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Markatos
Tolias, I. C., Venetsanos, A. G., Markatos, N. ., & Kiranoudis, C. T. (2017). CFD evaluation against a large scale unconfined hydrogen deflagration. International Journal of Hydrogen Energy, 42, 7731-7739. https://doi.org/10.1016/j.ijhydene.2016.07.052
Giannissi, S. G., Venetsanos, A. G., Markatos, N. ., & Bartzis, J. G. (2014). CFD modeling of hydrogen dispersion under cryogenic release conditions. International Journal of Hydrogen Energy, 39, 15851-15863. https://doi.org/10.1016/j.ijhydene.2014.07.042
Papanikolaou, E. A., Venetsanos, A. G., Heitsch, M. ., Baraldi, D. ., Huser, A. ., Pujol, J. ., … Markatos, N. . (2010). HySafe SBEP-V20: Numerical studies of release experiments inside a naturally ventilated residential garage. International Journal of Hydrogen Energy, 35, 4747-4757. https://doi.org/10.1016/j.ijhydene.2010.02.020
Giannissi, S. ., Venetsanos, A. ., Markatos, N. ., Willoughby, D. ., & Royle, M. . (2013). Simulation of Hydrogen Dispersion Under Cryogenic Release Conditions.
Tolias, I. ., Venetsanos, A. ., & Markatos, N. . (2013). Evaluation of the ADREA-HF CFD Code Against a Hydrogen Deflagration in a Tunnel.
Giannissi, S. ., Venetsanos, A. ., Bartzis, J. ., Markatos, N. ., Willoughby, D. ., & Royle, M. . (2011). CFD Modeling of LH2 Dispersion Using the ADREA-HF Code.
Papanikolaou, E. ., Venetsanos, A. ., Schiavetti, M. ., Marangon, A. ., Carcassi, M. ., & Markatos, N. . (2009). Consequence Assessment of the BBC Hydrogen Refueling Station, Using the ADREA-HF Code.
Papanikolaou, E. ., Venetsanos, A. ., Heitsch, M. ., Baraldi, D. ., Huser, A. ., Pujol, J. ., … Markatos, N. . (2009). HySafe SBEP-V20 - Numerical Predictions of Release Experiments Inside a Residential Garage with Passive Ventilation.
Papanikolaou, E. ., Venetsanos, A. ., Cerchiara, G. ., Carcassi, M. ., & Markatos, N. . (2009). CFD Simulations on Small Hydrogen Releases Inside a Ventilated Facility and Assessment of Ventilation Efficiency.
Tolias, I. ., Venetsanos, A. ., Markatos, N. ., & Kiranoudis, C. . (2015). CFD Evaluation Against a Large Scale Unconfined Hydrogen Deflagration.
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