1 |
Thermal Performance of a Closed-Loop Pulsating Heat Pipe With Multiple Heat Sources Kammuang-Lue N, Sakulchangsatjatai P, Terdtoon P Heat Transfer Engineering, 35(13), 1161, 2014 |
2 |
Heat extraction from salinity-gradient solar ponds using heat pipe heat exchangers Tundee S, Terdtoon P, Sakulchangsatjatai P, Singh R, Akbarzadeh A Solar Energy, 84(9), 1706, 2010 |
3 |
Investigation of the Startup Condition of a Closed-Loop Oscillating Heat Pipe Soponpongpipat N, Sakulchangsatjaati P, Kammuang-Lue N, Terdtoon P Heat Transfer Engineering, 30(8), 626, 2009 |
4 |
Correlation to Predict the Maximum Heat Flux of a Vertical Closed-Loop Pulsating Heat Pipe Kammuang-Lue N, Sakulchangsatjatai P, Terdtoon P, Mook DJ Heat Transfer Engineering, 30(12), 961, 2009 |
5 |
Mathematical modeling of closed-end pulsating heat pipes operating with a bottom heat mode Sakulchangsatjatai P, Chareonsawan P, Waowaew T, Terdtoon P, Murakami M Heat Transfer Engineering, 29(3), 239, 2008 |
6 |
Heat-transfer characteristics of a closed-loop oscillating heat-pipe with check valves Rittidech S, Pipatpaiboon N, Terdtoon P Applied Energy, 84(5), 565, 2007 |
7 |
Corrosion of tubes used in thermosyphon heat exchanger for waste heat recovery system: A case of internal surface Terdtoon P, Charoensawan P, Chaitep S Heat Transfer Engineering, 22(4), 18, 2001 |
8 |
Internal flow patterns of an inclined, closed two-phase thermosyphon at critical state: Case study I, effect of aspect ratio Terdtoon P, Waowaew N, Tantakom P Experimental Heat Transfer, 12(4), 347, 1999 |
9 |
Internal flow patterns of an inclined closed two-phase thermosyphon at critical state: Case study II, effect of bond number Terdtoon P, Waowaew N, Tantakom P Experimental Heat Transfer, 12(4), 359, 1999 |
10 |
Effects of aspect ratios on internal flow patterns of an inclined closed two-phase thermosyphon at normal operating condition Terdtoon P, Chailungkar M, Shiraishi M Heat Transfer Engineering, 19(4), 75, 1998 |