Wang CC, Chen KY, Liaw JS, et al. An experimental study of the air-side performance of fin-and-tube heat exchangers having plain, louver, and semi-dimple vortex generator configuration. International Journal of Heat and Mass Transfer 2015; 80: 281–287.
Delač B, Trp A, Lenić K. Numerical investigation of heat transfer enhancement in a fin and tube heat exchanger using vortex generators. International Journal of Heat and Mass Transfer 2014; 78: 662–669.
T’Joen C, Huisseune H, Canière H, et al. Interaction between mean flow and thermo-hydraulic behaviour in inclined louvered fins. International Journal of Heat and Mass Transfer 2011; 54(4): 826–837.
Powar VS, Mirza MM. Performance of louver fin pattern as extended surface used to enhance heat transfer—A review. Int Journal of Engineering Research and Applications, 2013, 3: 1409–1413.
Wang CC, Chen KY, Lin YT. Investigation of the semi-dimple vortex generator applicable to fin-and-tube heat exchangers. Applied Thermal Engineering 2015; 88: 192–197.
Zhong Y, Jacobi AM. Experimental study of louver-fin flat-tube heat exchanger performance under frosting conditions. In: Shah RK, Ishizuka M, Ruby TM, et al. (editors). Proceedings of the Fifth International Conference on Enhanced, Compact and Ultra-Compact Heat Exchangers: Science, Engineering and Technology; 2005 Sept 11–16; Whistler, British; Columbia, Canada. Hoboken, New Jersey, USA: Engineering Conferences In-ternational; 2005.
Salviano LO, Dezan DJ, Yanagihara JI. Optimization of winglet-type vortex generator positions and angles in plate-fin compact heat exchanger: Response surface methodology and direct optimization. International Journal of Heat and Mass Transfer 2015; 82: 373–387.
Pooranachandran K, Ali KSIL, Narasingamurthi K, et al. Experimental and numerical investigation of a louvered fin and elliptical tube compact heat exchanger. Thermal Science 2015; 19(2): 679–692.
Sanders PA. Effects of louver lengthand vortex generators to augment tube wall heat transfer in louvered fin heat exchangers [MSc thesis]. Virginia, USA: Virginia Polytechnic Institute and State University; 2005.
Huisseune H, T’Joen C, De Jaeger P, et al. Influence of the louver and delta winglet geometry on the thermal hydraulic performance of a compound heat exchanger. International Journal of Heat and Mass Transfer 2013; 57(1): 58–72.
Ameel B, Degroote J, Huisseune H, et al. Interaction effects between parameters in a vortex gener-ator and louvered fin compact heat exchanger. International Journal of Heat and Mass Transfer 2014; 77: 247–256.
Schmidt TE. Heat transfer calculations for extended surfaces. Refrigerating Engineering 1949; 57(4): 351–357.
Ameel B, Huisseune H, Degroote J, et al. On fin efficiency in interrupted fin and tube heat exchangers. International Journal of Heat and Mass Transfer 2013; 60: 557–566.
Achaichia A, Cowell TA. Heat transfer and pressure drop characteristics of flat tube and louvered plate fin surfaces. Experimental Thermal and Fluid Science 1988; 1(2): 147–157.
Tu X, Lin H, Liang X. CFD simulation and experimental study on air-side performance for MCHX. International Refrigeration and Air Con-ditioning Conference; 2010 Jul 10–15; Indiana, USA. Purdue University; 2010.
Kang H, Jacobi AM, Minkyoo L. Air-side heat transfer performance of louver fin and multi-tube heat exchanger for fuel-cell cooling application, in air-side h eat transfer performance of louver fin and multi-tube heat exchanger for fuel-cell. International Refrigeration and Air Conditioning Con-ference; 2012 Jul 16–19; Indiana, USA. Purdue University; 2012.
Han H, He YL, Li YS, et al. A numerical study on compact enhanced fin-and-tube heat exchangers with oval and circular tube configurations. International Journal of Heat and Mass Transfer 2013; 65: 686–695.
Wang CC, Lee CJ, Chang CT, et al. Some aspects of plate fin-and-tube heat exchangers: With and without louvers. Journal of Enhanced Heat Transfer 1999; 6(5): 357–368.
Wang CC, Tsai YM, Lu DC. Comprehensive study of convex-louver and wavy fin-and-tube heat exchangers. Journal of Thermophysics and Heat Transfer 1998; 12(3): 423–430.