1 |
Meta-Model-Based Calibration and Sensitivity Studies of Computational Fluid Dynamics Simulation of Jet Pumps Kajero OT, Thorpe RB, Yao Y, Wong DSH, Chen T Chemical Engineering & Technology, 40(9), 1674, 2017 |
2 |
Scalar structure of turbulent stratified swirl flames conditioned on local equivalence ratio Kamal MM, Barlow RS, Hochgreb S Combustion and Flame, 166, 76, 2016 |
3 |
Cavitating flow in annular jet pumps Xiao L, Long X International Journal of Multiphase Flow, 71, 116, 2015 |
4 |
Numerical analysis of the Cambridge stratified flame series using artificial thickened flame LES with tabulated premixed flame chemistry Proch F, Kempf AM Combustion and Flame, 161(10), 2627, 2014 |
5 |
Multiply conditioned analyses of stratification in highly swirling methane/air flames Sweeney MS, Hochgreb S, Dunn MJ, Barlow RS Combustion and Flame, 160(2), 322, 2013 |
6 |
The structure of turbulent stratified and premixed methane/air flames I: Non-swirling flows Sweeney MS, Hochgreb S, Dunn MJ, Barlow RS Combustion and Flame, 159(9), 2896, 2012 |
7 |
The structure of turbulent stratified and premixed methane/air flames II: Swirling flows Sweeney MS, Hochgreb S, Dunn MJ, Barlow RS Combustion and Flame, 159(9), 2912, 2012 |
8 |
Flow structure, wall pressure and heat transfer characteristics of impinging annular jet with/without steady swirling Yang HQ, Kim T, Lu TJ, Ichimiya K International Journal of Heat and Mass Transfer, 53(19-20), 4092, 2010 |
9 |
A numerical study of an annular liquid jet in a compressible gas medium Siamas GA, Jiang X, Wrobel LC International Journal of Multiphase Flow, 34(4), 393, 2008 |
10 |
Annular impinging jet with recirculation zone expanded by acoustic excitation Travnicek Z, Tesar V International Journal of Heat and Mass Transfer, 47(10-11), 2329, 2004 |