Paul Medwell
www.adelaide.edu.au
0000-0002-2216-3033
7 papers found
Refreshing results…
Reconstructing temperature fields from OH distribution and soot volume fraction in turbulent flames using an artificial neural network
Soot evolution and flame response to acoustic forcing of laminar non-premixed jet flames at varying amplitudes
Influence of nozzle diameter on soot evolution in acoustically forced laminar non-premixed flames
A new correlation between soot sheet width and soot volume fraction in turbulent non-premixed jet flames
Experimental investigation of acoustic forcing on temperature, soot volume fraction and primary particle diameter in non-premixed laminar flames
Simultaneous measurements of gas temperature, soot volume fraction and primary particle diameter in a sooting lifted turbulent ethylene/air non-premixed flame
The effect of exit strain rate on soot volume fraction in turbulent non-premixed jet flames
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