82
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Combustion Characteristics and Performance Evaluation of Modified Mesoscale Annular Combustor

&
Pages 1768-1789 | Received 07 Jul 2022, Accepted 12 Sep 2022, Published online: 18 Sep 2022

References

  • Fan, Y., Y. Suzuki, and N. Kasagi. 2009. Experimental study of micro-scale premixed flame in quartz channels. Proc. Combust. Inst 32 (2):3083. doi:10.1016/j.proci.2008.06.219.
  • Hosseini, S. E., E. Owens, J. Krohn, and J. Leylek. 2018. Experimental investigation into the effects of thermal recuperation on the combustion characteristics of a non-premixed meso-scale vortex combustor. Energies 11:3390. doi:10.3390/en11123390.
  • Jiang, L. Q., D. Q. Zhao, X. H. Wang, and W. B. Yang. 2009. Development of a self-thermal insulation miniature combustor. Energy Convers. Manag 50 (5):1308. doi:10.1016/j.enconman.2009.01.015.
  • Ju, Y., and K. Maruta. 2011. Microscale combustion: Technology development and fundamental research. Prog. Energy Combust. Sci 37 (6):669. doi:10.1016/j.pecs.2011.03.001.
  • Law, C. K. 2006. Combustion Physics, p. 45. Cambridge University Press.
  • Lewis, B., and G. Von Elbe. 1961. Combustion, flames and explosions of gases, p. 706. 2nd Edition ed. New York & London, Appendix C: Academic Press.
  • Lieuwen, T., M. Chang, and A. Amato. 2013. Stationary gas turbine combustion: Technology needs and policy considerations. Combust. Flame 160 (8):1311. doi:10.1016/j.combustflame.2013.05.001.
  • Li, Y.-H., H. Y. Li, D. Dunn-Rankin, and Y.-C. Chao. 2009. Enhancing thermal, electrical efficiencies of a miniature combustion-driven thermophotovoltaic system. Prog. Photovolt. Res. Appl 17 (7):502. doi:10.1002/pip.905.
  • Li, G., Y. Zheng, W. Guo, D. Zhu, and Y. Tang. 2020. Mesoscale combustor-powered thermoelectric generator: Experimental optimization and evaluation metric. Appl. Energy 272:115234. doi:10.1016/j.apenergy.2020.115234.
  • Marbach, T. L., V. Sadasivuni, and A. K. Agrawal. 2007. Investigation of a miniature combustor using porous media surface stabilized flame. Combust. Sci. Technol 171901 (9):1901–22. doi:10.1080/00102200701385034.
  • Mikami, M., Y. Maeda, K. Matsui, T. Seo, and L. Yuliati. 2013. Combustion of gaseous and liquid fuels in meso-scale tubes with wire mesh. Proc. Combust. Inst 34 (2):3387. doi:10.1016/j.proci.2012.05.064.
  • NIST-JANAF Thermochamical Tables, available from http://kinetics.nist.gov/janaf/, (accessed on 30 June, 2015)
  • Sakurai, T., S. Yuasa, Y. Ono, and T. Honda. 2013. Flame stability and emission characteristics of propane-fueled flat-flame miniature combustor for ultra-micro gas turbine. Combust. Flame 160 (11):2497. doi:10.1016/j.combustflame.2013.05.021.
  • Shantanu, M., R. V. Mahendra, and S. Karmaker. 2018. Experimental and numerical studies on heat recirculated high intensity meso-scale combustor for mini gas turbine applications. Energy Convers. Manag 176:324. doi:10.1016/j.enconman.2018.09.032.
  • ShimokuriD., T. Hara, and S. Ishizuka. 2014. Development of a portable power system with meso-scale vortex combustor and thermos-electric device. PowerMems 2014 J. Physics. Conference Series 557:012117. doi:10.1088/1742-6596/557/1/012117.
  • Suenaga, Y., M. Kitano, and H. Yanaoka. 2011a. Extinction of cylindrical diffusion flame. J. Therm. Sci. Technol 6 (3):323. doi:10.1299/jtst.6.323.
  • Suenaga, Y., M. Kitano, and H. Yanaoka. 2011b. Development of ultra-micro combustor using cylindrical flames. J. Therm. Sci. Technol 6 (3):406. doi:10.1299/jtst.6.406.
  • Suenaga, Y., H. Yanaoka, Y. Takeda, and M. Kikuchi. 2016. Combustion characteristics of an annular type meso-scale combustor. J. Therm. Sci. Technol JTST0024. 11 (2):JTST0024. doi:10.1299/jtst.2016jtst0024.
  • Wan, J., A. Fan, Y. Liu, H. Yao, W. Liu, X. Gou, and D. Zhao. 2015. Experimental investigation and numerical analysis on flame stabilization of CH4/air mixture in a mesoscale channel with wall cavities. Combust. Flame. Combust. Flame 162 (4):1035. doi:10.1016/j.combustflame.2014.09.024.
  • Wan, J., and H. Zhao. 2020. Blow-Off mechanism of a holder-stabilized laminar premixed flame in a preheated mesoscale combustor. Combust. Flame. Combust. Flame 220:358. doi:10.1016/j.combustflame.2020.07.012.
  • Yuasa, S., S. Shimotori, T. Honda, T. Sakurai, and S. Sogo. 2009. Consideration on burning at high space heating rates in ultra-micro combustors for UMGT. J. Combust. Soc. Jpn 51:142.

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.