期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
压缩机频率对R410A/R410A复叠式热泵系统性能的试验研究 被引量:3
1
作者 杜启含 杨永安 +2 位作者 赵瑞昌 朱轶群 张哲 《流体机械》 CSCD 北大核心 2021年第1期81-87,共7页
通过搭建R410A/R410A复叠式热泵系统试验台对比了在改变高温级或低温级压缩机频率下热泵系统性能的的变化情况,结果表明:在同一工况下,压缩机频率由50 Hz增加到80 Hz,高温级压缩机频率改变时的最小复叠温差仍大于低温级压缩机频率改变... 通过搭建R410A/R410A复叠式热泵系统试验台对比了在改变高温级或低温级压缩机频率下热泵系统性能的的变化情况,结果表明:在同一工况下,压缩机频率由50 Hz增加到80 Hz,高温级压缩机频率改变时的最小复叠温差仍大于低温级压缩机频率改变时的最大复叠温差;在系统运行未达到最高COP时,增加低温级压缩机频率所带来COP的升高或降低在数值上明显大于增加高温级压缩机频率,且低温级压缩机频率改变时COP的峰值也明显高于改变高温级压缩机的频率;为了更好地研究低温压缩机频率对复叠热泵系统性能的影响,通过对比试验发现改变高温级或低温级压缩机频率时的COP曲线均呈现先增大后减小的趋势,COP达到峰值时,高温级压缩机的最佳频率为53 Hz,低温级压缩机的最佳频率随蒸发工况的降低而降低,压缩机的最佳频率只能使系统在该工况下达到最高COP,在最佳频率下运行的系统COP所能达到的峰值仍然由所处工况决定。 展开更多
关键词 压缩机频率 复叠式热泵系统 R410A COP
下载PDF
复叠热泵冷冻干燥系统制冷剂的选择 被引量:9
2
作者 刘永忠 冯霄 《华北电力大学学报(自然科学版)》 CAS 北大核心 2003年第5期105-108,共4页
提出一种新型的复叠式热泵冷冻干燥系统。针对新型复叠式热泵干燥系统,以常规热泵工质计算了复叠式热泵的循环性能,对各种工质匹配和组合特性进行了计算和分析,结果表明:对于高温级循环,可选择R142b,R600a和R600作为工质;对于低温级循环... 提出一种新型的复叠式热泵冷冻干燥系统。针对新型复叠式热泵干燥系统,以常规热泵工质计算了复叠式热泵的循环性能,对各种工质匹配和组合特性进行了计算和分析,结果表明:对于高温级循环,可选择R142b,R600a和R600作为工质;对于低温级循环,可选择R290,R134a和R152a作为工质。复叠式热泵的整体性能系数主要取决于高温级工质的循环性能,高温级工质的循环性能高,则复叠式热泵的整体性能好。 展开更多
关键词 冷冻干燥系统 制冷剂 循环性能 组合特性 工质匹配
下载PDF
Research trend of cascade heat pumps 被引量:6
3
作者 BOAHEN Samuel CHOI JongMin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第11期1597-1615,共19页
Most commercial and industrial facilities require very low temperatures for refrigeration and high temperatures for space heating and hot water purposes. Single stage heat pumps have not been able to meet these temper... Most commercial and industrial facilities require very low temperatures for refrigeration and high temperatures for space heating and hot water purposes. Single stage heat pumps have not been able to meet these temperature demands and have been characterized by low capacities and coefficient of performance(COP). Cascade heat pump has been developed to overcome the weaknesses of single stage heat pumps. This study reviews recent works done by researchers on cascade heat pumps for refrigeration, heating and hot water generation. Selection of suitable refrigerants to meet the pressure and temperature demands of each stage of the cascade heat pump has been discussed. Optimization of design parameters such as intermediate temperature(low stage condensing and high stage evaporating temperatures), and temperature difference in the cascade heat exchanger for optimum performance of the cascade heat pump has been reviewed. It was found that optimising each design parameter of the cascade heat pump is necessary for maximum system performance and this may improve the exergetic efficiency, especially of cascade refrigeration systems, by about 30.88%. Cascade heat pumps have wider range of application especially for artificial snow production, in the supermarkets,for natural gas liquefaction, in drying clothes and food and as heat recovery system. The performance of cascade heat pumps can be improved by 19% when coupled with other renewable energy sources for various real time applications. Also, there is the need for much research on refrigerant charge amount of cascade heat pumps, refrigerant-refrigerant heat exchangers to be used as cascade heat exchanger, cascade heat pumps for simultaneous cooling, heating and hot water generation and on the use of variable speed compressors and their control strategies in matching system capacity especially at part load conditions. 展开更多
关键词 cascade heat pump low stage high stage OPTIMIZATION system performance REFRIGERANT
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部