1 |
Large-scale experiment of a novel non-domestic building using BPSC systems for energy saving Paya-Marin MA, Roy K, Chen JF, Masood R, Lawson RM, Sen Gupta B, Lim JBP Renewable Energy, 152, 799, 2020 |
2 |
Ignition of promising coal-water slurry containing petrochemicals: Analysis of key aspects Glushkov DO, Syrodoy SV, Zhakharevich AV, Strizhak PA Fuel Processing Technology, 148, 224, 2016 |
3 |
Reducing temperature stratification using heated air recirculation for thermal energy saving Rahimi M, Tajbakhsh K Energy and Buildings, 43(10), 2656, 2011 |
4 |
Saving fuel consumption and reducing pollution emissions for industrial furnace Lee CL, Jou CJG Fuel Processing Technology, 92(12), 2335, 2011 |
5 |
Bifurcations and structure of surface interacting methane-air diffusion flames Gummalla M, Vlachos DG, Delichatsios MA Combustion and Flame, 120(3), 333, 2000 |
6 |
On the local stability of multiple solutions and oscillatory dynamics of spatially distributed flames Bui PA, Vlachos DG, Westmoreland PR Combustion and Flame, 117(1-2), 307, 1999 |
7 |
An algorithm for the construction of global reduced mechanisms with CSP data Massias A, Diamantis D, Mastorakos E, Goussis DA Combustion and Flame, 117(4), 685, 1999 |
8 |
Ignition of ethane, propane, and butane in counterflow jets of cold fuel versus hot air under variable pressures Fotache CG, Wang H, Law CK Combustion and Flame, 117(4), 777, 1999 |
9 |
Effects of NO on the ignition of hydrogen and hydrocarbons by seated counterflowing air Tan Y, Fotache CG, Law CK Combustion and Flame, 119(3), 346, 1999 |
10 |
Mild oxidation regimes and multiple criticality in nonpremixed hydrogen-air counterflow Fotache CG, Sung CJ, Sun CJ, Law CK Combustion and Flame, 112(3), 457, 1998 |