Evaluating a novel gasoline surrogate containing isopentane using a rapid compression machine and an engine
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference20 articles.
1. U.S. Department of Energy Co-Optimization of Fuels & Engines (Co-Optima) initiative athttps://www.energy.gov/eere/bioenergy/co-optimization-fuels-engines/
2. Mapping surrogate gasoline compositions into RON/MON space;Morgan;Combust. Flame,2010
3. A simple method to predict knock using toluene, N-Heptane and iso-octane blends (TPRF) as gasoline surrogates;Kalghatgi;SAE Int. J. Engines,2015
4. Methodology to define gasoline surrogates dedicated to auto-ignition in engines;Pera;Fuel,2012
5. Ignition delay times of ethanol-containing multi-component gasoline surrogates: Shock-tube experiments and detailed modeling;Cancino;Fuel,2011
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1. Influence of n ‐butanol and isomers on the combustion mechanisms of isooctane and coke formation based on ReaxFF simulation;The Canadian Journal of Chemical Engineering;2022-12-27
2. Effect of ethanol addition on the laminar burning velocities of gasoline surrogates;Fuel;2022-11
3. Knocking Cylinder Pressure Data Interpretation for Modern High-Performance Engines—A Computational Fluid Dynamics Informed Approach;SAE International Journal of Engines;2022-04-27
4. Application of Low-Cost Transducers for Indirect In-Cylinder Pressure Measurements;SAE International Journal of Engines;2022-04-25
5. Experimental and kinetic study on the pyrolysis and oxidation of isopentane in a jet-stirred reactor;Combustion and Flame;2022-01
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