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Browsing publications by Dr Bill Papapostolou

Newcastle AuthorsTitleYearFull text
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
Effects of fuel Lewis number on the minimum ignition energy and its transition for turbulent homogeneous fuel-air mixtures2023
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
Effects of spatial distribution of CO2 dilution on localised forced ignition of stoichiometric biogas-air mixtures2023
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
A numerical investigation of the effects of fuel composition on the minimum ignition energy for homogeneous biogas-air mixtures2021
Dr Bill Papapostolou
Gulcan Ozel Erol
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
A numerical investigation of the minimum ignition energy requirement for forced ignition of turbulent droplet-laden mixtures2021
Dr Charles Turquand d'Auzay
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
Effects of Biogas Composition on the Edge Flame Propagation in Igniting Turbulent Mixing Layers2021
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
Effects of the spatial distribution of CO2 dilution on localised forced ignition of stoichiometric CH4 - CO2 - air mixtures2021
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
Numerical investigation of the effects of spatial distribution of CO2 dilution on localised forced ignition of stoichiometric biogas-air mixtures2020
Dr Bill Papapostolou
Gulcan Ozel Erol
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
A numerical investigation of the behaviour of the minimum ignition energy for turbulent droplet-laden mixtures2019
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Gulcan Ozel Erol
Professor Nilanjan Chakraborty
Edge flame propagation statistics in igniting mono-disperse droplet-laden mixtures2019
Dr Charles Turquand d'Auzay
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
Effects of biogas composition on the edge flame propagation in igniting turbulent mixing layers2019
Dr Bill Papapostolou
Dr Charles Turquand d'Auzay
Professor Nilanjan Chakraborty
Effects of fuel composition on the minimum ignition energy and its transition for homogeneous biogas-air mixtures2019
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
Effects of reaction progress variable definition on the Flame Surface Density transport statistics and closure for different combustion regimes2019
Dr Charles Turquand d'Auzay
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
Effects of turbulence intensity and biogas composition on the localised forced ignition of turbulent mixing layers2019
Professor Nilanjan Chakraborty
Dr Bill Papapostolou
Evaluation of flame area based on detailed chemistry DNS of premixed turbulent hydrogen-air flames in different regimes of combustion2019
Dr Charles Turquand d'Auzay
Dr Bill Papapostolou
Professor Nilanjan Chakraborty
On the Minimum Ignition Energy and its transition in the localised forced ignition of turbulent homogeneous mixtures2019
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