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Numerical Investigation and Parametric Analysis of Hybrid Shear Wall with Energy Dissipating Reinforcements
Experiences from past earthquakes show that incorporating shear walls is an effective way in improving a buildings resilience to tolerate seismic activity. To overcome the limitations of conventional RC shear wall, a new resilient hybrid shear wall system with post tensioned tendons and external energy dissipating reinforcements (EEDR) is utilized. Previous research works on shear wall with EDR is limited and this research is intended to fill this gap. The study focuses on evaluating the effect of aspect ratio, post-tensioning force and tendon location on the behaviour of post-tensioned hybrid shear wall with external energy dissipating reinforcements. The scope of effort includes simulating twelve hybrid post-tensioned shear wall with varying aspect ratio, four specimens with varying post-tensioning force and two specimens with varying tendon profile.
Numerical Investigation and Parametric Analysis of Hybrid Shear Wall with Energy Dissipating Reinforcements
Experiences from past earthquakes show that incorporating shear walls is an effective way in improving a buildings resilience to tolerate seismic activity. To overcome the limitations of conventional RC shear wall, a new resilient hybrid shear wall system with post tensioned tendons and external energy dissipating reinforcements (EEDR) is utilized. Previous research works on shear wall with EDR is limited and this research is intended to fill this gap. The study focuses on evaluating the effect of aspect ratio, post-tensioning force and tendon location on the behaviour of post-tensioned hybrid shear wall with external energy dissipating reinforcements. The scope of effort includes simulating twelve hybrid post-tensioned shear wall with varying aspect ratio, four specimens with varying post-tensioning force and two specimens with varying tendon profile.
Numerical Investigation and Parametric Analysis of Hybrid Shear Wall with Energy Dissipating Reinforcements
Lecture Notes in Civil Engineering
Marano, Giuseppe Carlo (editor) / Ray Chaudhuri, Samit (editor) / Unni Kartha, G. (editor) / Kavitha, P. E. (editor) / Prasad, Reshma (editor) / Achison, Rinu J. (editor) / Benoy, Sneha (author) / Joseph, Asha (author)
International Conference on Structural Engineering and Construction Management ; 2021
2021-09-04
13 pages
Article/Chapter (Book)
Electronic Resource
English
Prefabricated concealed bracing energy-dissipating shear wall and assembly method thereof
European Patent Office | 2016
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