A computationally rigorous approach to hybrid fire testing

Author:

Schulthess Patrick,Neuenschwander Martin,Mosalam Khalid M.,Knobloch Markus

Publisher

Elsevier BV

Subject

Computer Science Applications,Mechanical Engineering,General Materials Science,Modeling and Simulation,Civil and Structural Engineering

Reference77 articles.

1. PEER performance-based earthquake engineering methodology, Revisited;Günay;J Earthquake Eng,2013

2. Hosser, D., Ameler, J., Dorn, T., Gensel, B., Schlüter, H.-J. (1995) “Abschlußbericht zur 3. Phase des Forschungsvorhabens: Entwicklung einer 'Intelligenten Prüfmaschine' zur Untersuchung von Gesamttragwerken unter lokaler Brandbeanspruchung.” Deutsche Forschungsgemeinschaft, Ho 1982/2-3, Institut für Baustoffe, Massivbau und Brandschutz, Technische Universität Braunschweig, Brunswick, Germany (in German).

3. Modeling thermo-mechanical behavior of concrete-filled steel tube columns with solid steel core subjected to fire;Neuenschwander;Eng Struct,2017

4. Neuenschwander M, Knobloch M, Fontana M. Towards an engineering method for fire design of concrete-filled steel tube columns with solid steel core. Proceedings of the 8th International Conference on Composite Construction in Steel and Concrete (CVIII 2017), July 30 - August 2, Jackson, Wyoming, United States; 2017 [in press].

5. ISO Standard fire tests of concrete-filled steel tube columns with solid steel core;Neuenschwander;J Struct Eng,2016

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