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3D Nonlocal Damage Modeling for Steel Structures under Earthquake Loading
The increasing number of strong earthquakes requires models for estimating the resulting risks on the human built environment. Within this work, a model describing the material behavior of steel is presented in order to evaluate the condition of steel structures after seismic action. The main focus is on modeling material damage and damage evolution under cyclic loading. The overall damage state can be assessed via a global damage index. Selected examples show the damage evolution in mild structural steel under dynamic excitation and confirm that the proposed model is a powerful tool in order to estimate damage states caused by earthquakes.
3D Nonlocal Damage Modeling for Steel Structures under Earthquake Loading
The increasing number of strong earthquakes requires models for estimating the resulting risks on the human built environment. Within this work, a model describing the material behavior of steel is presented in order to evaluate the condition of steel structures after seismic action. The main focus is on modeling material damage and damage evolution under cyclic loading. The overall damage state can be assessed via a global damage index. Selected examples show the damage evolution in mild structural steel under dynamic excitation and confirm that the proposed model is a powerful tool in order to estimate damage states caused by earthquakes.
3D Nonlocal Damage Modeling for Steel Structures under Earthquake Loading
3D nichtlokale Schädigungsmodellierung für Stahlstrukturen unter Erdbebenbelastung
Velde, Jana (author) / Universitätsbibliothek Braunschweig (host institution) / Dinkler, D. (tutor)
2010
Bericht aus dem Institut für Statik, vol. 2010-110
Miscellaneous
Electronic Resource
English
DDC:
624
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