介绍了CO_2跨临界循环温湿度独立控制一体化空调系统中的CO_2跨临界循环的运行原理,并且建立了相应的数学物理模型来对系统进行理论分析研究和仿真模拟.同时,以机组制冷量为100 k W为例,结合Coolpack软件对系统进行模拟分析研究.模拟跨...介绍了CO_2跨临界循环温湿度独立控制一体化空调系统中的CO_2跨临界循环的运行原理,并且建立了相应的数学物理模型来对系统进行理论分析研究和仿真模拟.同时,以机组制冷量为100 k W为例,结合Coolpack软件对系统进行模拟分析研究.模拟跨临界CO_2循环在不同的蒸发温度TE、冷却器出口温度T4、以及压缩机排气压力P对系统COP的影响,为跨临界CO_2循环热泵在温湿度独立控制一体化空调系统中的应用提供理论支持.展开更多
CO2 is a safe natrual refrigerant which had been and will be widely used in air condi-tioning and heat pump systems. The thernodynamic analysis of the CO2 transcritical cycleis presented in this paper. The result show...CO2 is a safe natrual refrigerant which had been and will be widely used in air condi-tioning and heat pump systems. The thernodynamic analysis of the CO2 transcritical cycleis presented in this paper. The result shows that the CO2 cycles offers heat recovery benefitas a heat pump system. It is possible that the COP value of CO2 cycle can compete withthose of R22 or R134a if two stage compression system or an expander system are used.展开更多
文摘介绍了CO_2跨临界循环温湿度独立控制一体化空调系统中的CO_2跨临界循环的运行原理,并且建立了相应的数学物理模型来对系统进行理论分析研究和仿真模拟.同时,以机组制冷量为100 k W为例,结合Coolpack软件对系统进行模拟分析研究.模拟跨临界CO_2循环在不同的蒸发温度TE、冷却器出口温度T4、以及压缩机排气压力P对系统COP的影响,为跨临界CO_2循环热泵在温湿度独立控制一体化空调系统中的应用提供理论支持.
文摘CO2 is a safe natrual refrigerant which had been and will be widely used in air condi-tioning and heat pump systems. The thernodynamic analysis of the CO2 transcritical cycleis presented in this paper. The result shows that the CO2 cycles offers heat recovery benefitas a heat pump system. It is possible that the COP value of CO2 cycle can compete withthose of R22 or R134a if two stage compression system or an expander system are used.