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Seismic Design of Bridges. Design Example No. 7: Twelve-Span Viaduct AASHTO Precast Concrete Bridge
This document describes one of seven seismic design examples that illustrate 'how' to apply AASHTO's seismic analysis and design requirements on actual different bridge types across the United States. Each provides a complete set of 'designer's notes' covering the seismic analysis, design, and details for that particular bridge including flow charts, references to applicable AASHTO requirements, and thorough commentary that explains each step. In addition, each example highlights separate issues (skew effects, wall piers, elastomeric bearings, pile foundations, etc.). The seventh example is a 717 feet 10-span prestressed girder bridge with open pile bents, SPC-B & A equals 0.10g. The superstructure consists of three continuous span units arranged in a 3-4-3 span series.
Seismic Design of Bridges. Design Example No. 7: Twelve-Span Viaduct AASHTO Precast Concrete Bridge
This document describes one of seven seismic design examples that illustrate 'how' to apply AASHTO's seismic analysis and design requirements on actual different bridge types across the United States. Each provides a complete set of 'designer's notes' covering the seismic analysis, design, and details for that particular bridge including flow charts, references to applicable AASHTO requirements, and thorough commentary that explains each step. In addition, each example highlights separate issues (skew effects, wall piers, elastomeric bearings, pile foundations, etc.). The seventh example is a 717 feet 10-span prestressed girder bridge with open pile bents, SPC-B & A equals 0.10g. The superstructure consists of three continuous span units arranged in a 3-4-3 span series.
Seismic Design of Bridges. Design Example No. 7: Twelve-Span Viaduct AASHTO Precast Concrete Bridge
R. Mast (author) / L. Marsh (author) / C. Spry (author) / S. Johnson (author) / R. Griebenow (author)
1996
164 pages
Report
No indication
English
Highway Engineering , Bridge design , Seismic design , Design analysis , Girder bridges , Girders , Skew bridges , Bridge abutments , Bridge foundations , Pile foundations , Bridge decks , Slabs , Footings , Structural components , Design criteria , Vibration damping , Earthquake resistance , Settlement(Structural) , Performance evaluation , Requirements , Reinforced concrete , Concretes , Elastomers , Skewness , Soil-structure interactions , Geotechnical engineering , Elastomeric bearings , AASHTO(American Association of State Highway and Transportation Officials)
Design Optimization of High Performance Concrete AASHTO Precast Prestressed Concrete Bridge I-Beams
British Library Conference Proceedings | 2000
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