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Finite Element Analysis and Design of Steel and Steel-Concrete Composite Bridges, Second Edition provides structural engineers and researchers with detailed modeling techniques for creating robust design models. The book's chapters cover various forms of modern steel and steel-concrete composite bridges as well as current design codes (American, British and Eurocodes). Other chapters address: nonlinear material behavior of bridge components, applied loads and stability of steel and steel-concrete composite bridges, and design of steel and steel-concrete composite bridge components. The book's final chapter focuses on finite element analysis and design of steel-concrete composite bridges with profiled steel sheeting. The book will be a valuable reference source on the issues, problems, challenges and questions that should be asked when designing a composite highway steel bridge with profiled steel sheeting and finite element modeling of the bridge components.
In recent years, bridge engineers and researchers are
increasingly turning to the finite element method for the design of
Steel and Steel-Concrete Composite Bridges. However, the complexity
of the method has made the transition slow. Based on twenty years
of experience, Finite Element Analysis and Design of Steel and
Steel-Concrete Composite Bridges provides structural engineers and
researchers with detailed modeling techniques for creating robust
design models. The book s seven chapters begin with an overview of
the various forms of modern steel and steel concrete composite
bridges as well as current design codes. This is followed by
self-contained chapters concerning: nonlinear material behavior of
the bridge components, applied loads and stability of steel and
steel concrete composite bridges, and design of steel and steel
concrete composite bridge components. Constitutive models for construction materials including material non-linearity and geometric non-linearity. The mechanical approachincludingproblem setup, strain energy, external energy and potential energy), mathematics behind the method Commonly available finite elements codes for the design of steel bridges. Explainshow the design information from Finite Element Analysis is incorporated into Building information models to obtain quantity information, cost analysis, "
Traditionally, engineers have used laboratory testing to
investigate the behavior of metal structures and systems. These
numerical models must be carefully developed, calibrated and
validated against the available physical test results. They are
commonly complex and very expensive. From concept to assembly,
"Finite Element Analysis and Design of Metal Structures "provides
civil and structural engineers with the concepts and procedures
needed to build accurate numerical models without using expensive
laboratory testing methods. Professionals and researchers will find
"Finite Element Analysis and Design of Metal Structures" a valuable
guide to finite elements in terms of its applications.
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