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Featured researches published by Thomas Steinhaus.


Fire Safety Science | 2008

Calculation methods for the heat release rate of materials of unknown composition

Hubert Biteau; Thomas Steinhaus; Christopher Schemel; Albert Simeoni; Guy Marlair; Nicolas Bal; Jose L. Torero

The Heat Release Rate (HRR) is a critical parameter to characterise a fire. Different methods have been developed to estimate it. The most widespread techniques are based on mass balance. If the heat of combustion of the fuel is known, the measure of the mass loss allows its evaluation. If the burning material can not be identified, calorimetric principles can be used. They rely on oxygen consumption (OC) or carbon dioxide and carbon monoxide generation (CDG) measurements. Their asset comes from the observation that the amount of energy release per unit mass of O2 consumed or per unit mass of CO2 produced is relatively constant for a large number of materials. Thus, an accurate HRR can be obtained without knowing the composition of the burning fuel. The aim of this work is to assess this last statement and define how essential the knowledge of the chemistry to calculate HRR for complex materials such as polymers including fire retardants and/or nanocomposites, energetic materials or pine needles is. This assessment ends in an OC and CDG calorimetry comparison of several materials in order to investigate the propensity to determine whether converging or diverging HRR results when average energy constants are used. Copyright


Experimental Thermal and Fluid Science | 2008

Characterisation of Dalmarnock Fire Test One

Cecilia Abecassis-Empis; Pedro Reszka; Thomas Steinhaus; Adam Cowlard; Hubert Biteau; Stephen Welch; Guillermo Rein; Jose L. Torero


Polymer Degradation and Stability | 2011

Determination of the flammability properties of polymeric materials: A novel method

R Carvel; Thomas Steinhaus; Guillermo Rein; Jose L. Torero


Combustion and Flame | 2012

A methodology for the estimation of ignition delay times in forest fire modelling

Pedro Reszka; P. Borowiec; Thomas Steinhaus; Jose L. Torero


Archive | 2002

Fire Safety in High-rise Buildings, Lessons Learned from the WTC

Jose L. Torero; James Q Quintiere; Thomas Steinhaus


Fire and Materials | 2005

Ignition performance of new and used motor vehicle upholstery fabrics

Michael Spearpoint; Stephen M. Olenick; Jose L. Torero; Thomas Steinhaus


Archive | 2007

Round-Robin study of fire modelling blind-predictions using the Dalmarnock fire experiments

Guillermo Rein; Cecilia Abecassis-Empis; A. Amundarain; Hubert Biteau; Adam Cowlard; A. Chan; Wolfram Jahn; Pedro Reszka; Thomas Steinhaus; Richard Carvel; Stephen Welch; Jose L. Torero; Jamie Stern-Gottfried; M. Lázaro; D. Alvear; J. A. Capote; C. Schemel


Archive | 2007

Experimental Layout and Description of the Building

Pedro Reszka; Cecilia Abecassis Empis; Hubert Biteau; Adam Cowlard; Thomas Steinhaus; Ian A Fletcher; A. Fuentes; Martin Gillie; Stephen Welch


Archive | 2008

A STUDY OF FIRE DURABILITY FOR A ROAD TUNNEL: COMPARING CFD AND SIMPLE ANALYTICAL MODELS

Pedro Reszka; Thomas Steinhaus; Hubert Biteau; R Carvel; Guillermo Rein; Jose L. Torero


Archive | 2007

Test Two: The ‘Controlled Fire’

Adam Cowlard; Thomas Steinhaus; Cecilia Abecassis Empis; Jose L. Torero

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Jose L. Torero

University of Queensland

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Adam Cowlard

University of Edinburgh

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Pedro Reszka

University of Edinburgh

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Pedro Reszka

University of Edinburgh

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R Carvel

University of Edinburgh

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