SWS Academic Research eLibraryEarth & Planetary Sciences

Scholarly record

DISPERSION OF CARBON OXIDE IN CLOSED ENCLOSURES

Doru Cioclea, Emeric Chiuzan, Nicolae Ianc, Adrian Matei, Răzvan Drăgoescu

First published: 2022-11-15https://doi.org/10.5593/sgem2022/1.1/s03.029View metrics

Abstract

The carrying out of human activities of an industrial nature involves the use, handling or accidental presence of substances of a toxic nature such as carbon oxide. The presence of this gas in closed or semi-closed spaces can seriously affect the human body and when concentrations are high it can lead to death. Knowing how carbon oxide affects the human body and how it disperses into the air is very important for establishing preventive measures. Also, in order to establish the escape routes and the refuge areas, it is necessary to know the dispersion dynamics of carbon oxide both horizontally and vertically. The paper presents the experiment on establishing the dynamics dispersion of carbon oxide in a closed enclosure.

Publication Impact Profile

PlumX
  • Captures
  • Mendeley - Readers: 2

Publication details

Title
DISPERSION OF CARBON OXIDE IN CLOSED ENCLOSURES
Authors
Doru Cioclea, Emeric Chiuzan, Nicolae Ianc, Adrian Matei, Răzvan Drăgoescu
Proceedings
SGEM International Multidisciplinary Scientific GeoConference- EXPO Proceedings; 22nd SGEM International Multidisciplinary Scientific GeoConference Proceedings 2022, Science and Technologies in Geology, Exploration And Mining
Publisher
STEF92 Technology
Year
2022
Pages
257-264
SWS Citekey
Cioclea20223257264
ISSN
1314-2704
ISBN
978-619-7603-38-5
Language
en
Publication type
Conference Paper
Proceedings contents
Open official contents
Keywords
References14
  1. Bardina, J., Thirumalainambi, R., - Web-based toxic gas dispersion model for Shuttle launch operations, September 2004, Proceedings of SPIE - The International Society for Optical Engineering, DOI: 10.1117/12.544853

  2. Cioclea D., - Development of techniques and methods to prevent the formation of explosive and / or toxic atmospheres specific to industrial areas, INSEMEX Petro?ani Study - NUCLEU Project, 2020.

  3. Dejean, G., Iatcheva, E. e.a., - Pollution de l'air interieur de l'habitat, 2011, L.E.N. MEDICAL, ISBN : 978-2-914232-67-8, Imprime en France.

  4. El Harbawi, M., Mustapha,S., Choong, T.S.Y., Rashid, S.A., Kadir, S.A.S.A., Rashid Z.A., - Rapid analysis of risk assessment using developed simulation of chemical industrial accidents software package, Int. J. Environ. Sci. Tech., 5 (1), 53-64, Winter 2008, ISSN: 1735-1472. DOI: 10.1007/bf03325997

  5. Erard, A., - Modelisation de la dispersion atmospherique des gaz toxiques et de la gene a la visibilite generes par les fumees d�un incendie, SOCOTEC - Agence Environnement & Securite - Centre Val de Loire, AFFAIRE N : 1805-EL7P3-010 Date d�edition du rapport : 14/03/2019.

  6. Fisch, G., Iriart, P.G., Schuch, D.A., Milanez, V. C., - The use of an atmospheric model for study the gas dispersion at the brazilian space launching center, Proceedings of the 22nd ESA Symposium on European Rocket and Balloon Programmes and Related Research, Tromso, Norway, 7-12 June 2015 (ESA SP-730, September 2015) edited by L. Ouwehand. ESA Communications, ESTEC, Noordwijk, The Netherlands. ISBN 978-92-9221-294-0. ISSN 1609-042X., p.473-476.

  7. Goodfellow H., Tahti E., - Industrial ventilation design guidebook, Academic Press, San Diego, California, USA, 2001.

  8. Guillemaud, V., - Modelisation et simulation numerique des ecoulements diphasiques par une approche bifluide a deux pressions, Universite de Provence - AixMarseille I, Francais, These pour obtenir le grade de Docteur, 2007.

  9. Khan, F.I., Abbasi, S.A., - Assessment of risks posed by chemical industries - application of a new computer automated tool maxcred-III, Journal of Loss Prevention in the Process Industries 12 (1999) 455�469. DOI: 10.1016/s0950-4230(98)00064-3

  10. Lauret, P., - Modelisation de la dispersion atmospherique sur un site industriel par combinaison d�automates cellulaires et de reseaux de neurones, l�Ecole Nationale Superieure des Mines de Saint-Etienne, These pour obtenir le grade de Docteur, 2014.

  11. Lovreglio, R., Ronchi, E., Maragkos, G., Beji, T., Merci, B., - A dynamic approach for the impact of a toxic gas dispersion hazard considering human behaviour and dispersion modelling,Journal of Hazardous Materials � June 2016, DOI: 10.1016 /j.jhazmat. 2016.06.015

  12. Moussa, N. A., Devarakonda V. V., - Prediction of Toxic Emissions from Chemical Fire and Explosion, Fire safety science - proceedings of the eleventh international Symposium,2014, pp. 1457-1468. DOI: 10.3801/iafss.fss.11-1457

  13. Munier, L., - Simulations experimentale et numerique des effets retardes d�une explosion en milieu clos et en presence de produits liquides, Universite de Provence � Aix Marseille I, Institut Universitaire des Systemes Thermiques Industriels, These pour obtenir le grade de Docteur, 2011.

  14. Pagnon,S., - Strategies de modelisation des consequences d�une dispersion atmospherique de gaz toxique ou inflammable en situation d�urgence au regard de l�incertitude sur les donnees d�entree, l�Ecole Nationale Superieure des Mines de Saint- Etienne, These pour obtenir le grade de Docteur, 2012.

View or Download full articleAccess options
Full paper accessChoose SWS login, librarian support, or instant article download.

SWS access login

Login as SWS Scientific Committee

Authors and approved SWS contributors will read and export their own linked papers after identity matching by SWS profile, email and SGEM GlobalID.

For librarian assistance: [email protected]

Purchase Instant Access

48-hour online accessComing soon
Online-only accessComing soon
Download the full article in PDF formatEUR 35
  • Article can be downloaded after successful payment.
  • Article may be used according to SWS library access terms.
  • Article cannot be redistributed.
Get full paper

Back to publication list