An explicit solution for the effect of earthquake incidence angles on seismic ductility demand of structures using Bouc-Wen model
Author:
Publisher
Elsevier BV
Subject
Soil Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering
Reference36 articles.
1. Critical orientation of earthquake loading for building performance assessment using lateral force analysis;Skoulidou;Bull Earthq Eng,2017
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3. The significance of considering multiple angles of seismic incidence for estimating engineering demand parameters;Skoulidou;Bull Earthq Eng,2020
4. The role of overstrength on the seismic performance of asymmetric-plan structures;Kaatsiz;Earthquake Eng. Struct. Dynam.,2019
5. Torsional ductility spectrum for predicting ductility distribution in simple asymmetric-plan structures;Sucuoglu;Earthq Eng Struct Dynam,2021
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1. Evaluation of Critical Input Directions for Establishing the Maximum Response of Structures under Bidirectional Seismic Action: Case Study of Eight-Story Structures;Journal of Structural Engineering;2024-08
2. Dynamic Compression Simulation of Magnetorheological Elastomer Using Bouc-Wen Hysteretic Model;Materials Science Forum;2023-07-21
3. Τhe Behavior of Hybrid Reinforced Concrete-Steel Buildings under Sequential Ground Excitations;Computation;2023-05-18
4. Formulation and Analysis of a Cubic B-Spline-Based Time Integration Procedure for Structural Seismic Response Analysis;International Journal of Structural Stability and Dynamics;2023-04-15
5. Influence of Post-Elastic Range Bidirectional Interaction for Various Angles of Incidence of Ground Motions on One-Story Asymmetric Structures;Journal of Earthquake Engineering;2023-02-27
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