Review on Exhaust Gas Heat Recovery for I.C. Engine

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ISSN: 2277-3754 ISO 9001:2008 Certified International Journal of Engineering and Innovative Technology (IJEIT) Volume 2, Issue 12, June 2013 [10] N. Hossain And S Bari, “Effect Of Design-Parameters Of Heat Exchanger On Recovering Heat From Exhaust Of Diesel Engine Using Organic Rankine Cycle,” Proceedings of the International Conference on Mechanical Engineering 2011 (ICME2011) 18-20 December 2011, Dhaka, Bangladesh. [11] V. Johnson, “Heat-generated cooling opportunities in vehicles,” SAE Technical Papers, No. 2002, 2002-01-1969. [12] John B. Heywood, “Internal Combustion Engine Fundamental,” Tata McGraw Hill Education Private Limited, Edition 2011, pp 249-250. [13] V Ganeshan, “Internal Combustion Engine,” Tata McGraw Hill Publishing Company Limited, Second Edition, pp 35, 606-670. [14] E.F. Doyle, P.S. Patel, “Compounding the truck diesel engine with an organic rankine cycle system,” 760343, Society of Automotive Engineers (SAE), 1976. [15] C. James Conklin, P. James Szybist, “A highly efficient six-stroke internal combustion engine cycle with water injection for in-cylinder exhaust heat recovery,” Energy 35 (4) (2010) 1658-1664. [16] R. Saidur, M.Rezaei, W.K.Muzammil, M.H.Hassan, S.Paria, M.Hasanuzzaman, „Technologies to recover exhaust heat from internal combustion engines,” Renewable and Sustainable Energy Reviews 16 (2012) 5649–5659. [17] Hou Xuejun and Gao Deli, “Analysis of Exhaust Gas Waste Heat Recovery and Pollution Processing for Z12V190 Diesel Engine,” Maxwell Scientific Organization, Res. J. Appl. Sci. Eng. Technol.,vol.4, 2012, pp 1604-1611 [18] Mhia Md. Zaglul Shahadat, Md. Nurun Nabi And Md. Shamim Akhter, “Diesel Nox Reduction By Preheating Inlet Air”, Proceedings Of The International Conference On Mechanical Engineering 2005. [19] F. Karaosmanoglu, “Vegetable oil fuels: a review,” Energy Sources 21,(1999) 221–231. [20] Zhang X, Chau KT, “An automotive thermoelectric–photovoltaic hybrid energy system using maximum power point tracking,” Energy Conversion and Management 2011; 52(1):641–7. [21] Vazquez J, Sanz-Bobi M, Palacios R, “State of the art of thermoelectric generators based on heat recovered from the exhaust gases of automobiles,” In: Proceedings of the seventh European workshop on thermoelectrics; 2002. [22] Yuchao Wang, Chuanshan Dai, Shixue Wang, “Theoretical analysis of a thermoelectric generator using exhaust gas of vehicles as heat source,” Appl Energy (2013), http://dx.doi.org/10.1016/j.apenergy.2013.01.018. [23] Jihad G. Haidar and Jamil I. Ghojel, “Waste Heat Recovery From The Exhaust Of Low-Power Diesel Engine Using Thermoelectric Generators,” 20th International Conference On Thermoelectric (2001), pp 0-7803-5908-9, 02001 IEEE. [24] k. m. saqr, m. k. mansour and m. n. musa, “Thermal design of automobile exhaust based thermoelectric generators: objectives and challenges,” International Journal of Automotive Technology, (2008) Vol. 9, No. 2, pp. 155-160. [25] Vijay Chauhan, “A Review Of Research In Mechanical Engineering On Recovery Of Waste Heat In Internal Combustion Engine,” International Journal Of Research In Engineering & Applied Sciences, Volume 2, Issue 12 (December 2012) pp 2249-3905.N. [26] Galanis E. Cayer, P. Roy, E.S. Denis and M. Désilets “Electricity Generation from Low Temperature Sources,” Journal of Applied Fluid Mechanics, ISSN 1735-3645. Vol. 2, 2009, pp55-67. [27] U. Drescher, D. Bruggemann, “Fluid selection for the organic Rankine cycle (ORC) in biomass power and heat plants,” Applied Thermal Engineering 2007; 27: 223–228. [28] Ramesh Kumar, Ankit Sonthalia, And Rahul Goel, “Experimental study on waste heat recovery from an internal combustion engine using thermoelectric technology,” thermal science, 2011, vol. 15, no. 4, pp. 1011-1022. [29] Hou Xuejun and Gao Deli. “Computational Models Analysis of Diesel Engine Exhaust Waste Heat Recovery,” International Conference on Ecology, vol.7, 2012. [30] Saiful A. Zulkifli, Mohd N. Karsiti and A. Rashid A. Aziz,”Starting of a Free-Piston Linear Engine-Generator by Mechanical Resonance and Rectangular Current Commutation,” IEEE Vehicle Power and Propulsion Conference (VPPC), September 3-5, 2008, Harbin, China. [31] Alpesh V. Mehta, “Waste Heat Recovery Using Stirling Engine,” International Journal of Advanced Engineering Technology, Vol.3, 2012. pp 305-310. [32] D.W. Wu, R.Z. Wang, „combined cooling, heating and power: A review, Progress in Energy and Combustion Science 32 (2006) 459–495. [33] Hongshu JIA, Guotong Hong, Ning Cheng, Wei Li, “Key Techniques for Designing Free Piston Stirling Engine,” 2/12©2012 IEEE 978-1-4577-0547. [34] Kwankaomeng S, And Promvonge P, “Investigation on A Free-Piston Stirling Engine and Pneumatic Output,” The First TSME International Conference on Mechanical Engineering 20-22 October, 2010, Ubon Ratchathani. [35] Mohsin J. Dadi Imran M Molvi,. Alpesh V Mehta, “The Most Efficient Waste Heat Recovery Device: A Gamma Type Stirling Engine,” International Journal of Advanced Engineering Technology, Vol.3, 2012, pp189-195. [36] Hugues L. Talom, Asfaw Beyene, “Heat recovery from automotive engine” Applied Thermal Engineering, vol.29, 2009 pp439–444. [37] S. Jiangzhou, R.Z. Wang, Y.Z. Lu, Y.X. Xu, J.Y. Wu, Z.H. Li., “Locomotive driver cabin adsorption air-conditioner,” Renewable Energy 28 (2003) 1659–1670. [38] M. Talbi and B. Agnew, “Energy recovery from diesel engine exhaust gases for performance enhancement and air conditioning,” Applied Thermal Engineering 22 (2002) 693–702. [39] V. Pandiyarajan, M. Chinna Pandian, E. Malan, R. Velraj, R.V. Seeniraj, “Experimental investigation on heat recovery from diesel engine exhaust using finned shell and tube heat exchanger and thermal storage system,” Applied Energy 88 (2011), pp 77–87. 100

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