Determination of heat and mass transfer coefficients by condensation in an air cooler

被引:0
|
作者
Nia, Fatemeh Esfandiari [1 ]
van Paassen, Dolf [1 ]
机构
[1] Delft Univ Technol, NL-2628 CD Delft, Netherlands
关键词
air cooler; fined-tube heat exchanger; heat and mass transfer coefficients; Lewis number; condensation;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This paper describes an improved class of heat and mass transfer air cooler model. The model is based on the approach of Green [1]. It delivers a compact and fast model that is appropriate for year round simulations of air conditioning systems. The model is validated through a set of experiments in the laboratory with an air cooler of eight rows. The heat transfer coefficients have been derived from the standard relations. For a good agreement between the measurements of a wet cooler and the model solutions, a substantial correction in the heat transfer coefficients is needed. In addition, the results obtained from the measurements indicated that the heat transfer coefficient itself and the correlation between heat and mass transfer had to be adapted. Acceptable results were obtained when mass transfer coefficient was adjusted by a correction factor. The decrease in heat transfer has been observed with an increase in dehumidification and the same could be concluded from the coupling of heat and mass transfer. The fins are not completely wet, which implies that an analogy between sensible and latent heat only partly exists. The model does not take wetness of the pipe into account. To overcome this problem, the Lewis number is modulated, based on the degree of dehumidification. In other words, the smaller mass transfer coefficient, there is the higher the dehumidification.
引用
收藏
页码:1377 / 1385
页数:9
相关论文
共 50 条
  • [31] ESTIMATION OF HEAT AND MASS TRANSFER COEFFICIENTS DURING AIR-FREEZING OF CUCUMBER
    Xanthopoulos, G.
    Mitropoulos, D.
    Lambrinos, G.
    INTERNATIONAL JOURNAL OF FOOD PROPERTIES, 2012, 15 (1-2) : 221 - 235
  • [32] HEAT AND MASS-TRANSFER COEFFICIENTS FOR WATER AND AIR IN ASPEN EXCELSIOR PADS
    KIMBALL, BA
    BENHAM, DS
    WIERSMA, F
    TRANSACTIONS OF THE ASAE, 1977, 20 (03): : 509 - 514
  • [33] HEAT COMPENSATION METHOD FOR EVALUATING HEAT AND MASS TRANSFER COEFFICIENTS BETWEEN AIR AND LIQUID DESICCANT
    Zhang, Xiaosong
    Cao, Rongquan
    Yin, Yonggao
    Li, Shiqiang
    23RD IIR INTERNATIONAL CONGRESS OF REFRIGERATION, 2011, 23 : 3553 - 3559
  • [34] CONDENSATION OF STEAM IN PRESENCE OF AIR - EXPERIMENTAL MASS TRANSFER COEFFICIENTS IN A DIRECT-CONTACT SYSTEM
    SADEK, SE
    INDUSTRIAL & ENGINEERING CHEMISTRY FUNDAMENTALS, 1968, 7 (02): : 321 - &
  • [35] Study on solution of heat transfer coefficients under condensation
    Jin, An
    Li, Feng
    Shuai, Zhiming
    Shiyou Huagong Shebei/ Petro-Chemical Equipment, 1997, 26 (01): : 30 - 33
  • [36] Flow condensation heat transfer coefficients of pure refrigerants
    Jung, D
    Song, KH
    Cho, Y
    Kim, SJ
    INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2003, 26 (01): : 4 - 11
  • [37] HEAT-TRANSFER COEFFICIENTS FOR TURBULENT FILMWISE CONDENSATION
    RAZAVI, MD
    DAMLE, AS
    TRANSACTIONS OF THE INSTITUTION OF CHEMICAL ENGINEERS, 1978, 56 (02): : 81 - 85
  • [38] Heat transfer and condensation of overflow steam in air
    Xie Y.
    Liu Y.
    Zhang Z.
    Tong Y.
    Li B.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2018, 33 (09): : 2058 - 2066
  • [39] HEAT AND MASS TRANSFER IN A GRANULAR LAYER .3. DETERMINATION OF THE MASS TRANSFER COEFFICIENTS IN A MOVING GRANULAR LAYER
    GUSEV, IV
    NIKITINA, NI
    AEROV, ME
    SOVIET PHYSICS-TECHNICAL PHYSICS, 1956, 1 (09): : 1942 - 1944