Earthquakes and Structures
Volume 23, Number 6, 2022, pages 549-580
DOI: 10.12989/eas.2022.23.6.549
Nonlinear structural finite element model updating with a focus on model uncertainty
Mehrdad Ebrahimi, Reza Karami Mohammadi, Elnaz Nobahar and Ehsan Noroozinejad Farsangi
Abstract
This paper assesses the influences of modeling assumptions and uncertainties on the performance of the non-linear finite element (FE) model updating procedure and model clustering method. The results of a shaking table test on a four-story steel moment-resisting frame are employed for both calibrations and clustering of the FE models. In the first part, simple to detailed non-linear FE models of the test frame is calibrated to minimize the difference between the various data features of the models and the structure. To investigate the effect of the specified data feature, four of which include the acceleration, displacement, hysteretic energy, and instantaneous features of responses, have been considered. In the last part of the work, a
model-based clustering approach to group models of a four-story frame with similar behavior is introduced to detect abnormal ones. The approach is a composition of property derivation, outlier removal based on k-Nearest neighbors, and a K-means clustering approach using specified data features. The clustering results showed correlations among similar models. Moreover, it also helped to detect the best strategy for modeling different structural components.
Key Words
EDP; hysteretic models; kmeans clustering; modeling uncertainty; nonlinear finite element model updating; OpenSees; panel zone
Address
Mehrdad Ebrahimi, Reza Karami Mohammadi and Elnaz Nobahar: Department of Civil Engineering, K.N. Toosi University of Technology, Tehran, Iran
Ehsan Noroozinejad Farsangi: Faculty of Civil and Surveying Engineering, Graduate University of Advanced Technology, Kerman, Iran