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个人简介

Paul is a Senior Research Fellow in Explosions and Fire Research (EFR) with interests in modelling of fire and explosions, hydrogen gas safety, sprinkler/mist suppression systems and the statistical analysis of fire data. This expertise has been successfully applied to a large number of externally funded research contracts awarded to EFR over the last 19 years, including work for Brandforsk (the Swedish fire research board), Building Research Establishment (FRS), DETR, London Fire Brigade and Sellafield Ltd. Before joining LSBU, as a post-doctoral Research Fellow in 1995, he worked as a Research Assistant at UCL on a 3 year SERC/HSE funded project to predict flashover in building fires, where he was also registered for a part-time PhD entitled "The Nonlinear Dynamics of Flashover in Compartment Fires", which was awarded in 1994.

近期论文

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Holborn, P.G., Battersby, P., Ingram, J.M., Averill, A.F. & Nolan, P.F. (2013). Modelling the effect of water fog on the upper flammability limit of hydrogen–oxygen–nitrogen mixtures. International Journal of Hydrogen Energy. 38, 8/1/2014. DoI: 10.1016/j.ijhydene.2013.03.091. Holborn, P.G., Battersby, P., Ingram, J.M., Averill, A.F. & Nolan, P.F. (2012). Modelling the mitigation of lean hydrogen deflagrations in a vented cylindrical rig with water fog. International Journal of Hydrogen Energy. 37, 20, 15406 - 15422. DoI: 10.1016/j.ijhydene.2012.07.131. Holborn, P.G., Battersby, P., Ingram, J.M., Averill, A.F. & Nolan, P.F. (2013). Estimating the effect of water fog and nitrogen dilution upon the burning velocity of hydrogen deflagrations from experimental test data. International Journal of Hydrogen Energy. 38, 1/14/2014. DoI: 10.1016/j.ijhydene.2013.03.063. Holborn, P.G., Battersby, P., Ingram, J.M., Averill, A.F. & Nolan, P.F. (2013). Modelling the mitigation of hydrogen deflagrations in a vented cylindrical rig with water fog and nitrogen dilution. International Journal of Hydrogen Energy. 38, 8, 3471 - 3487. DoI: 10.1016/j.ijhydene.2012.12.134. Battersby, P.N., Holborn, P.G., Ingram, J.M., Averill, A.F. & Nolan, P.F. (2013). Modelling the mitigation of hydrogen deflagrations in a nuclear waste silo ullage by depleting the oxygen concentration with nitrogen. Nuclear Engineering and Design. 263, 97-101. DoI: 10.1016/j.nucengdes.2013.03.047. Battersby, P.N., Ingram, J.M., Averill, A.F., Holborn, P.G. & Nolan, P.F. (2013). Suppression of hydrogen/oxygen/nitrogen explosions by fine water mist containing sodium hydroxide additive. International Journal of Hydrogen Energy. 38, 19, 8002-8010. DoI: 10.1016/j.ijhydene.2013.04.048. Battersby, P.N., Averill, A.F., Ingram, J.M., Holborn, P.G. & Nolan, P.F. (2012). Suppression of hydrogen–oxygen–nitrogen explosions by fine water mist: Part 2. Mitigation of vented deflagrations. International Journal of Hydrogen Energy. 37, 24, 19258-19267. DoI: 10.1016/j.ijhydene.2012.10.029. Battersby, P.N., Ingram, J.M., Averill, A.F., Holborn, P.G. & Nolan, P.F. (2012). Suppression of hydrogen–oxygen–nitrogen explosions by fine water mist: Part 1. Burning velocity. International Journal of Hydrogen Energy. 37, 24, 19250-19257. DoI: 10.1016/j.ijhydene.2012.09.092.

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