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Vol. 1

International Journal of Energy Technology and Policy

2008 Vol. 6 No. 1/2

Special Issue on Computational Fluid Dynamics Simulations in Energy Technologies and Processes

Guest Editor: Professor Viorel Badescu


PagesTitle and authors
5-16NOx re-burn simulation in a double-jet counter-flow flame
Dragos Isvoranu
DOI: 10.1504/IJETP.2008.017026

17-30Vortex structure and heat transfer in a diffusion combustion field with circulating flow
Hideo Kawahara, Tatsuo Nishimura
DOI: 10.1504/IJETP.2008.017027

31-46Reynolds Averaged Navier-Stokes-based numerical simulation of external heat convection and losses for transitional subsonic flows through a 2D turbine passage
Dorin Stanciu, Mircea Marinescu
DOI: 10.1504/IJETP.2008.017028

47-63Numerical simulation of a large power steam turbine run-up
Gabriel P. Negreanu
DOI: 10.1504/IJETP.2008.017029

64-95The computation of the entropy generation rate for turbomachinery design applications: some theoretical remarks and practical examples
Carmine Luca Iandoli, Enrico Sciubba, Nicola Zeoli
DOI: 10.1504/IJETP.2008.017030

96-111Computational study of a diagonal channel Magnetohydrodynamic power generation
Triwahju Hardianto, Nobuomi Sakamoto, Nobuhiro Harada
DOI: 10.1504/IJETP.2008.017031

112-123A Finite Element Method analysis and optimisation of a polymer electrolyte membrane fuel cell with interdigitated flow field design
A.M. Morega, J.C. Ordonez, S. Kosaraju, J.V.C. Vargas
DOI: 10.1504/IJETP.2008.017032

124-142Technology of Computational Fluid Dynamics in space engines and solar-gravity draught power plants
Radu Dan Rugescu
DOI: 10.1504/IJETP.2008.017033

143-158Numerical simulation of fluid flow and heat transfer in a phase change thermal energy storage
T. Kousksou, J-P. Bedecarrats, F. Strub, J. Castaing-Lasvignottes
DOI: 10.1504/IJETP.2008.017034

159-177Application of Computational Fluid Dynamics to flow next to high-rise buildings in Hong Kong due to air-conditioner heat rejection
M. Bojic, S. Savic, D. Nikolic
DOI: 10.1504/IJETP.2008.017035

178-189Thermal energy flow modelling in a typical university classroom
Kaveh Sookhak Lari
DOI: 10.1504/IJETP.2008.017046