id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-6902		cet-6902		6	.pdf	application/pdf	2430	71	34	References Barton J., 2002, Dust explosion prevention and protection a practical guide, Institution of Chemical Engineers Bernard L., Brodie F., Ludwig D., Ness A., Weidner K., 1998, Vent access restriction for solids handling systems, Process Safety Progress, 17, 16-19 Crowhurst D., Colwell S.A., Hoare D.P., 1995, The external explosion characteristics of vented dust explosions, IChemE Symposium Series No 139, 79-96 Crowhurst D., Colwell S.A., 1995, Development of validated predictive methods so that the response of buildings and structures subjected to the effects arising from vented dust explosions can be, Dust Explosions, Protecting People, Equipment, Buildings and Environment, British Materials Handling Board, 355-396 Eckhoff, 2003, Dust explosions in the process industries, 3rd edition EN 16009, 2011, Flameless explosion venting devices Forcier T., Zalosh R., 2000, External pressures generated by vented gas and dust explosions, Journal of Loss Prevention in the Process Industries, 13, 411-417 Going J.E., Chatrathi K., 2003, Efficiency of flameless venting devices, Process Safety Progress, 22, 33- 42 Grossel S.S., 2012, Design and operating practices for safe conveying of particulate solids, Journal of Loss Prevention in the Process Industries, In Press Holbrow P., Hawksworth S.J., Tyldesley A., 2000, Thermal radiation from vented dust explosions, Journal of Loss Prevention in the Process Industries, 13, 467-476 Holbrow P., 2006, Explosion protection using flameless venting: a review, Health and Safety Laboratory (HSL), Explosion Safety Unit, Report No. EC/05/50 Holbrow P., 2011, Dust explosion venting research, IChemE Symposium Series No 156, 583-587 Holbrow P., 2012, Dust explosion venting of small vessels and flameless venting, Process Safety and Environment Protection, In Press NFPA 68, 2007, Standard on explosion protection by deflagration venting Schumann S., Haas W., Schmittberger H., Rasogi A.K., Fogt H., Friehmelt V., 1995, Measurement of pressure blast effects and fireball sizes from vented dust explosions: simulated experiments/large test cell, Dust Explosions, Protecting People, Equipment, Buildings and Environment, British Materials Handling Board, 244-291 Snoeys J., 2008, Dust explosion protection using flameless venting, Fike technical note Snoeys J., Going J.E., 2010, Flame arresting devices for dust explosions, 8th ISHPMIE, Yokohama, Japan, Paper 87 Snoeys J., 2012, Meeting explosion safety requirements with flameless venting, Powder and Bulk Engineering Taveau J., 2010, Correlations for blast effects from vented dust explosions, Journal of Loss Prevention in the Process Industries, 23, 15-29 Wirkner-Bott L., Schumann S., Stock M., 1992a, Flammen und Druckwirkung bei Explosionsdruckentlastung, VDI Berichte, 975 Wirkner-Bott L., Schumann S., Stock M., 1992b, Dust explosion venting: investigation of the secondary explosion, 7th International Symposium on Loss Prevention and Safety Promotion in the Process Industries, Taormina, Italy Wirkner-Bott L., Schumann S., Stock M., 1993, Dust explosion venting: secondary explosion for vessel volumes up to 250 m3, Europex NewsLetters, 22 Zalosh R., 2005, New developments in explosion protection technology, Fire and Emergency Services Asia, Singapore, 22-26 738 This detailed document specifies the requirements for flameless explosion venting devices, in terms of design, inspection, testing, marking, documentation and packaging.	cache/cet-6902.pdf	txt/cet-6902.txt
