱动元件,泵驱动两相冷却模式采用带变频器的工质泵驱动.结果表明:室内温度25℃、室外温度10℃时,机组换热量随工质泵频率先增大后减小,在工质泵频率为35 Hz时达到最大值;能效比(energy efficiency ratio,EER)随工质泵频率初始变化不明显,然后逐渐降低.在室外温度为0~30℃时,实验获得了2种运行模式的性能变化情况和最佳转换温度.
基金Supported by State Key Fundamental Research Program (No. G2000026309) Natural Science Fund for Distinguished Young Scholars of China (No. 50225621)Shanghai Shuguang Training Program for the Talents, the Teaching and Research Award Program for Outstanding Young Teachers in Higher Education Institutions of MOE, P.R.C.
文摘A heat pipe type adsorption ice maker with two adsorbers for fishing boats is designed by using ammonia as refrigerant and compound of activated carbon-CaCl2 as adsorbent. This type of heat pipe adsorber can solve the problem of incompatibility between ammonia, copper, seawater and steel. The working process of the ice maker with 8.7kg adsorbent per bed is simulated. The results show that the optimal semi-cycle time is about 9 min at the evaporating temperature of -15℃, where the corresponding cooling power, specific cooling power per kilogram adsorbent SCP and coefficient of refrigerant performance COP are respectively 3.6kW, 217W·kg-1 and 0.404.