1 |
Modeling hysteresis in the phase transition of industrial-grade solid/liquid PCM for thermal energy storages Barz T, Sommer A International Journal of Heat and Mass Transfer, 127, 701, 2018 |
2 |
Natural convection in high temperature flat plate latent heat thermal energy storage systems Vogel J, Felbinger J, Johnson M Applied Energy, 184, 184, 2016 |
3 |
Fluid flow and mixing in linear GTA welding of dissimilar ferrous alloys Bahrami A, Helenbrook BT, Valentine DT, Aidun DK International Journal of Heat and Mass Transfer, 93, 729, 2016 |
4 |
Nonlocal two-temperature model: Application to heat transport in metals irradiated by ultrashort laser pulses Sobolev SL International Journal of Heat and Mass Transfer, 94, 138, 2016 |
5 |
Fluid flow and heat transfer in PCM panels arranged vertically and horizontally for application in heating systems Prieto MM, Gonzalez B Renewable Energy, 97, 331, 2016 |
6 |
Fixed-grid numerical modeling of melting and solidification using variable thermo-physical properties - Application to the melting of n-Octadecane inside a spherical capsule Galione PA, Lehmkuhl O, Rigola J, Oliva A International Journal of Heat and Mass Transfer, 86, 721, 2015 |
7 |
Enhancement of latent heat energy storage using embedded heat pipes Robak CW, Bergman TL, Faghri A International Journal of Heat and Mass Transfer, 54(15-16), 3476, 2011 |
8 |
An enhanced thermal conduction model for the prediction of convection dominated solid-liquid phase change Vidalain G, Gosselin L, Lacroix M International Journal of Heat and Mass Transfer, 52(7-8), 1753, 2009 |
9 |
Effect of water-extraction on characteristics of melting and solidification of fly ash from municipal solid waste incinerator Jiang YH, Xi BD, Li XJ, Zhang L, Wei ZM Journal of Hazardous Materials, 161(2-3), 871, 2009 |
10 |
Thermal energy storage behavior of CaCl2 center dot 6H(2)O during melting and solidification Bilen K, Takgil F, Kaygusuz K Energy Sources Part A-recovery Utilization and Environmental Effects, 30(9), 775, 2008 |