id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-3288	Breitung, Wolfgang; Kotchourko, Alexei; Yanez, Jorge	Analysis Methodology for Hydrogen Accident Scenarios in Complex Industrial Environments	2016	6	.pdf	application/pdf	3018	113	40	To calculate the space and time dependent hydrogen distribution with a three-dimensional code the following input is needed: a) 3d geometry of the plant in the best possible resolution, b) mitigation measures installed in the building, e.g. ventilation, c) definition of the initiating event and accident scenario, d) definition of the gas DOI: 10.3303/CET1648003 Please cite this article as: Breitung W., Kotchourko A., Yanez J., 2016, Analysis methodology for hydrogen accident scenarios in complex industrial environments, Chemical Engineering Transactions, 48, 13-18 DOI:10.3303/CET1648003 13 Figure 1 Steps in the mechanistic analysis of accident scenarios with unintended release of hydrogen. Breitung W., Chan C., Dorofeev S., Eder A., Gelfand D., Heitsch M. Klein R., Malliakos A., Shepherd E., Studer E., Thibault P., 2000, State-of-the-art report on flame acceleration and deflagration-to-detonation transition in nuclear safety, OECD Report NEA/CSNI/R(2000)7 Dorofeev S.B., Sidorov V.P. Kuznetsov M.S., Matsukov I.D., Alekseev V.I., 2000, Effect of scale on the onset of detonations, Shock Waves 10 (2), 2000, 137-149 Dorofeev S.B., Kuznetsov M.S., Alekseev V.I., Efimenko A.A., Breitung W., 2001, Evaluation of limits for effective flame acceleration in hydrogen mixtures, Journal of Loss Prev. in the Process Industr., 14, pp.	cache/cet-3288.pdf	txt/cet-3288.txt
