By Jeffrey Ger,Franklin Y. Cheng
Nonlinear static monotonic (pushover) research has develop into a typical perform in performance-based bridge seismic layout. the recognition of pushover research is because of its skill to spot the failure modes and the layout restrict states of bridge piers and to supply the revolutionary cave in series of broken bridges while subjected to significant earthquakes. Seismic layout Aids for Nonlinear Pushover research of bolstered Concrete and metal Bridges fills the necessity for an entire reference on pushover research for working towards engineers.
This technical reference covers the pushover research of strengthened concrete and metal bridges with restrained and unconfined concrete column contributors of both round or oblong move sections in addition to metal contributors of normal shapes. It presents step by step strategies for pushover research with a number of nonlinear member stiffness formulations, together with:
- Finite segment–finite string (FSFS)
- Finite segment–moment curvature (FSMC)
- Axial load–moment interplay (PM)
- Constant second ratio (CMR)
- Plastic hinge size (PHL)
Ranging from the easiest to the main subtle, the tools are compatible for engineers with various degrees of expertise in nonlinear structural analysis.
The authors additionally supply a downloadable laptop application, tutor (INelastic STRUCTural research of Reinforced-Concrete and metal Structures), that permits readers to accomplish their very own pushover analyses. a variety of real-world examples display the accuracy of analytical prediction through evaluating numerical effects with complete- or large-scale attempt effects. an invaluable reference for researchers and engineers operating in structural engineering, this e-book additionally deals an equipped choice of nonlinear pushover research purposes for college students.
Read Online or Download Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges (Advances in Earthquake Engineering) PDF
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Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges (Advances in Earthquake Engineering) by Jeffrey Ger,Franklin Y. Cheng