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As the use of alternative fuels increases, it is increasingly important to understand the influence of chemical and physical properties on flame behavior. The objective of this paper is to explore the impact of adding O2 to the fuel side of opposed-flow diffusion flames, where the multicomponent fuel is delivered as liquid droplets of varying diameter. The approach is based on the computational simulation...
A computational model is developed to study flame–droplet interactions in non-premixed opposed-flow flames. Although the stagnation-flow configuration is idealized, the operating conditions are chosen to be relevant to practical combustion. By considering droplet thermophysical properties ranging from heptane to diesel fuel, the results provide quantitative insight about the expected behavior of synthetic...
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