Dual-fuel injection fundamentals: experimental – numerical analysis into a constant-volume vessel
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Elsevier BV
Reference27 articles.
1. Effect of nozzle orifice geometry on spray, combustion, and emission characteristics under diesel engine conditions;Som;Fuel,2011
2. Effects of primary breakup modeling on spray and combustion characteristics of compression ignition engines;Som;Combustion and Flame,2010
3. Effects of diesel fuel characteristics on spray and combustion in a diesel engine;Lee;JSAE Review, Volume,2002
4. Effects of multiple-injection strategies on overall spray behavior, combustion, and emissions reduction characteristics of biodiesel fuel;Han Park;Applied Energy,2011
5. Patterson, M. and Reitz, R., "Modeling the Effects of Fuel Spray Characteristics on Diesel Engine Combustion and Emission," SAE Technical Paper 980131, 1998, https://doi.org/10.4271/980131
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5. Dual-fuel combustion fundamentals: Experimental-numerical analysis into a constant-volume vessel;SECOND INTERNATIONAL CONFERENCE ON MATERIAL SCIENCE, SMART STRUCTURES AND APPLICATIONS: ICMSS-2019;2019
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