69
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Combustion and performance characteristics of a diesel engine fueled with coal-based hybrid fuel at various altitudes

, , , , & ORCID Icon
Pages 256-267 | Received 07 Nov 2022, Accepted 05 Mar 2023, Published online: 28 Mar 2023

references

  • Assanis, D. N., R.B. Poola, R. Sekar, and G.R. Cataldi. 2001. Study of using oxygen-enriched combustion air for locomotive diesel engines. Journal of Engineering for Gas Turbines & Power 123 (1):157–66. doi:10.1115/1.1290590.
  • Ding, Y. H., H. Chen, D.F. Wang, W.G. Ma, J.F. Wang, D.P. Xu, and Y.G. Wang. 2010. Supercritical fluid extraction and fractionation of high-temperature coal tar. Journal of Fuel Chemistry and Technology 38 (2):140–43. doi:10.1016/S1872-5813(10)60027-8.
  • Dong, S. R., R. L. Liu, B. Luo, G. M. Zhou, C. C. Lin, and Y. C. Xiong. 2015. An Experimental Study of Enhancing the High Altitude Performance of Turbocharged Diesel Engine with Oxygen Enriched Device, 58–68. Automobile Technology.
  • Dong, S.R., L. Ren, Y.P. Liu, and R.L. Liu. 2019. Emission Characteristics and control technology of diesel engine at high altitude. In Journal of Military 21:41–46.
  • Dong, S. R., X. Xu, G.M. Zhou, R.L. Liu, Z.J. Zhang, and X.C. He. 2013. Present status and development of performance advancing technology of vehicle diesel engine at plateaus. Equipment Environmental Engineering 10 (02):67–70.
  • Elkelawy, M., H. Alm-Eldin Bastawissi, E. A. El Shenawy, M. Taha, H. Panchal, and K. K. Sadasivuni. 2021. Study of performance, combustion, and emissions parameters of DI-diesel engine fueled with algae biodiesel/diesel/n-pentane blends. Energy Conversion and Management 10:100058. doi:10.1016/j.ecmx.2020.100058.
  • Elkelawy, M., H. Alm-Eldin Bastawissi, K. K. Esmaeil, A. M. Radwan, H. Panchal, K. K. Sadasivuni, D. Ponnamma, and R. Walvekar. 2019. Experimental studies on the biodiesel production parameters optimization of sunflower and soybean oil mixture and DI engine combustion, performance, and emission analysis fueled with diesel/biodiesel blends. Fuel 255:115791. doi:10.1016/j.fuel.2019.115791.
  • Elkelawy, M., H.A.E. Bastawissi, K. K. Esmaeil, A. M. Radwan, H. Panchal, K. K. Sadasivuni, M. Suresh, and M. Israr. 2020. Maximization of biodiesel production from sunflower and soybean oils and prediction of diesel engine performance and emission characteristics through response surface methodology. Fuel 266:117072. doi:10.1016/j.fuel.2020.117072.
  • Gill, S. S., A. Tsolakis, K. D. Dearn, and J. Rodríguez-Fernández. 2011. Combustion characteristics and emissions of Fischer–Tropsch diesel fuels in IC engines. Progress in Energy and Combustion Science 37 (4):503–23. doi:10.1016/j.pecs.2010.09.001.
  • Gompel Van, P., and G. Koornneef. 2010. The climatic-altitude chamber as development and validation tool. SAE Technical Paper. 2010-01–1294.
  • Jiao, Y. F., R.L. Liu, S.R. Dong, G.M. Zhou, and Z.J. Zhang. 2020. Effects of injection parameters on Diesel Engine performance at different altitudes. Transactions of Csice 38 (3):9.
  • Jiao, Y., R.L. Liu, Z.J. Zhang, G.M. Zhou, S.R. Dong, and W.Q. Liu. 2019. Comparison of combustion and emission characteristics of a diesel engine fueled with diesel and methanol-Fischer-Tropsch diesel-biodiesel-diesel blends at various altitudes. Fuel 243 (MAY 1):52–59. doi:10.1016/j.fuel.2019.01.107.
  • Kook, S., and L. M Pickett. 2012. Soot volume fraction and morphology of conventional, fischer-tropsch, coal-derived, and surrogate fuel at diesel conditions. Sae International Journal of Fuels & Lubricants 5 (2):647–664.
  • Leckel, D. 2009. Diesel Production from FischerTropsch: The past, the present, and new concepts. Energy & Fuels 23 (3):2342–58. doi:10.1021/ef900064c.
  • Li, Z., J. Pan, W. Li, X. Wang, H. Wei, and J. Pan. 2022. New insights into abnormal combustion phenomena induced by diesel spray-wall impingement under engine-relevant conditions. Energies 15 (8):2941. doi:10.3390/en15082941.
