A waypoint based approach to visibility in performance based fire safety design
Abstract: In performance-based fire safety design, ensuring safe egress, e.g. by visibility of safety signs, is a crucial safety goal. Compliance with the building requirements is often demonstrated by simulations of smoke spread. Numerical models like the Fire Dynamics Simulator generally compute visibility as a local quantity using the light extinction coefficient, without the consideration of the actual light path to a safety sign. Here, visibility maps are introduced, providing an approach for post-processing fire simulation data. They indicate safe areas along egress routes, with respect to visibility. At each location, the available visibility is calculated using Jin's law, as an integrated value of the extinction coefficient along the line of sight to the closest exit sign. The required visibility results from the distance between those points. Additional parameters like view angle or visual obstructions are considered. The presented method allows for temporal visibility assessment, e.g. in an ASET-RSET analysis.
- DIN Deutsches Institut für Normung. Din iso 3864-1: Graphische Symbole Sicherheitsfarben und Sicherheitszeichen Teil 1: Gestaltungsgrundlagen für Sicherheitszeichen und Sicherheitsmarkierungen (ISO 3864-1:2011), June 2012.
- The International Organization for Standardization. ISO 7010: Graphical symbols – Safety colours and safety signs – Registered safety signs, July 2020.
- Location optimization algorithm for emergency signs in public facilities and its application to a single-floor supermarket. Fire Safety Journal, 44(1):113–120, January 2009. ISSN 03797112. doi:10.1016/j.firesaf.2008.05.006.
- The influence of color and direction on the perceptual processing of standard evacuation signs and the effect of attention bias. Fire Safety Journal, 132:103638, September 2022. ISSN 03797112. doi:10.1016/j.firesaf.2022.103638.
- Tadahisa Jin. Visibility through fire smoke (i). Bulletin of Japan Association for Fire Science and Engineering, 19(2):1–8, 1970. doi:10.11196/kasai.19.2.1.
- Tadahisa Jin. Visibility through fire smoke (ii). Bulletin of Japan Association for Fire Science and Engineering, 21(1,1):17–23, 1971. ISSN 18835600. doi:10.11196/kasai.21.17.
- Tadahisa Jin. Visibility through fire smoke (iii). Bulletin of Japan Association for Fire Science and Engineering, 22(1,2):11–15, 1972. doi:10.11196/kasai.22.11.
- Evaluation of the Maximum Cognitive Distance Per Emergency Exit Sign Colour in a Smoke-Filled Environment Simulated Using a Translucent Eye Patch. Fire Technology, August 2023. ISSN 0015-2684, 1572-8099. doi:10.1007/s10694-023-01474-9.
- Ahmed Ahmed Ali Awadallah and Konrad Wilkens Flecknoe-Brown. (mis)use of visibility in fire safety engineering. In Book of Abstracts Nordic Fire & Safety Days, pages 32–33. RISE Research Institutes of Sweden AB, 2022. ISBN 978-91-89711-12-9. doi:10.23699/sgj7-kd69.
- Experimental Validation of the FDS Simulations of Smoke and Toxic Gas Concentrations. Technical report, VTT, 2007.
- Experimental and numerical evaluation of the influence of the soot yield on the visibility in smoke in CFD analysis. Fire Safety Journal, 91:389–398, 2017. ISSN 0379-7112. doi:10.1016/j.firesaf.2017.03.053.
- Visibility through inhomogeneous smoke using CFD. In Proceedings of the 10th International Fire Science and Engineering Conference. Interflam 2004., Edinburgh, 2004. ISBN 978-0954121631.
- FDSReader - A fast and easy-to-use Python reader for FDS data. Submitted to JOSS, The Journal of open source software, 2023.
- National Fire Protection Association and Society of Fire Protection Engineers, editors. SFPE Engineering Guide to Performance-Based Fire Protection. National Fire Protection Association; Society of Fire Protection Engineers, 2nd ed edition, 2007. ISBN 978-0877657897.
- European Union. Interpreatative Document Essential Requirements No 2 ’Safety in Case of Fire’. Official Journal of the European Communities, February 1994.
- National Fire Protection Association. NFPA 101 Life Safety Code, January 2021.
- Vereinigung Kantonaler Feuerversicherungen (VKF). Brandschutzrichtlinie: Nachweisverfahren im Brandschutz/ 27-15de, March 2017.
- Department of Building and Housing. New zealand building code part c1-6: Protection from fire, November 2023.
- Performance-based design. In Morgan J. Hurley, editor, SFPE Handbook of Fire Protection Engineering. Springer, New York, 2016. ISBN 9781493925643. doi:https://doi.org/10.1007/978-1-4939-2565-0.
