849 - 866 |
Low turbulence natural convection in an air cavity filled square cavity - Part I: the thermal and fluid flow fields Tian YS, Karayiannis TG |
867 - 884 |
Low turbulence natural convection in an air filled square cavity - Part II: the turbulence quantities Tian YS, Karayiannis TG |
885 - 899 |
Flow bifurcation and heat transfer in a spherical gap Luo WJ, Yang RJ |
901 - 919 |
Flow transition in a multilouvered fin array Tafti DK, Wang G, Lin W |
921 - 933 |
Heat transfer analysis of a diffusion flame leading edge near a cold, chemically inert surface Vance R, Wichman IS |
935 - 943 |
Ray effect mitigation in jet fire radiation modelling Cumber PS |
945 - 962 |
The effect of hydrodynamic conditions on heat transfer in a complex viscoplastic flow field Hammad KJ |
963 - 980 |
A computational study of transient plane front solidification of alloys in a Bridgman apparatus under microgravity conditions Timchenko V, Chen PYP, Leonardi E, Davis GD, Abbaschian R |
981 - 991 |
Radiative characteristics of fibers with a large size parameter Yamada J, Kurosaki Y |
993 - 1005 |
Temperature decay in two-phase turbulent flows Jaberi FA, Mashayek F |
1007 - 1023 |
Combined evaporating meniscus-driven convection and radiation in annular microchannels for electronics cooling application Tso CP, Mahulikar SP |
1025 - 1034 |
The effect of surfactants on interfacial mass transfer in binary liquid-liquid systems Agble D, Mendes-Tatsis MA |
1035 - 1050 |
The heating, by viscous dissipation, of liquids flowing across an enclosed rotating disc Ellwood CM, Korchinsky WJ |