  • Liu, R. 2013. Research on Plateau Environmental Adaptability of Diesel Engines. Beijing Institute of Technology: Research on Plateau Environmental Adaptability of Diesel Engines.
  • Liu, R., Z.J. Zhang, S.R. Dong, and G.M. Zhou. 2017. High-altitude matching characteristic of regulated two-stage turbocharger with diesel engine. Journal of Engineering for Gas Turbines & Power 139 (9):094501.094501–09. doi:10.1115/1.4036283.
  • Mcmillian, M. H., and M. Gautam. 2001. Combustion and emission characteristics of fischer-tropsch and standard diesel fuel in a single-cylinder diesel engine. SAE Transaction. 1659–1647.
  • Nayak, S. K., S. Nižetić, V. V. Pham, Z. Huang, A. I. Ölçer, V. G. Bui, K. Wattanavichien, and A. T. Hoang. 2022. Influence of injection timing on performance and combustion characteristics of compression ignition engine working on quaternary blends of diesel fuel, mixed biodiesel, and t-butyl peroxide. Journal of Cleaner Production 333:130160. doi:10.1016/j.jclepro.2021.130160.
  • Ramos, Á., R. García-Contreras, and O. Armas. 2016. Performance, combustion timing and emissions from a light duty vehicle at different altitudes fueled with animal fat biodiesel, GTL and diesel fuels. Applied Energy 182 (nov.15):507–17. doi:10.1016/j.apenergy.2016.08.159.
  • Sakanishi, K., S.S. Murti, O. Okuma, Y. Korai, and I. Mochida. 2002. Detailed characterization of heteroatom-containing molecules in light distillates derived from Tanito Harum coal and its hydrotreated oil. Fuel 81 (17): 2241–2248.
  • Sekhar, S. C., K. Karuppasamy, N. Vedaraman, A. E. Kabeel, R. Sathyamurthy, M. Elkelawy, and H. Alm ElDin Bastawissi. 2018. Biodiesel production process optimization from Pithecellobium dulce seed oil: Performance, combustion, and emission analysis on compression ignition engine fuelled with diesel/biodiesel blends. Energy Conversion and Management 161:141–54. doi:10.1016/j.enconman.2018.01.074.
  • Shannak, B., and M. J. F. I Alhasan. 2002. Effect of atmospheric altitude on engine performance. 67 (4):157–60. doi:10.1007/s10010-002-0087-y.
  • Singh, A., S. Sinha, A. K. Choudhary, H. Panchal, M. Elkelawy, and K. K. Sadasivuni. 2020. Optimization of performance and emission characteristics of CI engine fueled with Jatropha biodiesel produced using a heterogeneous catalyst (CaO). Fuel 280:118611. doi:10.1016/j.fuel.2020.118611.
  • Tang, D., N. Liu, J. Wang, C. Zhao, and F. Luo. 2020. Effect of load on combustion cyclic variation in CNG/Diesel Dual-Fuel Engine. International Journal of Energy for a Clean Environment 21 (1):25–39. doi:10.1615/InterJEnerCleanEnv.2020031254.
  • Vliet, O., A. C. Faajj, and W. C. Turkenburg. 2009. Fischer-Tropsch diesel production in a well-to-wheel perspective: A carbon, energy flow and cost analysis. Energy Conversion & Management 50 (4):858–876.
  • Wang, M., Y. Hu, J. Wang, L. Chang, and H. Wang. 2013. Transformation of sulfur during pyrolysis of inertinite-rich coals and correlation with their characteristics. Journal of Analytical and Applied Pyrolysis 104:585–92. doi:10.1016/j.jaap.2013.05.010.
  • Wang, X., J. Pan, W. Li, H. Wei, M. Pan, X. Wang, and H. Wu. 2020. Optical experiments on diesel knock for high altitude engines under spray impingement conditions. Fuel 278:118268. doi:10.1016/j.fuel.2020.118268.
  • Wang, X., H. Wei, J. Pan, Z. Hu, Z. Zheng, and M. Pan. 2020. Analysis of diesel knock for high-altitude heavy-duty engines using optical rapid compression machines. Energies 13 (12):3080. doi:10.3390/en13123080.
  • Wei, C., Z. Wang, H. Shui, S. Ren, and C. Pan. 2012. Synchronous fluorimetric characterization of heavy intermediates of coal direct liquefaction. Fuel 98:67–72.
  • Zhang, P. 2020. Correlation analysis of diesel engine cycle Variation and combustion parameters. Vehicle Engine 05:15–20.
  • Zong, Z. M., Z. -M. Zong, M. -J. Ding, L. Zhou, Y. -G. Huang, Y. -X. Zheng, X. Jin, Y. -M. Ma, and X. -Y. Wei. 2009. Separation and analysis of organic compounds in an Erdos coal. Fuel 88 (3):469–74. doi:10.1016/j.fuel.2008.09.010.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.