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Articles

Thermodynamic analysis of a twin cylinder diesel engine in dual fuel mode with producer gas

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Pages 49-55 | Received 30 May 2015, Accepted 18 Oct 2015, Published online: 10 Dec 2015

References

  • Bhide A, Monroy RC. Energy poverty: A special focus on energy poverty in India and renewable energy technologies. Renew Sustain Energ Rev. 2011;15(2):1057–1066.
  • Chen GQ. Exergy consumption of the earth. Ecol Model. 2005;184(2-4):363–380.
  • Acharya SK, Jena SP. Performance and emission analysis of a CI engine in dual mode with LPG and Karanja oil methyl ester. Int Scholarly Res Notices Ren Energ. 2013. doi: 10.1155/2013/540589 (Epub ahead of print).
  • Nayak C, Acharya SK, Swain RK. Performance of a twin cylinder dual-fuel diesel engine using blends of neat Karanja oil and producer gas. Int J Ambient Energ. 2014. doi: 10.1080/01430750.2013.874370 (Epub ahead of print).
  • Sathiamurthi P. Design and development of waste heat recovery system for air conditioning. Unit Eur J Sci Res. 2011;54:102–110.
  • Rakopoulos CD, Giakoumis EG. Second law analyses applied to internal combustion engine operation. Prog Energ Combust Sci. 2006;32(1):2–47.
  • Rath MK, Acharya SK, Roy S. Thermodynamic analysis of compression ignition engine using neat karanja oil under varying compression ratio. Int J Ambient Energ. 2014. doi: 10.1080/01430750.2014.897646 (Epub ahead of print).
  • Banapurmath NR, Tewari PG, Yaliwal VS. et al. Combustion characteristics of a 4-stroke CI engine operated on Honge oil, Neem oil and Rice Bran oils when directly injected and dual fueled with producer gas induction. Renew Energ. 2009;34(7):1877–1884.
  • Ramadhas AS, Jayaraj S, Muraleedharan C. Power generation using coir-pith and wood derived producer gas in diesel engine. Fuel Process Technol. 2006;87(10):849–853.
  • Dincer I, Rosen MA. Thermodynamic aspects of renewable and sustainable development. Renew Sustain Energ Rev. 2005;9(2):169–189.
  • Jafarmadar S. Exergy analysis of hydrogen/diesel combustion in a dual fuel engine using three dimensional model. Int J Hydrogen Energ. 2014;39(2014):9505–9514.
  • Chintala V, Subramanian KA. Assessment of maximum available work of a hydrogen fuelled compression engine using exergy analysis. Energy. 2014;67(2014):162–175.
  • Cosat YJR, Lima AGD, Filho CRB, et al. Energetic and exergetic analysis of a dual-fueldiesel engine. Renew. Sustain Energ Rev. 2012;16(2012):4651–4660.
  • Sahoo BB, Saha UK, Sahoo N. Theoretical performance limits of a syngas-diesel fuelled compression ignition engine from second law analysis. Energy. 2011;36(2011):760–769.
  • Jadhao JS, Thombare DG. Review on exhaust gas heat recovery of I.C. engine. Int J Eng Innovative Technol. 2013;2(12):93–100.
  • Rath MK, Acharya SK, Patnaik PP, et al. Exergy and energy analysis of diesel engine using karanja methyl ester under varying compression ratio. Int J Eng. 2014;27(8):1259–1268.

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