Design of Bridge Structures Dec 01 2009 Jagadeesh T R and Jayaram M A 2nd Edition by Jayaram – Ebook PDF Instant Download/Delivery: 978-8120338524, 8120338529
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Product details:
ISBN 10: 8120338529
ISBN 13: 978-8120338524
Author: Jayaram
It is intended for the students pursuing courses in civil engineering at both undergraduate and postgraduate levels. It is also considered useful for practising civil engineers and designers who need a ready reckoner on important design aspects of bridges. The second edition has three main objectives. First, it provides general updates of the bridge designs as per the revised irc codes. Second, it incorporates all round improvement to the presentation of the material. Third, and more importantly, the second edition makes the book complete by incorporating topics like prestressed concrete bridge decks and applications of artificial intelligence in bridge engineering. The most distinguishing features of the book comprise: detailed design drawings of bridges coverage of both hydraulic and structural design of bridges numerous solved examples to illustrate both analysis and design calculations computer programs to initiate students into the field of computer-aided projects in bridge design
Table of contents:
Section I HYDRAULIC DESIGN
Introduction
1.1 Importance of Hydraulic Factors in Bridge Design
1.2 Computation of Peak Flood Flow
1.2.1 Empirical Methods
1.2.2 Envelope Curves
1.3 Flood Flows and Catchment Scale
Catchments
2.1 Small Catchments
2.1.1 Characteristics
2.1.2 Analysis of Runoff Response
2.1.3 Runoff Concentration
2.1.4 Concentration Time
2.1.5 Application of the Rational Method
2.1.6 Composite Catchments
2.1.7 Types of Catchment Response
2.2 Midsize Catchments
2.2.1 Characteristics
2.2.2 Analysis of Runoff Response
2.3 Large Catchments
2.3.1 Characteristics
2.3.2 Frequency Analysis of Floods
2.3.3 Gumbel Method
3. River Channels
3.1 Determination of Peak Discharge
3.1.1 Selection of Reach
3.2 Hydraulic Geometry
3.2.1 Sand Bed Channels
3.2.2 Gravel Bed Channels
3.2.3 Cohesive Bed Channels
3.3 Effect of Bridge on River Regime
3.4 Linear Waterways
3.4.1 Streams with Rigid Boundaries
3.4.2 Quasi-Alluvial Streams
3.4.3 Alluvial Streams
3.4.4 Sand Gravel and Cohesive Soil Beds
3.5 Economic Span
3.6 Influx
3.7 Scour
3.7.1 Alluvial Streams
3.7.2 Quasi-Alluvial Streams
3.7.3 Alluvial and Quasi-Alluvial Streams
3.7.4 Local Scour
Questions
Problems
Appendix: Computer Programs
References
Section II STRUCTURAL DESIGN
Design Loads for Bridges
4.1 Introduction
4.2 Design Loads
4.2.1 Dead Load
4.2.2 Vehicle Live Load
4.2.3 Impact Effect
4.2.4 Wind Loading
4.2.5 Longitudinal Forces
4.2.6 Centrifugal Forces
4.2.7 Buoyancy
4.2.8 Water Current Forces
4.2.9 Thermal Forces
4.2.10 Deformation and Horizontal Forces
4.2.11 Erection Stresses
4.2.12 Seismic Forces
5. Masonry Arch Bridges
5.1 Introduction
5.2 Design Details
5.2.1 Rise of the Arch
5.2.2 Radius of the Arch
5.2.3 Thickness of the Arch Ring
5.2.4 Depth of Haunch Filling
5.3 Dimensioning of Substructures
5.3.1 Abutment
5.3.2 Pier
5.3.3 End Connectors
Design Problem
6. Pipe Culverts
6.1 Introduction
6.2 Flow Patterns in Pipe Culverts
6.3 Culvert Alignment
6.4 Culvert Entrance Structures
6.5 Hydraulic Design of Pipe Culverts
6.6 Structural Design of Pipe Culverts
6.7 Classification of RCC Pipes
6.8 Reinforcement in Pipes
Design Problems
7. Slab Bridges
7.1 Introduction
7.2 Wheel Load on Slabs
7.3 Effective Width Method
7.3.1 Slab Supported on Two Edges (Simply Supported Slabs)
7.3.2 Cantilever Slabs
7.4 Dispersion Length
Design Problems
8. Box Culverts
8.1 Introduction
8.2 Design Method
Design Problems
9. Beam and Slab Bridges
9.1 Introduction
9.2 Design of Interior Panel of Slab
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Tags: Jayaram, Design of Bridge, Dec 01 2009, T R and Jayaram


