1 |
Thermodynamic and transport properties of gases for use in solid oxide fuel cell modelling (vol 110, pg 186, 2002) Todd B, Young JB Journal of Power Sources, 320, 349, 2016 |
2 |
The deposition of small particles from a turbulent air flow in a curved duct Wu ZL, Young JB International Journal of Multiphase Flow, 44, 34, 2012 |
3 |
Calculation of Knudsen layers and jump conditions using the linearised G13 and R13 moment methods Young JB International Journal of Heat and Mass Transfer, 54(13-14), 2902, 2011 |
4 |
An experimental and theoretical study of particle deposition due to thermophoresis and turbulence in an annular flow Healy DP, Young JB International Journal of Multiphase Flow, 36(11-12), 870, 2010 |
5 |
Modelling of multi-component gas flows in capillaries and porous solids Young JB, Todd B International Journal of Heat and Mass Transfer, 48(25-26), 5338, 2005 |
6 |
Numerical investigation of the air flow through a bundle of IP-SOFC modules Haberman BA, Young JB International Journal of Heat and Mass Transfer, 48(25-26), 5475, 2005 |
7 |
Three-dimensional simulation of chemically reacting gas flows in the porous support structure of an integrated-planar solid oxide fuel cell Haberman BA, Young JB International Journal of Heat and Mass Transfer, 47(17-18), 3617, 2004 |
8 |
Particle deposition from two-dimensional turbulent gas flows Slater SA, Leeming AD, Young JB International Journal of Multiphase Flow, 29(5), 721, 2003 |
9 |
Thermodynamic and transport properties of gases for use in solid oxide fuel cell modelling Todd B, Young JB Journal of Power Sources, 110(1), 186, 2002 |
10 |
The calculation of inertial particle transport in dilute gas-particle flows Slater SA, Young JB International Journal of Multiphase Flow, 27(1), 61, 2001 |