Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames

Marzie Shahini, S. Rasoul Mirghaderi

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Original languageEnglish
Title of host publicationProceedings of the 16th World Conference on Earthquake Engineering
PublisherInstitute of Theoretical and Applied Mechanics
Publication statusPublished - 2016
Event16th World Conference on Earthquake Engineering - Santiago, Chile
Duration: 9 Jan 201713 Jan 2017

Conference

Conference16th World Conference on Earthquake Engineering
CountryChile
CitySantiago
Period9/01/1713/01/17

Cite this

Shahini, M., & Mirghaderi, S. R. (2016). Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames. In Proceedings of the 16th World Conference on Earthquake Engineering Institute of Theoretical and Applied Mechanics.

Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames. / Shahini, Marzie; Mirghaderi, S. Rasoul .

Proceedings of the 16th World Conference on Earthquake Engineering. Institute of Theoretical and Applied Mechanics, 2016.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Shahini, M & Mirghaderi, SR 2016, Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames. in Proceedings of the 16th World Conference on Earthquake Engineering. Institute of Theoretical and Applied Mechanics, 16th World Conference on Earthquake Engineering, Santiago, Chile, 9/01/17.
Shahini M, Mirghaderi SR. Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames. In Proceedings of the 16th World Conference on Earthquake Engineering. Institute of Theoretical and Applied Mechanics. 2016
Shahini, Marzie ; Mirghaderi, S. Rasoul . / Analytical Study on Collapse-Resisting Capacity of Vertically Irregular Steel Moment Frames. Proceedings of the 16th World Conference on Earthquake Engineering. Institute of Theoretical and Applied Mechanics, 2016.
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