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Tunnel Fire Dynamics electronic resource by Haukur Ingason, Ying Zhen Li, Anders Lönnermark.

By: Ingason, Haukur [author.]Contributor(s): Li, Ying Zhen [author.] | Lönnermark, Anders [author.] | SpringerLink (Online service)Material type: TextTextPublication details: New York, NY : Springer New York : Imprint: Springer, 2015Description: XV, 504 p. 132 illus., 21 illus. in color. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9781493921997Subject(s): engineering | Structural Mechanics | Quality control | Reliability | Industrial safety | Civil engineering | Engineering | Civil Engineering | Quality Control, Reliability, Safety and Risk | Structural MechanicsDDC classification: 624 LOC classification: TA1-2040Online resources: Click here to access online
Contents:
Introduction -- Fuel and ventilation controlled fires -- Tunnel fire tests -- Heat release rates in tunnels -- Fire growth rates in tunnels -- Design fire curves -- Combustion products from fires -- Gas temperatures -- Flame length -- Heat flux and thermal resistance -- Fire spread -- Smoke stratification -- Tunnel fire ventilation -- Visibility -- Tenability -- Fire suppression and detection in tunnels -- CFD modeling of tunnel fires -- Scaling technique.
In: Springer eBooksSummary: This book covers a wide range of issues in fire safety engineering in tunnels, describes the phenomena related to tunnel fire dynamics, presents state-of-the-art research, and gives detailed solutions to these major issues. Examples for calculations are provided. The aim is to significantly improve the understanding of fire safety engineering in tunnels. Chapters on fuel and ventilation control, combustion products, gas temperatures, heat fluxes, smoke stratification, visibility, tenability, design fire curves, heat release, fire suppression and detection, CFD modeling, and scaling techniques all equip readers to create their own fire safety plans for tunnels. This book should be purchased by any engineer or public official with responsibility for tunnels. It would also be of interest to many fire protection engineers as an application of evolving technical principles of fire safety.
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Introduction -- Fuel and ventilation controlled fires -- Tunnel fire tests -- Heat release rates in tunnels -- Fire growth rates in tunnels -- Design fire curves -- Combustion products from fires -- Gas temperatures -- Flame length -- Heat flux and thermal resistance -- Fire spread -- Smoke stratification -- Tunnel fire ventilation -- Visibility -- Tenability -- Fire suppression and detection in tunnels -- CFD modeling of tunnel fires -- Scaling technique.

This book covers a wide range of issues in fire safety engineering in tunnels, describes the phenomena related to tunnel fire dynamics, presents state-of-the-art research, and gives detailed solutions to these major issues. Examples for calculations are provided. The aim is to significantly improve the understanding of fire safety engineering in tunnels. Chapters on fuel and ventilation control, combustion products, gas temperatures, heat fluxes, smoke stratification, visibility, tenability, design fire curves, heat release, fire suppression and detection, CFD modeling, and scaling techniques all equip readers to create their own fire safety plans for tunnels. This book should be purchased by any engineer or public official with responsibility for tunnels. It would also be of interest to many fire protection engineers as an application of evolving technical principles of fire safety.

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