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Consequently, these calibrated micromechanics-based fracture criteria and associated simulating techniques can be used for collapse analysis of steel structures during extreme events.
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The incremental-iterative method for progressive collapse analysis adopted in the IACS-CSR design rules for oil tankers and bulk carriers was adopted as strength assessment model.
In structural modeling for progressive collapse analysis, the model accuracy has to be verified for both linear and nonlinear responses, when large deformations involving material and geometrical nonlinearities are expected.
A new adaptive superelement procedure for progressive collapse analysis of 2D reinforced concrete frames under column removal scenario is proposed.
For progressive collapse analysis, two types of steel moment frame buildings were considered; one designed for high-seismic load and the other designed for moderate-seismic load.
The results obtained show that the proposed damage assessment criteria are effective and reliable for progressive collapse analysis of RC frames.
In this study, a new modeling procedure for progressive collapse analysis of 2D reinforced concrete (RC) frames subject to single or multiple column removal scenario is proposed.
This paper presents a set of damage assessment criteria that can be easily implemented for progressive collapse analysis of reinforced concrete (RC) frames.
An Euler Bernoulli stress resultant beam finite element for static collapse analysis of planar reinforced concrete beams and frames is presented in detail.
This algorithm was utilized for progressive collapse analysis of two newly designed concentrically braced frames with different numbers and locations of braced bays in order to quantitatively determine its effect on mitigating progressive collapse.
Some application examples are shown, wherein comparisons of ISUM analysis predictions are made with numerical or experimental results for progressive collapse analysis of general types of steel plated structures and ship hulls, to illustrate the possible accuracy and versatility of the ISUM method.
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