3 - 14 |
Heat transfer bibliography - Japanese works 1999 Suzuki K, Nishio S |
15 - 22 |
A heat transfer model for deep penetration laser welding based on an actual keyhole Jin XZ, Li LJ, Zhang Y |
23 - 35 |
Effect of pressure, subcooling, and dissolved gas on pool boiling heat transfer from microporous, square pin-finned surfaces in FC-72 Rainey KN, You SM, Lee S |
37 - 43 |
Molecular dynamics calculation of heat dissipation during sliding friction Li B, Clapp PC, Rifkin JA, Zhang XM |
45 - 53 |
Molecular dynamics simulation of thermal and thermomechanical phenomena in picosecond laser material interaction Wang XW, Xu XF |
55 - 69 |
Study of heat transfer in multilayered structure within the framework of dual-phase-lag heat conduction model using lattice Boltzmann method Ho JR, Kuo CP, Jiaung WS |
71 - 75 |
Experimental investigations on heat transfer from suspension to impact separators in the riser column of a circulating fluidized bed combustor Winaya NS, Basu P, Reddy BV |
77 - 89 |
Coalescence collision of liquid drops Mashayek F, Ashgriz N, Minkowycz WJ, Shotorban B |
91 - 100 |
Laminar fluid flow and mass transfer in a standard field and laboratory emission cell Zhang LZ, Niu JL |
101 - 111 |
Shape design for a cylinder with uniform temperature distribution on the outer surface by inverse heat transfer method Cheng CH, Chang MH |
113 - 125 |
Heat transfer of a row of three butane/air flame jets impinging on a flat plate Dong LL, Leung CW, Cheung CS |
127 - 138 |
Three-dimensional numerical simulation of natural convection in an inclined liquid-filled enclosure with an array of discrete heaters Tou SKW, Zhang XF |
139 - 148 |
Boiling curve in temperature wave region Gabaraev BA, Kovalev SA, Molochnikov YS, Soloviev SL, Usatikov SV |
149 - 159 |
Size effect on microscale single-phase flow and heat transfer Guo ZY, Li ZX |
161 - 173 |
Predicting turbulence and heat transfer in 3-D curved ducts by near-wall second moment closures Suga K |
175 - 180 |
Heat transfer and pressure loss penalty for the number of tube rows of staggered finned-tube bundles with a single transverse row of winglets Kwak KM, Torii K, Nishino K |
181 - 183 |
On the treatment of open boundary condition for radiative transfer equation Liu LH, Ruan LM, Tan HP |
185 - 186 |
Comment on the paper by Qi-Hong Deng, Guang-Fa Tang, "Numerical visualization of mass and heat transport for conjugate natural convection/heat conduction by streamline and heatline" IJHMT 45 (11) (2002) 2373-2385 Costa VAF |
187 - 187 |
Reply to V.A.F. Costa's comment Deng QH |