Items where Kingston Author is "Heidari, Ali"

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Heidari, Ali and Wen, Jennifer (2014) Flame acceleration and transition from deflagration to detonation in hydrogen explosions. International Journal of Hydrogen Energy, 39(11), pp. 6184-6200. ISSN (print) 0360-3199

Wen, Jennifer , Heidari, Ali, Xu, Baopeng and Jie, Hongen (2013) Dispersion of carbon dioxide from vertical vent and horizontal releases - a numerical study. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 227(2), pp. 125-139.

Heidari, Ali, Xu, Baopeng, Jie, Hongen and Wen, Jennifer (2012) Numerical simulation of carbon dioxide dispersion from vertical vent release. In: Third International Forum on Transportation of CO2 by Pipeline; 20-21 June 2012, Newcastle, U.K..

Heidari, Ali (2012) Numerical simulation of deflagration to detonation transition in hydrogen explosion. (PhD thesis), Kingston University.

Heidari, A. and Wen, J.X. (2011) Flame acceleration and transition from deflagration to detonation in hydrogen explosions. In: 4th International Conference on Hydrogen Safety, ICHS; 12 - 14 Sept 2011, San Francisco, U.S.A..

Heidari, A. and Wen, J.X. (2011) Numerical simulations of large scale hemispherical and pancake cloud detonation. In: International Colloquium on the Dynamics of Explosions and Reactive Systems (ICDERS), University of California, Irvine; 24-29 July 2011, Irvine, U.S.A..

Heidari, A., Pereira, J., Wen, J., Tam, V., Ghasemnejad, H., Shariff, H., Donchev, T. and Johnson, M (2011) Towards understanding the Buncefield explosion through advanced numerical analysis and experimental investigations. In: Hazards XXII - process safety and environmental protection ; 11-14 Apr 2011, Liverpool, U.K..

Wen, J.X., Heidari, A., Ferraris, S. and Tam, V.H.Y. (2011) Numerical simulation of propane detonation in medium and large scale geometries. Journal of Loss Prevention in the Process Industries, 24(2), pp. 187-193. ISSN (print) 0950-4230

Heidari, A., Ferraris, S., Wen, J.X. and Tam, V.H.Y. (2011) Numerical simulation of large scale hydrogen detonation. International Journal of Hydrogen Energy, 36(3), pp. 2538-2544. ISSN (print) 0360-3199

Heidari, A., Ferraris, S., Wen, J.X. and Tam, V.H.Y. (2011) Numerical simulation of large scale hydrogen detonation. In: 3rd International Conference on Hydrogen Safety ; 16-18 Sept 2009, Ajaccio-Corsica, France.

Wen, Jennifer, Heidari, Ali, Ferraris, Sergio and Tam, Vincent (2011) Predicting flame acceleration using a coherent flame model. In: 22nd International Colloquium on the Dynamics of Explosions and Reactive Systems; 27-31 July 2009, Minsk, Belarus. (ICDERS 2011)

Wen, J.X., Heidari, A., Madhav Rao, V.C. , Ferraris, S.A. and Tam, V.H.Y. (2010) Simulating flame propagation in obstructed channels with OpenFOAM. In: 6th International Seminar on Fire and Explosion Hazards; 11-16 April 2010, Leeds, UK.

Rao, V.C.M., Heidari, A, Wen, J.X. and Tam, V.H.Y. (2009) Numerical study of large scale hydrogen explosions and detonation. In: Hazards XXI - Process safety and environmental protection in a changing world; 10-12 Nov 2009, Manchester, UK. ISBN 9780852955369

Heidari, Ali, Ferraris, Sergio, Wen, Jennifer and Tam, Vincent (2008) Flame acceleration around obstacles: numerical simulation with OPENFOAM. In: 41st Meeting United Kingdom Explosion Liaison Group ; 13 May 2008, Thornton, U.K.. (Unpublished)

Heidari, A. and Mazaheri, K. (2008) Determination of the equilibrium parameters of gaseous detonation using a genetic algorithm. Iranian Journal of Chemical Engineering, 5(3), pp. 3-13. ISSN (print) 1735-5397

Heidari, Ali and Mazaheri, Kiumars (2007) Determination of detonation equilibrium parameters using genetic algorithm. In: 15th Annual Conference (International) on Mechanical Engineering; 15 - 17 May 2007, Tehran, Iran.

Mazaheri, K. and Heidari, A. (2006) Determining the equilibrium composition of combustion products. In: 1th National Iranian Congress of Chemical Engineering; 28 - 30 Nov 2006, Tehran, Iran.

This list was generated on Sat Apr 19 13:45:38 2014 BST.