[1] K. Lee, B. Chung, J. Lee, J. Hyun and S. Kim (2002). “Comparison of heat and mass transfer in falling film and bubble absorbers of ammonia-water”. Experimental Heat Transfer (2002): 15: pp191-205.
[2] Y. Hsieh and T. Lin. “Saturated flow boiling heat transfer and pressure drop of refrigerant R410A in vertical plate heat exchanger”. International Journal of Heat and Mass Transfer. (2002): 45: pp1033 –1044.
[3] Z. Song, R. Wang and X. Zhai. “Solar driven high temperature radiant cooling”. Chinese Science Bulletin (2009): 54(6): pp978 – 985.
[4] E. Estiot, S. Natzer, and C. Schweigler. “Heat exchanger development for compact water/LiBr absorption systems”. Proceedings of the 22nd International Congress of Refrigeration, Beijing (2007): pp5572 – 5582.
[5] J. Cerezo, M. Bourouis, M. Valles, A. Coronas and R. Best. “Experimental study of an ammonia-water bubble absorber using a plate heat exchanger for absorption machines”. Applied Thermal Engineering, Elsevier (2010): 29(5 – 6), pp1005 – 1018.
[6] B. Watel, “Review of saturated flow boiling in small passages of compact heat exchangers”. International journal of thermal science. (2003): 42: pp107 – 140.
[7] C. Vazhappilly, T. Tharayil and A. Najarajan. “Modeling and Experimental Analysis of Generator in Vapour Absorption Refrigeration System”. International Journal of Engineering Research and Application. Vol 2, issue 5 (2013) pp 23-32.
[8] M. De Vega and J. Almendros – Ibanez. “Performance of a LiBr – water absorption chiller operating with plate heat exchangers”. Energy conversion and management. (2006): 47, pp3393 – 3407.
[9] J. Duffie and W. Beckman. “Solar engineering of thermal processes”. 4th Edition John Wiley and sons incorporation (2013).
[10] C. Arora. “Refrigeration and air conditioning”. 2nd Edition Tata McGraw-Hill Publishing Company Limited, New Delhi (2000).
[11] J. Lienhard IV and J. Lienhard V. “A heat transfer textbook”. 3rd Edition. Phlogiston Press, Cambridge Massachusetts, USA (2005).
[12] R. Shah and A. Wanniarachchi. “Plate heat exchanger design theory in industry heat exchanger”. J. M. Buchlin (Ed), lecture series, no. 1991 – 04, Von Karman Institute for Fluid Dynamics, Belgium (1992). Obtained at www.koreascience.or.kr
[13] R. Lee, R. DiGuilio, S. Jeter, and A. Tega. “Properties of LiBr-water solutions at high temperatures and concentrations – part I (Thermal conductivity)”. ASHARE Trans, (1990): paper 3380: pp 702 – 708.
[14] R. Lee, R. DiGuilio, S. Jeter, and A. Tega. “Properties of LiBr-water solutions at high temperatures and concentrations – part II (Density and Viscosity)”. ASHARE Trans, (1990): paper 3381: pp 709 – 714.
[15] J. Incropera, A. Dewitt, P. Bergmann and C. Lavine. “Fundamentals of heat and mass transfer”. 6th edition. Wiley publishers (2004).
[16] R. Wurfel and N. Otrowski. “Experimental investigations of heat transfer and pressure drop during the condensation process in thin plate heat exchangers of the herring bone type”. International Journal of Thermal Science. (2004) Vol.43(1),: pp59 – 68.
[17] I. Kamal. “Evaluation of mass transfer coefficient of gas absorption into falling liquid film”. Chemical Engineering Process Technology. (2013): 1(3): pp 1018 – 1025.
[18] W. Wilke. “Heat transfer to falling liquid films”. Chemical engineering science (1967): Vol. 22: pp1152 – 1154.
[19] F. Lansing. “Computer modelling of a single-stage LiBr/water absorption refrigeration unit”. JPL Deep Space Network Progress Report, DSN 42 – 32 (1976). Pp247 – 257. (A pdf document on the internet).
Thank you for copying data from http://www.arastirmax.com