A quantitative study on deposited fuel film and microscopic droplet characteristics of gasoline surrogate fuel and ethanol spray impingement
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Y. Pei | J. Qin | Zhijun Peng | Xiang Li | Chenxi Wang | Yi Liu
[1] Y. Pei,et al. Optimising microscopic spray characteristics and particle emissions in a dual-injection spark ignition (SI) engine by changing GDI injection pressure , 2022, International Journal of Engine Research.
[2] S. Szwaja,et al. Investigation on ethanol-glycerol blend combustion in the internal combustion sparkignited engine. Engine performance and exhaust emissions , 2022, Fuel Processing Technology.
[3] Hongming Xu,et al. Macroscopic spray characteristics of iso-octane, ethanol, gasoline and methanol from a multi-hole injector under flash boiling conditions , 2022, Fuel.
[4] Y. Pei,et al. Numerical investigation on implementing Oxy-Fuel Combustion (OFC) in an ethanol-gasoline Dual-Fuel Spark Ignition (DFSI) engine , 2021 .
[5] Haozhong Huang,et al. Study on the slagging tendency estimation of biomass fuel combustion with different additives and pretreatment processes , 2021, Energy.
[6] Zhengqing Chen,et al. The combustion and emission characteristics of diesel-ethanol blends with THF as cosolvents in a diesel engine operating with EGR , 2021 .
[7] Qi-li Zhu,et al. Current status and future prospective of bio-ethanol industry in China , 2021, Renewable and Sustainable Energy Reviews.
[8] C. Taatjes,et al. Influence of functional groups on low-temperature combustion chemistry of biofuels , 2021 .
[9] Qinsheng Bi,et al. Effects of gasoline and ethanol on inner flows and swallowtail-like spray behaviors of elliptical GDI injector , 2021, Fuel.
[10] Y. Pei,et al. Laser Induced Fluorescence Investigation on Deposited Fuel Film from Spray Impingement on Viscous Film over a Solid Wall , 2021 .
[11] G. Norris,et al. Carbon intensity of corn ethanol in the United States: state of the science , 2021, Environmental Research Letters.
[12] A. Agarwal,et al. Microscopic spray characteristics of ethanol and methanol blended gasoline in a direct injection spark ignition engine , 2021, International Journal of Engine Research.
[13] M. Wooldridge,et al. Breakup characteristics of high speed liquid jets from a single-hole injector , 2020 .
[14] I. Denbratt,et al. Experimental Assessment on Exploiting Low Carbon Ethanol Fuel in a Light-Duty Dual-Fuel Compression Ignition Engine , 2020, Applied Sciences.
[15] Kihyung Lee,et al. Experimental Study on the Spray Characteristics of Ethanol Gasoline Blended Fuel in a Direct Injection System , 2020 .
[16] D. Reuss,et al. Effect of engine conditions and injection timing on piston-top fuel films for stratified direct-injection spark-ignition operation using E30 , 2020, International Journal of Engine Research.
[17] M. Trujillo,et al. Spray-wall interactions in direct-injection engines: An introductory overview , 2020 .
[18] K. Nishida,et al. Evaporation characteristics of fuel adhesion on the wall after spray impingement under different conditions through RIM measurement system , 2019 .
[19] Sungwook Park,et al. Effects of fuel-injection systems on particle emission characteristics of gasoline vehicles , 2019, Atmospheric Environment.
[20] Y. Pei,et al. Investigation of the liquid fuel film from GDI spray impingement on a heated surface with the laser induced fluorescence technique , 2019, Fuel.
[21] F. Beyrau,et al. The effect of operating parameters on the formation of fuel wall films as a basis for the reduction of engine particulate emissions , 2019, Fuel.
[22] Hongming Xu,et al. Assessment of gasoline direct injector fouling effects on fuel injection, engine performance and emissions , 2018 .
