Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges Advances in Earthquake Engineering 1st Edition
Book Name: Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges Advances in Earthquake Engineering 1st Edition
Author: Jeffrey Ger, Franklin Y. Cheng
Publisher: CRC Press
File size: 9 MB
File format: PDF
Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges Advances in Earthquake Engineering 1st Edition Pdf Book Description:
Nonlinear static monotonic investigation is now a frequent practice in functionality established bridge seismic design. The prevalence of pushover analysis is a result of its capacity to recognize the failure modes as well as the design limit conditions of bridge piers and also to offer the progressive collapse chain of bridges that are damaged when exposed to significant earthquakes. This specialized reference covers the pushover analysis of reinforced steel and concrete bridges with limited and unconfined concrete pillar members of either rectangular or circular cross sections in addition to steel members of conventional shapes. It offers step-by-step processes for pushover analysis with different nonlinear penis stiffness formulas, such as: Finite segment finite string Finite segment second curvature Axial load minute discussion Continuous second ratio Vinyl hinge length which range from the easiest to the most complex, the approaches are acceptable for engineers with varying degrees of experience from nonlinear structural analysis. The authors also give a downloadable computer software, INSTRUCT Inelastic Structural Analysis of Reinforced Concrete and Steel Structures, that enables readers to carry out their particular pushover analyses. Numerous real world examples reveal the truth of analytical forecast by comparing numerical results with large or full scale test results. A useful reference for engineers and researchers working in atomic technology, this book also offers an organized set of nonlinear pushover analysis software for pupils.
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