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Recovery of Engine Waste Heat for Reutilization in Air

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Recovery of Engine Waste Heat for Reutilization in Air Conditioning System in an Automobile: An Investigation 35. Sari, O., Vuarnoz, D., Meili, F., Egolf, P.W., 2000. Visualization of ice slurries and ice slurry flows. In: Proceedings of the Second Workshop on Ice Slurries of the International Institute of Refrigeration, Paris, France, pp. 68–81. 36. Hansen, T.M., Kauffeld, M., Grosser, K., Zimmermann, R., 2000. Viscosity of ice slurry. In: Proceedings of the Second Workshop on Ice Slurries of the International Institute of Refrigeration, Paris, France, pp. 38–45. 37. Inaba, H., 2001. Fundamental research and development of ice slurry for its cooling system design in Japan. In: Proceedings of the Fourth Workshop on Ice Slurries of the International Institute of Refrigeration, Grand Cube Osaka, Osaka, Japan, 12–13 November, pp. 13–14. 38. Meewisse, J.W., Ferreira, C.A.I., 2000. Optimal properties of ice slurries in secondary cooling systems. In: Proceedings of the Fourth IIR-Gustav Lorentzen Conference of Natural Working Fluids, Purdue, USA, pp. 513–520. 39. Ayel, V., Lottin, O., Peerhossaini, H., 2003. Rheology, flow behaviour and heat transfer of ice slurries: a review of the state of the art. Int. J. Refrigeration 26, 95–107. 40. Janssen, M., Beks, P.., 2000. Hermetic compressor performance evaluation applying a zeotropic hydrocarbon blend instead of CFC-12. In: Proceedings of the Fourth IIR-Gustav Lorentzen Conference of Natural Working Fluids at Purdue, USA, pp. 217–224. 41. Kitanovski, A., Poredos, Al, 2002. Concentration distribution and viscosity of ice-slurry in heterogeneous flow. Int. J. Refrigeration 25, 827– 835. 42. Kauffeld, M., Kawaji, M., Egolf, P.W., Melinder, A., Davies, T.W.,2005. Handbook on Ice Slurries: Fundamentals and Engineering. International Institute of Refrigeration, Paris, France. 43. Hinde, D., Zha, S., Lan, L., 2008. CO2 experiences in North American supermarkets. In: Proceedings of the Eighth IIRGustav Lorentzen Conference on Natural Working Fluids, Copenhagen, Denmark, pp. 1098–1104. 44. Melinder, A., 2004. Secondary Fluids for Low Operating Temperatures. Proceedings of the Sixth IIR-Gustav Lorentzen Conference on Natural Working Fluids, Glasgow, United Kingdom, August 29–September 1. 45. Pachai, A.C., 2004. Experience with CO2 as refrigerant in supermarkets. In: Proceedings of the Sixth IIR-Gustav Lorentzen Conference on Natural Working Fluids, Glasgow, United Kingdom, August 29–September 1. 46. Pearson, A., 2005. Carbon dioxide – new uses for an old refrigerant. Int. J. Refrigeration 28, 1140– 1148. 47. Devotta, S., Sawant, N.N., 2000. Life testing of hermetic compressor with various hydrocarbon grades and other alternatives to CFC-12. In: 48. 49. 50. 51. 52. 53. 54. 55. 56. 57 58 59 60 61 Proceedings of the Fourth IIRGustav Lorentzen Conference of Natural Working Fluids, Purdue, USA, pp. 245–249. Pellec, C.L., Marvillet, C., Clodic, D., 1996. Experimental study of flat heat exchangers in ammonia refrigeration unit. In: Proceedings of the IIR Conference on Applications for Natural Refrigerants, Aarhus, Denmark, pp. 785–794. Dow. Product Information: Dowtherm G., 2009a. http://www.dow. Com / Published Literature Dow. Product Information: Dowtherm J., 2009b.http://www.dow.com/Published Literature Dow. Product Information: Dowtherm Mx,2009c.http://www.dow.com PublishedLiterature Dow. Product Information: Dowtherm Xlt,2009e. http://www. dow.com / Published Literature Setaro, T., Boccardi, G., Corberan, J.M., Urchueguia, J., Gonzalvez, J., 2000. Comparative study of evaporation and condensation of propane and R22 in a brazed plate heat exchanger and a tube and fins coil. In: Proceedings of the Fourth IIR Gustav Lorentzen Conference of Natural Working Fluids, Purdue, USA, pp. 233–238. Hrnjak, P.S., Hoehne, M.R., 2004. Charge minimization in systems and components using hydrocarbons as a refrigerant. ACRC TR-224. Hrnjak, P.S., Litch, A.D., 2008. Microchannel heat exchangers for charge minimization in air-cooled ammonia condensers and chillers. Int. J. Refrigeration 31, 658–668. Fernando, P., Palm, B., Ameel, T., Lundqvist, P., Granryd, E., 2004. Propane heat pump with low refrigerant charge: design and laboratory tests. Int. J. Refrigeration 27, 761–773. Fernando, P., Palm, B., Ameel, T., Lundqvist, P., Granryd, E., 2008a. A minichannel aluminum tube heat exchanger – part I: evaluation of single-phase heat transfer coefficients by the Wilson plot method. Int. J. Refrigeration 31, 669–680. Fernando, P., Palm, B., Ameel, T., Lundqvist, P., Granryd, E., 2008b. A minichannel aluminium tube heat exchanger – part II: evaporator performance with propane. Int. J. Refrigeration 31, 681–695. Fernando, P., Palm, B., Ameel, T., Lundqvist, P., Granryd, E., 2008c. A minichannel aluminum tube heat exchanger – part III: condenser performance with propane. Int. J. Refrigeration 31, 696–708. Walker, D.H., 2000. Low-charge refrigeration for supermarket. IEA Heat Pump Centre Newsletter 31, 13–15. Kruse, H., 2000. Refrigerant use in Europe. ASHRAE J. 42, 16–25. Likes, P., 1996. Secondary refrigerant systems for supermarket equipment. In: International Conference on Ozone Protection 17 © 2012 Global Journals Inc. (US) Global Journal of Researches in Engineering (A ) Volume XII Issue vvvvI Version I January 2012

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