Warianty tytułu
Dyspersja metanu w zamkniętych obudowach
Języki publikacji
Abstrakty
The increase of the population also involve the increase of the consumption of raw materials. This requires the diversification and development of industrial processes in semi-enclosed or open spaces. The carrying out of human activities of an industrial nature involves the accidental use, handling or presence of explosive substances such as methane. The presence of this gas in closed or semi-closed spaces can generate explosion phenomena. The accumulation of methane in narrow spaces is well studied and known, but the dispersion and especially the dispersion dynamics of methane released from a source considered infinite is less known. Knowing how methane disperses into the air is very important for establishing preventive measures. The paper presents the experiment on the dynamics of methane dispersion in a closed enclosure.
Czasopismo
Rocznik
Tom
Strony
263--274
Opis fizyczny
Bibliogr. 18 poz., tab., wykr., zdj.
Twórcy
autor
- National Institute for Research and Development in Mine Safety and Protection to Explosion – INSEMEX , 32-34, G-ral Vasile Milea Street, Petroșani, Romania, doru.cioclea@insenmex.ro
autor
- National Institute for Research and Development in Mine Safety and Protection to Explosion – INSEMEX , 32-34, G-ral Vasile Milea Street, Petroșani, Romania, nicolae.ianc@insemex.ro
autor
- National Institute for Research and Development in Mine Safety and Protection to Explosion – INSEMEX , 32-34, G-ral Vasile Milea Street, Petroșani, Romania, cornel.boanta@insemex.ro
autor
- National Institute for Research and Development in Mine Safety and Protection to Explosion – INSEMEX , 32-34, G-ral Vasile Milea Street, Petroșani, Romania, adrian.matei@insemex.ro
autor
- National Institute for Research and Development in Mine Safety and Protection to Explosion – INSEMEX , 32-34, G-ral Vasile Milea Street, Petroșani, Romania, razvan.dragoescu@insemex.ro
Bibliografia
- 1. Abbasi, T., Abbasi S.A. - The boiling liquid expanding vapour explosion (BLEVE): Mechanism, consequence assessment, management, Journal of Hazardous Materials 141 (2007) 489–519.
- 2. Alghamdi, S. S. S. - Development of a vapor cloud explosion risk analysis tool using exceedance methodology, Office of Graduate Studies of Texas A&M University, A Thesis, 2011.
- 3. Burgess, D., Zabetakis, M. G. - Fire and explosion hazards associated with liquefied natural gas, United States Department of the Interior, Bureau of Mines, Report of Investigations 6099/1962.
- 4. Egeberg, T., Davidsen, T., Venkatraman, M.M., Nassiri, S. - Comparative study on gas dispersion, Report no. 101368/R1, Date 24 January 2012, Skandpower, Norway.
- 5. Ivings, M.J., Gant, S.E., Jagger, S.F., Lea, C.J., Stewart J.R., Webber, D.M., - Evaluating vapor dispersion models for safety analysis of LNG facilities, FPRF-2016-25, MSU/2016/27, Health & Safety Laboratory Buxton, Derbyshire, UK, 2016.
- 6. Ikealumba, W. C., Wu, H. - Modeling of Liquefied Natural Gas Release and Dispersion: Incorporating a Direct Computational Fluid Dynamics Simulation Method for LNG Spill and Pool Formation, Ind. Eng. Chem. Res. 2016, 55, 1778−1787, DOI: 10.1021/acs.iecr.5b04490.
- 7. Mishraa, K.B., Wehrstedta, K.D., Krebsb, H. - Boiling Liquid Expanding Vapour Explosion (BLEVE) of peroxy-fuels: Experiments and Computational Fluid Dynamics (CFD) simulation, The 12th International Conference on Combustion & Energy Utilisation – 12ICCEU, Energy Procedia 66 ( 2015 ) 149 – 152.
- 8. Mokhatab, S., Poe, W.A., Speight, J.G. - Handbook of natural gas transmission and processing, 2006, Elsevier Inc., Library of Congress Cataloging-in-Publication Data, British Library Cataloguing-inPublication Data, ISBN 13: 978–0–7506–7776–9, ISBN 10: 0–7506–7776–7
- 9. Nolan, D. P. - Handbook of fire and explosion protection engineering principles for oil, gas, chemical, and related facilities, Library of Congress Catalog Card Number 96-10908,ISBN:0-8155-1394-1, Printed in the United States of America by Noyes Publications, 1996.
- 10. Veyssilier, F., Pecoult, C. - Guide de Bonnes Pratiques pour la réalisation de modélisations 3D pour des scénarios de dispersion atmosphérique en situation accidentelle. INERIS, Rapport de synthèse des travaux du Groupe de Travail National, Ref : DRA-15-148997-06852A. 2015.
- 11. Vianello, C., Maschio, G. - Risk Analysis of Natural Gas Pipeline: Case Study of a Generic Pipeline, Chemical Engineering Transactions Volume 24, 2011, ISBN 978-88-95608-15-0,ISSN1974-9791,DOI: 10.3303/CET 1124219.
- 12. Cavaropol D. V. - Elements of gas dynamics LPG and LNG installations, Ministry of Interior and Administrative Reform Publishing House, Bucharest, 2008, ISBN 978-973-745-057-9.
- 13. Cormier, B. R. - Computational fluid dynamics for lng vapor dispersion modeling: a key parameters study, Office of Graduate Studies of Texas A&M University in partial fulfillment of the requirements for the degree of DOCTOR OF PHILOSOPHY, 2008.
- 14. Ghatauray, T.S., Ingram, J.M., Holborn, P.G. - An experimental and CFD study into the dispersion of buoyant gas using passive venting in a small fuel cell enclosure. Journal Institution of Chemical Engineers Symposium Series, Publisher London South Bank University, Journal citation 2016-J (161), ISSN 0307-0492.
- 15. Quillatre, M. P. - Simulation aux grandes echelles d'explosions endomaine semi-confine,l'Université de Toulouse, Thèse pour obtenir le grade de Docteur, 2014.
- 16. Stawczyk, J. - Experimental evaluation of LPG tank explosion hazards, Journal of Hazardous Materials B96 (2003) 189–200.
- 17. Touahar, B. - Modelisation et simulation numerique pour la dispersion atmospherique de polluant application des logiciels: ALOHA, PHAST, Republique Algerienne Democratique et Populaire, Ministere de l’Enseignement Superieur et de la Recherche Scientifique, Universite Hadj Lakhdar – Batna, Institut d’Hygiene et Securite Industrielle, Memoire présenté pour l'obtention du diplôme de Magister, 2013
- 18. Wu, Y., Yu, E., Xu Y. - Simulation and analysis of indoor gas leakage, Proceedings: Building Simulation, 2007, pag. 1267-1271.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-75eab1be-b681-4c28-a625-133e39ef9f34