[23] Haozhong Huang,et al. Improvement of emission characteristics and maximum pressure rise rate of diesel engines fueled with n-butanol/PODE3-4/diesel blends at high injection pressure , 2017 .
[24] Y. Pei,et al. Experimental investigation on free and impingement spray fueled with methanol, ethanol, isooctane, TRF and gasoline , 2017 .
[25] T. Kuo,et al. Experimental Investigation of Fuel Film Characteristics of Ethanol Impinging Spray at Ultra-Low Temperature , 2017 .
[26] F. Beyrau,et al. Systematic LIF fuel wall film investigation , 2016 .
[27] Haozhong Huang,et al. An experimental study on the combustion and emission characteristics of a diesel engine under low temperature combustion of diesel/gasoline/n-butanol blends , 2016 .
[28] Y. Hardalupas,et al. Novel method for the measurement of liquid film thickness during fuel spray impingement on surfaces. , 2016, Optics express.
[29] M. Wooldridge,et al. Spray Development and Wall Impingement of Ethanol and Gasoline in an Optical Direct Injection Spark Ignition Engine , 2015 .
[30] Stefan Will,et al. The effect of ethanol blending on mixture formation, combustion and soot emission studied in an optical DISI engine , 2015 .
[31] F. Beyrau,et al. Development of a sensitive experimental set-up for LIF fuel wall film measurements in a pressure vessel , 2015 .
[32] R. Brooks,et al. Internal combustion engine cold-start efficiency: A review of the problem, causes and potential solutions , 2014 .
[33] Sungwook Park,et al. Experimental study on spray break-up and atomization processes from GDI injector using high injection pressure up to 30MPa , 2014 .
[34] Carlo Beatrice,et al. Effect of Port Injected Ethanol on Combustion Characteristics in a Dual-Fuel Light Duty Diesel Engine , 2013 .
[35] P. Aleiferis,et al. An analysis of spray development with iso-octane, n-pentane, gasoline, ethanol and n-butanol from a multi-hole injector under hot fuel conditions , 2013 .
[36] Su Han Park,et al. Effect of Biodiesel-Ethanol Blended Fuel Spray Characteristics on the Reduction of Exhaust Emissions in a Common-Rail Diesel Engine , 2010 .
[37] Min Xu,et al. Characterization of Methanol and Ethanol Sprays from Different DI Injectors by Using Mie-scattering and Laser Induced Fluorescence at Potential Engine Cold-start Conditions , 2010 .
[38] Su Han Park,et al. Atomization and spray characteristics of bioethanol and bioethanol blended gasoline fuel injected through a direct injection gasoline injector , 2009 .
[39] I. Roisman. Inertia dominated drop collisions. II. An analytical solution of the Navier–Stokes equations for a spreading viscous film , 2009 .
[40] Miguel R. Oliveira Panão,et al. Experimental study of the flow regimes resulting from the impact of an intermittent gasoline spray , 2004 .
[41] Richard R. Steeper,et al. Piston Wetting in an Optical DISI Engine: Fuel Films, Pool Fires, and Soot Generation , 2001 .
[42] Seong Hyuk Lee,et al. Comparison of Spray/Wall Impingement Models with Experimental Data , 2000 .
[43] Ingemar Denbratt,et al. Modelling Gasoline Spray-wall Interaction -a Review of Current Models , 2000 .
[44] Xue Dong,et al. Spray impingement wall film breakup by wave entrainment , 2019, Proceedings of the Combustion Institute.
[45] An-Bang Wang,et al. On Some New Aspects of Splashing Impact of Drop-Liquid Surface Interactions , 2002 .
[46] A. D. Gosman,et al. MODELING OF GASOLINE SPRAY IMPINGEMENT , 2002 .
[47] Marco Marengo,et al. THE IMPACT OF DROPS ON WALLS AND FILMS , 1999 .
[48] M. Marengo,et al. The impact of a single drop on a wetted solid surface , 1997 .