2 Webb R L, Wanniarachchi A S. The effect of non-condensable gases in water chiller condensers-literature survey and theoretical predictions. ASHRAE Trans, 1980, 80: 142-159
[2]
6 Wilson R W. Condensation of sulfuric acid and water mixtures in laminar flow. Dissertation for Doctoral Degree. Ann Arbor: Lehigh University, 1989
[3]
10 Ahmad M, Berthoud G, Mercier P. General characteristics of two-phase flow distribution in a compact heat exchanger. Int J Heat Mass Transf, 2009, 52: 442-450
[4]
11 Mahmood G I, Ligrani P M. Heat transfer in a dimpled channel: combined influences of aspect ratio, temperature ratio, Reynolds number, and flow structure. Int J Heat Mass Transf, 2002, 45: 2011-2020
[5]
12 Chen J, Müller-Steinhagen H, Duffy G G. Heat transfer enhancement in dimpled tubes. Appl Therm Eng, 2001, 21: 535-547
[6]
13 Ligrani P M, Mahmood G I, Harrison J L, et al. Flow structure and local Nusselt number variations in a channel with dimples and protrusions on opposite walls. Int J Heat Mass Transf, 2001, 44: 4413-4425
[7]
14 Chen Y, Fiebig M, Mitra N K. Heat transfer enhancement of a finned oval tube with punched longitudinal vortex generators in-line. Int J Heat Mass Transf, 1988, 41: 4151-4166
[8]
1 Moskovits P. Low-temperature boiler corrosion and deposits—A literature review. Ind Eng Chem, 1959, 51: 1305-1312
[9]
3 Osakabe M, Yagi K, Itoh T, et al. Condensation heat transfer on tubes in actual flue gas: Parametric study for condensation behavior. Heat Transf Asian Res, 2003, 32: 153-166
[10]
4 Abel E. The vapor phase above the system sulfuric acid-water. J Phys Chem, 1946, 50: 260-282
[11]
5 Gmitro J I, Vermeulen T. Vapor-liquid equilibria for aqueous sulfuric acid. AIChE J, 1964, 10: 740-746
[12]
7 Zhang Z T. Mass transfer processes in flow passages of rotating regenerative air preheaters. Dissertation for Doctoral Degree. Ann Arbor: Lehigh University, 1991
[13]
8 Volz W. Condensation of water vapour and acid mixtures from exhaust gases. Dissertation for Doctoral Degree. Berlin: Berlin University, 2004
15 Wu J M, Zhang H, Yan C H, et al. Experimental study on the performance of a novel fin-tube air heat exchanger with punched longitudinal vortex generator. Energy Convers Manag, 2012, 57: 42-48
[16]
16 Lei Y G, He Y L, Tian L T, et al. Hydrodynamics and heat transfer characteristics of a novel heat exchanger with delta-winglet vortex generators. Chem Eng Sci, 2010, 65: 1551-1562
[17]
17 Leu J S, Wu Y H, Jang J Y. Heat transfer and fluid flow analysis in plate-fin and tube heat exchangers with a pair of block shape vortex generators. Int J Heat Mass Transf, 2004, 47: 4327-4338
[18]
18 Wang Q W, Chen Q Y, Wang L, et al. Experimental study of heat transfer enhancement in narrow rectangular channel with longitudinal vortex generators. Nucl Eng Des, 2007, 237: 686-693
[19]
19 Zhao X B, Tang G H, Ma X W, et al. Numerical investigation of heat transfer and erosion characteristics for H-type finned oval tube with longitudinal vortex generators and dimples. Appl Energy, 2014, 127: 93-104
[20]
24 Giauque W F, Hornung E W, Kunzler J E, et al. The thermodynamic properties of aqueous sulfuric acid solutions and hydrates from 15 to 300 K. J Amer Chem Soc, 1960, 82: 62-67
[21]
25 Copeman T W, Stein F P. On the derivation of solution thermodynamics for reactive components. Fluid Phase Equilib, 1982, 9: 149-165
[22]
26 Gee D L, Webb R L. Forced convection heat transfer in helically rib-roughened tubes. Int J Heat Mass Transf, 1980, 23: 1127-1136
20 Tian L T, He Y L, Tao Y B, et al. A comparative study on the air-side performance of wavy fin-and-tube heat exchanger with punched delta winglets in staggered and in-line arrangements. Int J Therm Sci, 2009, 48: 1765-1776
[25]
21 Bi C, Tang G H, Tao W Q. Heat transfer enhancement in mini-channel heat sinks with dimples and cylindrical grooves. Appl Therm Eng, 2013, 55: 121-132
[26]
22 Xiao N, Zhang Q, Ligrani P M, et al. Thermal performance of dimpled surfaces in laminar flows. Int J Heat Mass Transf, 2009, 52: 2009-2017