- The International Organization for Standardization. ISO 13943:2017 - Fire safety - Vocabulary, 2017.
- The International Organization for Standardization. ISO 16732-1:2012 Fire safety engineering — Fire risk assessment — Part 1: General, February 2012a.
- The International Organization for Standardization. ISO 16733-1: Fire safety engineering — Selection of design fire scenarios and design fires — Part 1: Selection of design fire scenarios, September 2015.
- Variation in Results Due to User Effects in a Simulation with FDS. Fire Technology, 54(1):97–116, January 2018. ISSN 0015-2684, 1572-8099. doi:10.1007/s10694-017-0674-y.
- Tadahisa Jin. Visibility and human behavior in fire smoke. In Philip J DiNenno, editor, SFPE Handbook of Fire Protection Engineering. National Fire Protection Association, New York, third edition edition, 2002. ISBN 087765-451-4.
- Leonard Y. Cooper. A concept for estimating available safe egress time in fires. Fire Safety Journal, 5(2):135–144, 1983. ISSN 0379-7112. doi:10.1016/0379-7112(83)90006-1.
- A map representation of the ASET-RSET concept. Fire Safety Journal, 115:103154, 2020. ISSN 0379-7112. doi:10.1016/j.firesaf.2020.103154.
- David A Purser. Toxicity assessment of combustion products. In Philip J DiNenno, editor, SFPE Handbook of Fire Protection Engineering. National Fire Protection Association, New York, third edition edition, 2002. ISBN 087765-451-4.
- Tadahisa Jin. Studies on Human Behavior and Tenability in Fire Smoke. In FIRE SAFETY SCIENCE-PROCEEDINGS OF THE FIFTH INTERNATIONAL SYMPOSIUM, pages 3–21, Toranomon, Japan, 1997.
- David J. Rasbash. International Seminar on Automatic Fire Detection, Aachen, Germany, 1975.
- Deutsches Institut für Normung. DIN 18009-2:2016-09, Brandschutzingenieurwesen - Teil 2: Räumungssimulation und Personensicherheit, August 2022.
- Technisch-Wissenschaftlicher Beirat (TWB), Referat 4. Guideline Fire Protection Engineering, 4th revised and supplemented edition. Technical Report TB 04-01, Vereinigung zur Förderung des Deutschen Brandschutzes e.V. (vfdb), 2020.
- Kristian Börger. Fdsvismap - github repository, 2023. URL https://github.com/FireDynamics/fdsvismap.git.
- Glenn P Forney. Smokeview, A Tool for Visualizing Fire Dynamics Simulation Data Volume I: User’s Guide. Technical Report SP 1017-1, National Institute of Standards and Technology, Gaithersburg, MD, April 2023.
- Array programming with NumPy. Nature, 585(7825):357–362, September 2020. doi:10.1038/s41586-020-2649-2.
- M. Pierre Bouguer and William Edgar Knowles Middleton. Optical Treatise on the Gradation of Light. Translated, with Introduction and Notes, by WE Knowles Middleton. University of Toronto Press, 1961.
- J. E. Bresenham. Algorithm for computer control of a digital plotter. IBM Systems Journal, 4(1):25–30, 1965. ISSN 0018-8670. doi:10.1147/sj.41.0025.
- Wu Xiaolin. An efficient antialiasing technique. Computer Graphics, 1991.
- Specific extinction coefficient of flame generated smoke. Fire and Materials, 24(5):227–230, 2000. doi:10.1002/1099-1018(200009/10)24:5<227::aid-fam742>3.0.co;2-9.
- Verein Deutscher Ingenieure. VDI 6019 – Part 1 – Engineering methods for the dimensioning of systems for the removal of smoke from buildings, May 2006.
- Verein Deutscher Ingenieure. VDI 6019 – Part 2 – Engineering methods for the dimensioning of systems for the removal of smoke from buildings, July 2009.
- Combustion characteristics of materials and generation of fire products. In Morgan J. Hurley, editor, SFPE Handbook of Fire Protection Engineering. Springer, New York, 2016. ISBN 9781493925643. doi:https://doi.org/10.1007/978-1-4939-2565-0.
- The International Organization for Standardization. ISO 13571:2012 - Life-threatening components of fire - Guidelines for the estimation of time to compromised tenability in fires, September 2012b.
- How can we ensure visibility and diversity in research contributions? how the contributor role taxonomy (credit) is helping the shift from authorship to contributorship. Learned Publishing, 32(1):71–74, 2019. doi:https://doi.org/10.1002/leap.1210.
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.