Experimental and computational investigation of the laminar burning velocity of hydrogen-enriched biogas

Author:

Kumar Yadav Vinod,Ray AnjanORCID,Ravi M.R.

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference57 articles.

1. World Energy Council UK. World Energy Scenarios 2016, http://www.worldenergy.org/wp-content/uploads/2016/10/World-Energy-Scenarios-2016. Full-Report.pdf; 2017 [Accessed 30 September 2017].

2. United Nations Framework Convention on Climate Change, Conference of the Parties, Twenty-first session Paris, 30 November - 11 December 2015, FCCC/CP/2015/L.9, https://assets.documentcloud.org/documents/2646262/Final-Paris-climate-agreement.pdf [Accessed 28 October 2017].

3. Nylund, Nils-Olof, Aako-Saksa Paivi, Sipila, Kai. Status and outlook for biofuels, other alternative fuels and new vehicles. Espoo 2008. VTT Tiedotteita-Research Notes 2426. http://www.vtt.fi/inf/pdf/tiedotteet/2008/T2426.pdf [Accessed 15 June 2016].

4. Effect of compression ratio on the performance and combustion of a biogas fuelled spark ignition engine;Porpatham;Fuel,2012

5. Measurement of adiabatic burning velocity in natural gas like mixtures;Kishore;Exp. Therm Fluid Sci.,2008

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