1 |
Direct numerical simulation of flow and heat transfer in a simplified pressurized thermal shock scenario Shams A, De Santis D, Rosa D, Kwiatkowski T, Komen EJM International Journal of Heat and Mass Transfer, 135, 517, 2019 |
2 |
Laminar natural convection heat transfer depending on diameters of vertical cylinders with circular cross-section with high Prandtl number Kang GU, Yook DS International Journal of Heat and Mass Transfer, 134, 554, 2019 |
3 |
Reynolds number dependence of particle resuspension in turbulent duct flows Zhao YL, Wang YZ, Yao J, Fairweather M Chemical Engineering Science, 187, 33, 2018 |
4 |
Simultaneous optimisation of residence time, heat and mass transfer in laminar duct flows Lester DR, Kuan B, Metcalfe G Chemical Engineering Science, 191, 511, 2018 |
5 |
Impact of duct flow resistance on residential heating and cooling energy use in systems with PSC and ECM blowers Yin P, Pate MB Energy and Buildings, 130, 625, 2016 |
6 |
Heat transfer enhancement using rectangular vortex promoters in confined quasi-two-dimensional magnetohydrodynamic flows Cassells OGW, Hussam WK, Sheard GJ International Journal of Heat and Mass Transfer, 93, 186, 2016 |
7 |
Entrance length effects on Graetz number scaling in laminar duct flows with periodic obstructions: Transport number correlations for spacer-filled membrane channel flows Rohlfs W, Lienhard VJH International Journal of Heat and Mass Transfer, 97, 842, 2016 |
8 |
Effect of collisions on the particle behavior in a turbulent square duct flow Zhang H, Trias FX, Gorobets A, Oliva A, Yang DM, Tan YG, Sheng Y Powder Technology, 269, 320, 2015 |
9 |
One-pass antibacterial efficacy of bipolar air ions against aerosolized Staphylococcus epidermidis in a duct flow Lee SG, Hyun J, Lee SH, Hwang J Journal of Aerosol Science, 69, 71, 2014 |
10 |
Heat transfer in a high Hartmann number MHD duct flow with a circular cylinder placed near the heated side-wall Hussam WK, Sheard GJ International Journal of Heat and Mass Transfer, 67, 944, 2013 |