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The Newcastle University research output collection, currently available on ePrints, will shortly be moving to a new open repository platform, Figshare. To prepare for the data migration we have paused adding new content to ePrints, and will resume once the new repository is launched. During this time you will continue to have access to ePrints (but no new content will appear). We will share updates here when available.

Browsing publications by Dr Khalil Abo-Amsha

Newcastle AuthorsTitleYearFull text
Sophie Lindley
Dr Hamid Kavari
Vishnu Mohan
Dr Khalil Abo-Amsha
Professor Nilanjan Chakraborty
The sensitivity of the choice of chemical mechanism for Direct Numerical Simulation based analysis of NH3/H2 premixed turbulent flames2025
Dr Khalil Abo-Amsha
Dr Hazem Awad
Professor Nilanjan Chakraborty
Flame Self-Interactions in MILD Combustion of Homogeneous and Inhomogeneous Mixtures2024
Dr Khalil Abo-Amsha
Dr Hazem Awad
Dr Umair Ahmed
Professor Nilanjan Chakraborty
On the Definition of Reaction Progress Variable in Exhaust Gas Recirculation Type Turbulent MILD Combustion of Methane and n-Heptane2024
Dr Hazem Awad
Dr Khalil Abo-Amsha
Dr Umair Ahmed
Professor Nilanjan Chakraborty
A Direct Numerical Simulation based comparison between conventional and MILD combustion processes of turbulent stratified mixtures2023
Dr Hazem Awad
Dr Khalil Abo-Amsha
Dr Umair Ahmed
Professor Nilanjan Chakraborty
A Direct Numerical Simulation based comparison between Homogenous and Inhomogeneous mixture MILD Combustion Modelling in the context of Reynolds Averaged Navier-Stokes Simulations2023
Dr Hazem Awad
Dr Khalil Abo-Amsha
Dr Umair Ahmed
Professor Nilanjan Chakraborty
A Priori Direct Numerical Simulation assessment of MILD combustion modelling in the context of Large Eddy Simulation2023
Dr Khalil Abo-Amsha
Dr Umair Ahmed
Professor Nilanjan Chakraborty
Flow topologies during Flame-Wall Interaction of premixed combustion in turbulent boundary layer2023
Dr Khalil Abo-Amsha
Professor Nilanjan Chakraborty
Kinetic study of the dominant chemical pathways to heat release in two reduced mechanisms for n-heptane combustion under MILD conditions2023