AN OVERVIEW OF RECENT PROGRESS IN CONDENSATION HEAT TRANSFER ENHANCEMENT ACROSS HORIZONTAL TUBES AND THE TUBE BUNDLE

被引:3
|
作者
Bano, Tayyaba [1 ]
Ali, Hafiz Muhammad [2 ]
机构
[1] Tech Univ Bergakad Freiberg, Inst Mech & Fluid Dynam Imfd, Freiberg, Germany
[2] King Fand Univ Petr & Minerals, Mech Engn Dept, Dhahran 31261, Saudi Arabia
来源
JOURNAL OF THERMAL ENGINEERING | 2021年 / 7卷 / 01期
关键词
Condensation heat transfer; Fin-tube; Heat transfer enhancement; Fluid; INTEGRAL-FIN TUBES; FILM CONDENSATION; TRANSFER COEFFICIENTS; VAPOR VELOCITY; BINARY-MIXTURE; MASS-TRANSFER; PURE FLUID; CONVECTION CONDENSATION; PREDICTIVE CORRELATION; THERMAL-CONDUCTIVITY;
D O I
10.18186/thermal.840018
中图分类号
O414.1 [热力学];
学科分类号
摘要
The present paper presents a review of condensation heat transfer across smooth and enhanced horizontal surfaces due to its significance in refrigeration, air conditioning and heat pump applications. The emphasizes is on the recent understanding of experimental as well as the semi-empirical correlations to investigate the heat transfer phenomena during condensation associated with enhanced geometries. An effort has been made to submit free-convection condensation effects outside of single tubes and the tube bundle with the influence of tube geometries, condensate retention and gravity on film condensation; however, comparison of forced convection is also presented. Alternative of conventional refrigerants in condensation process by low-global warming potential (GWP) refrigerants is addressed as well due to increase in atmospheric burden affected by hydro-fluoro-carbons (HFCs). Although many researchers have reviewed the condensation impact across enhanced surfaces, a few of them revised its behavior across pin-fin tubes. The effects of geometry, surface wettability, and operating conditions on the location, amount and form of condensate film are discussed. Various theoretical models prediction with the new experimental data across pin-fin tubes is also revealed. This review is distributed into two main sections: the first section focuses on condensation across enhanced tubes, sub dividing the study into integral-fin and pin-fin tubes based on theoretical and experimental investigations. It covers the geometrical effects concerning three dimensional (3D) surfaces, fin density, fin spacing and fin thickness. The later part of the paper concentrates on condensation behavior across the tube bundle incorporating the effects of fin density and refrigerant mixtures highlighting both theoretical and experimental knowledge. Recent research shows an agreement between theoretical and experimental models in the defined area; though, a considerable amount of work on semi-empirical correlation formulation is visible in the literature. The strength of this paper is the latest findings on condensation against different geometrical parameters of extended surfaces specifically across pin- fin tubes and the tube bundle. Finally, theoretical enhancement factors along with many heat transfer correlations are presented and recommendations are suggested for the future work.
引用
收藏
页码:1 / 36
页数:36
相关论文
共 50 条
  • [1] HEAT TRANSFER AND HYDRAULIC RESISTANCE DURING CONDENSATION OF STEAM IN A HORIZONTAL TUBE AND IN A BUNDLE OF TUBES
    BOYKO, LD
    KRUZHILIN, GN
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1967, 10 (03) : 361 - +
  • [2] RECENT PROGRESS IN ENHANCING FILM CONDENSATION HEAT TRANSFER ON HORIZONTAL TUBES.
    Marto, P.J.
    Heat Transfer Engineering, 1986, 7 (3-4) : 53 - 63
  • [3] HEAT-TRANSFER WITH STEAM CONDENSATION ON A BUNDLE OF HORIZONTAL TUBES
    BERMAN, LD
    THERMAL ENGINEERING, 1981, 28 (04) : 218 - 224
  • [4] An overview of condensation heat transfer on horizontal tube bundles
    Browne, MW
    Bansal, PK
    APPLIED THERMAL ENGINEERING, 1999, 19 (06) : 565 - 594
  • [5] Overview of condensation heat transfer on horizontal tube bundles
    Browne, M.W.
    Bansal, P.K.
    Applied Thermal Engineering, 19 (06): : 565 - 594
  • [6] HEAT TRANSFER IN VAPOR CONDENSATION ON A HORIZONTAL TUBE BUNDLE.
    Kutateladze, S.S.
    Gogonin, I.I.
    Dorokhov, A.R.
    Sosunov, V.I.
    Heat transfer. Soviet research, 1981, 13 (03): : 32 - 50
  • [7] Heat transfer enhancement with a surfactant on horizontal bundle tubes of an absorber
    Yoon, JI
    Kim, E
    Choi, KH
    Seol, WS
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2002, 45 (04) : 735 - 741
  • [8] Heat transfer enhancement with a surfactant in horizontal bundle tubes on an absorber
    Yoon, JI
    Kim, E
    Seol, WS
    Moon, CG
    Kim, DH
    COMPACT HEAT EXCHANGERS AND ENHANCEMENT TECHNOLOGY FOR THE PROCESS INDUSTRIES-2001, 2001, : 429 - 434
  • [9] Condensation heat transfer and enhancement of nonazeotropic mixtures in horizontal bundle
    Zhang, Zhenguo
    Wang, Shiping
    Geng, Jianjun
    Deng, Songjiu
    Huagong Xuebao/Journal of Chemical Industry and Engineering (China), 1996, 47 (05): : 642 - 644
  • [10] HEAT TRANSFER WITH STEAM CONDENSATION AT ATMOSPHERIC PRESSURE ON A HORIZONTAL BUNDLE OF TUBES
    BUGLAEV, VT
    ANDREEV, MM
    KAZAKOV, VS
    THERMAL ENGINEERING, 1970, 17 (11) : 93 - &