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作 者:严磊 李文正 吴薇[1] 何伊静 郭辰雨 张琪月 廖扬颡 Yan Lei;Li Wenzheng;Wu Wei;He Yijing;Guo Chenyu;Zhang Qiyue;Liao Yangsang(School of Energy and Mechanical Engineering,Nanjing Normal University,Nanjing 210023,China)
机构地区:[1]南京师范大学能源与机械工程学院,江苏南京210023
出 处:《南京师范大学学报(工程技术版)》2021年第2期1-8,共8页Journal of Nanjing Normal University(Engineering and Technology Edition)
摘 要:提出一种与热泵结合的预冷型溶液除湿空调系统,利用室内回风作为再生空气、热泵冷凝热预热再生空气和再生溶液、冷冻水预冷除湿前溶液.建立了与实验数据具有良好吻合度的系统整体数学模型,模拟研究了系统再生侧热泵冷凝热分配比φ、再生空气回风比Rhf以及除湿侧冷冻水入口温度tw,in的变化对系统性能的影响.结果表明,随着φ的增加,系统的再生能力、除湿能力与性能系数均会下降.随着Rhf增加,系统的除湿量和系统性能系数分别上升了30.95%和20.07%.当tw,in升高时,再生侧的调节能抑制系统除湿能力的进一步下降.研究结果为溶液除湿空调系统的优化提供思路.A precooled solution dehumidification air conditioning system combined with a heat pump is proposed.The indoor return air is used as the regenerated air,the condensing heat pump is used to preheat the regenerated air and the regenerated solution,and the chilled water is used as the pre-cooled dehumidification solution.An overall mathematical model of the system is established,which is in good agreement with the experimental data.The effects of the cooling heat distribution ratioφof the heat pump in the regeneration side,the return air ratio Rhfof the regenerated air and the inlet temperature tw,inof the chilled water in the dehumidification side on the system performance are simulated and studied.The results show that the regeneration capacity,dehumidification capacity and performance coefficient of the system decrease with the increase ofφ.With the increase of Rhf,the dehumidification capacity and the system performance coefficient increase by 30.95%and 20.07%,respectively.When tw,inincreases,the regulation on the regeneration side can inhibit the further decline of the dehumidification capacity.The research results provide ideas for the optimization of solution dehumidification air conditioning system.
分 类 号:TU834.9[建筑科学—供热、供燃气、通风及空调工程]
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