Experimental analysis on drying performance of a condensing clothes dryer with two new plate-fin heat exchangers

被引:5
|
作者
Lin, Zibo [1 ]
Wang, Hui [2 ]
Wang, Ying [1 ]
Cao, Yilin [2 ]
Lei, Xiangshu [1 ]
Bai, Shuzhao [2 ]
Xu, Xiaowen [2 ]
Sun, Jiantao [2 ]
Liu, Yingwen [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Energy & Power Engn, Key Lab Thermo Fluid Sci & Engn MOE, Xian 710049, Shaanxi, Peoples R China
[2] Midea Grp Co Ltd, Foshan 528000, Guangdong, Peoples R China
基金
中国国家自然科学基金;
关键词
Condensing clothes dryer; Condenser; Plate -fin heat exchanger; Drying performance; Energy efficiency; TUMBLER DRYER; IMPROVEMENT; EFFICIENCY; LEAKAGE;
D O I
10.1016/j.csite.2023.102769
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this paper, an off-set fin heat exchanger (OSFHE) and a flying-wing fin heat exchanger (FWFHE) were developed for the condenser of a condensing clothes dryer. They were used to replace the slit fin heat exchanger (SFHE), which is the prototype condenser. Performance pa-rameters, like condensation rate, IEC energy efficiency index (EEI) and specific moisture extraction rate (SNEER), were used to assess the dehumidification performance of the heat ex-changers and the drying performance of the dryer. Though the fin areas of OSFHE and FWFHE are 20% and 34.2% less than that of SFHE, the experiment results indicated that OSFHE and FWFHE had a faster condensation rate than SFHE during the main drying stage. And the heat exchanger with a faster condensation rate also led to less power consumption of the dryer in most tests. Compared with using SFHE, using OSFHE could decrease the EEI of the dryer by 0.43%. Using FWFHE could reduce the EEI of the dryer by 1.19% and improve the EU energy efficiency class of the dryer from Class C to Class B. Both OSFHE and FWFHE are able to replace SFHE and become a new generation of condensers for clothes dryers.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Study on model predictive control of plate-fin heat exchangers
    Guan, X
    Cui, GM
    Li, ML
    Luo, X
    ADVANCED COMPUTATIONAL METHODS IN HEAT TRANSFER VIII, 2004, 5 : 223 - 231
  • [42] Experimental study on thermal-hydraulic characteristics of cryogenic plate-fin heat exchangers
    Kim, Bo Kyem
    Yoo, Jin Woo
    CRYOGENICS, 2024, 140
  • [43] Effect of flow maldistribution on heat transfer performance and temperature field of plate-fin heat exchangers
    Li, Jun
    Gao, Yang
    Liu, Cheng
    Yan, Xinkai
    Zhao, Haiqian
    Xu, Yizhe
    Meng, Erlin
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2023, 149
  • [44] Physics-Based Modelling of Plate-Fin Heat Exchangers
    Grespan, Mattia
    Leonforte, Adriano
    Calo, Luigi
    Cavazzuti, Marco
    Angeli, Diego
    ENERGIES, 2025, 18 (03)
  • [45] Performance evaluation of heat transfer enhancement in plate-fin heat exchangers with offset strip fins
    Yang Yujie
    Li Yanzhong
    Si Biao
    Zheng Jieyu
    PROCEEDINGS OF THE 25TH INTERNATIONAL CRYOGENIC ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2014, 2015, 67 : 543 - 550
  • [46] NUMERICAL STUDY ON FLOW DISTRIBUTION IN PLATE-FIN HEAT EXCHANGERS
    张哲
    厉彦忠
    Academic Journal of Xi'an Jiaotong University, 2003, (02) : 162 - 165
  • [47] Numerical and experimental studies of three-dimensional plate-fin and tube heat exchangers
    Jang, JY
    Wu, MC
    Chang, WJ
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1996, 39 (14) : 3057 - 3066
  • [48] The sizing and passage arrangement of multistream plate-fin heat exchangers
    Prasad, BSV
    HEAT TRANSFER ENGINEERING, 1996, 17 (03) : 35 - 43
  • [49] Investigation on fluid flow maldistribution in plate-fin heat exchangers
    Jiao, AJ
    Sangkwon, J
    CRYOGENICS AND REFRIGERATION - PROCEEDINGS OF ICCR'2003, 2003, : 228 - 231
  • [50] Optimal design of plate-fin heat exchangers by a Bees Algorithm
    Zarea, Hossein
    Kashkooli, Farshad Moradi
    Mehryan, Abdollah Mansuri
    Saffarian, Mohammad Reza
    Beherghani, Esmaeel Namvar
    APPLIED THERMAL ENGINEERING, 2014, 69 (1-2) : 267 - 277