Design of steel plate girders, trusses, and composite decks where steel girders act monolithically with a concrete slab using shear connectors. 4. Substructure and Foundation Engineering
Introduction to cable-stayed, suspension, and arch bridges, highlighting their unique structural behavior. 3. Substructure and Foundations
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Structural steel girder design, truss analysis, and connection details.
A bridge must move to survive thermal expansion and seismic activity. The text dedicates comprehensive chapters to elastomeric, pot, and roller bearings, detailing exactly how to calculate their dimensions and capacities. Conclusion Design of steel plate girders, trusses, and composite
Hydraulic and structural design of pipe, box, and slab culverts for small drainage crossings.
: The revised editions include specific details on superstructures, foundations, river training works, and Indian design standards. Verification of Editions and Availability
The longevity of a bridge relies heavily on its underground components, which must resist both vertical loads and lateral earth/water pressures. Note: Ensure the scanned text is "verified" by
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