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Original Articles

A Mathematical Model for Heavy Fuel Droplet Vaporization and Pyrolysis in a High Temperature Inert Gas

Pages 125-147 | Received 22 May 1990, Accepted 29 Jun 1992, Published online: 27 Apr 2007

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Hendrix Yulis Setyawan & Mingming Zhu. (2023) Cenosphere Formation and Combustion Characteristics of Single Droplets of Vacuum Residual Oils. Combustion Science and Technology 0:0, pages 1-18.
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Articles from other publishers (21)

Ping Yi, Yuzeng Wu, Cheng Meng, Jia Deng, Tie Li & Run Chen. (2024) An investigation on pyrolysis characteristics of low-sulfur heavy fuel oil spray under diesel engine-like conditions. Journal of the Energy Institute 114, pages 101590.
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Elia Colleoni, Paolo Guida, Vasilios G. Samaras, Alessio Frassoldati, Tiziano Faravelli & William L. Roberts. (2024) Chemical kinetics of SARA fractions pyrolysis: Resins. Journal of Analytical and Applied Pyrolysis 177, pages 106281.
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K. B. Larionov, K. V. Slyusarskiy, M. V. Kirgina, D. V. Gvozdyakov, I. A. Bogdanov, A. V. Zenkov, S. A. Yankovsky & V. E. Gubin. (2021) Liquid Hydrocarbons Production by the Steam Pyrolysis of Used Tires: Energy Characteristics and Environmental Sustainability. Waste and Biomass Valorization 13:4, pages 2233-2251.
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Paolo Guida, Eleonora Colombo, Elia Colleoni, Saumitra Saxena, Alessio Frassoldati, William L. Roberts & Tiziano Faravelli. (2021) Chemical Kinetics of Asphaltene Pyrolysis. Energy & Fuels 35:10, pages 8672-8684.
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Abdulrahman A. Khateeb, Ayman M. Elbaz, Paolo Guida & William L. Roberts. (2018) Influence of Asphaltene Concentration on the Combustion of a Heavy Fuel Oil Droplet. Energy & Fuels 32:12, pages 12981-12991.
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Asghar Azimi, Arash Arabkhalaj, Rasoul Shahsavan Markadeh & Hojat Ghassemi. (2018) Fully transient modeling of the heavy fuel oil droplets evaporation. Fuel 230, pages 52-63.
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Vikram Garaniya, Don McWilliam, Laurie Goldsworthy & Mohammadmahdi Ghiji. (2018) Extensive chemical characterization of a heavy fuel oil. Fuel 227, pages 67-78.
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J. Gómez, J.P. Mmbaga, R.E. Hayes, M. Toledo & F. Gracia. (2018) Modeling hydrogen production in a catalytic-inert packed bed reactor by rich combustion of heavy fuel oil. International Journal of Hydrogen Energy 43:5, pages 2677-2688.
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Kristian Hentelä, Ossi Kaario, Vikram Garaniya, Laurie Goldsworthy & Martti Larmi. A New Approach for Modeling Coke Particle Emissions from Large Diesel Engines Using Heavy Fuel Oil. A New Approach for Modeling Coke Particle Emissions from Large Diesel Engines Using Heavy Fuel Oil.
Ping Yi, Wuqiang Long, Liyan Feng, Weiyao Wang & Chao Liu. (2016) An experimental and numerical study of the evaporation and pyrolysis characteristics of lubricating oil droplets in the natural gas engine conditions. International Journal of Heat and Mass Transfer 103, pages 646-660.
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J. Gómez, J.P. Mmbaga, R.E. Hayes, M. Toledo & F. Gracia. (2016) Modelling hydrogen production by the rich combustion of heavy fuel oil. International Journal of Hydrogen Energy 41:40, pages 17933-17943.
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Miguel Angel Delgadillo, Pablo H. Ibargüengoytia & Uriel A. García. (2016) A technique to measure fuel oil viscosity in a fuel power plant. ISA Transactions 60, pages 303-311.
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J.B. Greenberg & E. Mastorakos. (2012) A Simple Model of Off-Stoichiometric Premixed Fuel Rich Spray Flames with Droplet Evaporation and Pyrolysis. International Journal of Spray and Combustion Dynamics 4:2, pages 97-122.
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Vikram Garaniya & Laurie Goldsworthy. (2012) Heavy Fuel Oil Combustion Modelling Using Continuous Thermodynamics. Marine Engineering 47:6, pages 871-877.
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Ragavendra P. Balegedde Ramachandran, Guus van Rossum, Wim P.M. van Swaaij & Sascha R.A. Kersten. (2009) Evaporation of biomass fast pyrolysis oil: Evaluation of char formation. Environmental Progress & Sustainable Energy 28:3, pages 410-417.
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L Goldsworthy. (2006) Computational Fluid Dynamics Modelling of Residual Fuel Oil Combustion in the Context of Marine Diesel Engines. International Journal of Engine Research 7:2, pages 181-199.
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Guangwen Xu, Masiki Ikegami, Senji Honma, Khoji Ikeda, Daniel L. Dietrich & Peter M. Struk. (2004) Sooting characteristics of isolated droplet burning in heated ambients under microgravity. International Journal of Heat and Mass Transfer 47:26, pages 5807-5821.
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M. Ikegami, G. Xu, K. Ikeda, S. Honma, H. Nagaishi, D.L. Dietrich & Y. Takeshita. (2003) Distinctive combustion stages of single heavy oil droplet under microgravity☆. Fuel 82:3, pages 293-304.
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Rene Ocampo-Barrera, Rafael Villasenor & Antonio Diego-Marin. (2001) An experimental study of the effect of water content on combustion of heavy fuel oil/water emulsion droplets. Combustion and Flame 126:4, pages 1845-1855.
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R. Villasenor & F. Garcia. (1999) An experimental study of the effects of asphaltenes on heavy fuel oil droplet combustion. Fuel 78:8, pages 933-944.
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Li Kai, Patrizio Massoli & Antonio D'Alessio. (2004) Some Far‐Field Scattering Characteristics of Radially Inhomogeneous Particles. Particle & Particle Systems Characterization 11:5, pages 385-390.
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