Structural Mechanics and Design of Metal Pipes: A Systematic Approach for Onshore and Offshore Pipelines 1st Edition by Spyros A. A. Karamanos – Ebook PDF Instant Download/Delivery: 0323886485, 978-0323886482
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Product details:
ISBN 10: 0323886485
ISBN 13: 978-0323886482
Author: Spyros A. A. Karamanos
Structural Mechanics and Design of Metal Pipes: A Systematic Approach for Onshore and Offshore Pipelines 1st Edition:
Structural Mechanics and Design of Metal Pipes: A systematic approach for onshore and offshore pipelines presents a unified and systematic approach to understanding and analyzing the structural behavior of onshore and offshore metallic pipelines. Following an overview of pipeline engineering and pipe fabrication, the mechanics of elastic rings and cylinders is presented as a prelude to structural performance of metal pipes under various loading conditions, which involve pressure and structural loads. The book also discusses special topics, such as geohazards and strain-based design, large-diameter water pipelines, global buckling and mechanically-lined pipes, and outlines approaches for developing state-of-the-art finite element models. In all topics addressed in this book, the mechanical behavior of pipes is related with specific design methods for onshore and offshore pipelines.
- Reflects the author’s 30-year experience in structural mechanics of pipes and tubulars
- Describes the structural performance of onshore and offshore pipelines
- Addresses key features of pipe mechanics to both practicing engineers and researchers
- Covers a wide spectrum of pipe behavior from the pipe mill to service conditions
- Presents the background of structural design provisions in major pipeline standards
Structural Mechanics and Design of Metal Pipes: A Systematic Approach for Onshore and Offshore Pipelines 1st Edition Table of contents:
Part I: Introduction to Pipelines
Chapter 1: Introduction to Pipeline Engineering
1.1 Historical Note
1.2 Hydrocarbon Pipeline Projects
1.3 Introduction to Hydrocarbon Pipeline Design and Construction
1.4 Pipeline Design Considerations
1.5 Onshore Pipeline Construction
1.6 Offshore Pipeline Installation
- References
Chapter 2: Line Pipe Manufacturing
2.1 General Considerations and Steel Material Properties
2.2 Pipes Manufactured from Steel Coil
2.3 Pipes Manufactured from Steel Plates
2.4 Seamless Pipes
- References
Part II: Pipe Mechanics
Chapter 3: Structural Mechanics of Elastic Rings
3.1 Ring Stresses under Internal Pressure
3.2 Ring Buckling under External Pressure
3.3 Confined Ring Deformation and Buckling under Uniform External Pressure
3.4 Ring under Transverse Loading
- References
Chapter 4: Structural Mechanics of Elastic Cylinders
4.1 Stresses in Circular Cylinders under Internal or External Pressure
4.2 Structural Stability Equations of Cylindrical Shells
4.3 Buckling of Elastic Cylindrical Shells under Axial Compression
4.4 A Note on Post-Buckling Behavior of Axially-Compressed Elastic Cylinders
4.5 Buckling of Elastic Cylindrical Shells under Uniform External Pressure
4.6 Uniform Bending of an Elastic Tube
4.7 Uniform Bending of an Elastic Tube in the Presence of Pressure
4.8 Buckling of an Elastic Tube under Bending
- References
Chapter 5: Mechanical Behavior of Metal Pipes under Internal and External Pressure
5.1 A Brief Note on Pipe Response under Internal Pressure
5.2 External Pressure Collapse and Post-Buckling Response
5.3 Factors Influencing Pipe Collapse
5.4 Buckle Propagation and Arrest in Long Metal Cylinders
5.5 Effect of Tension on Collapse and Buckling Propagation
5.6 Externally-Pressurized Cylinders under Lateral Confinement
- References
Chapter 6: Metal Pipes and Tubes under Structural Loading
6.1 Metal Pipe Subjected to Transverse Loading
6.2 Uniform Axial Compression of a Metal Pipe
6.3 A Note on Constitutive Modeling for Buckling Calculations
6.4 Bending of Long Metal Pipes
6.5 Effect of Internal Pressure on Bending Response
6.6 Bending of Externally Pressurized Pipes
- References
Part III: Pipeline Design
Chapter 7: Basic Onshore Pipeline Mechanical Design
7.1 Brief Introduction to Pipeline Standards, Pipe Sizes and Pressure Design
7.2 ASME B978-0-323-88663-5.8 Gas Transmission & Distribution Piping Systems
7.3 ASME B978-0-323-88663-5.4 Pipeline Transportation Systems for Liquids and Slurries
7.4 EN 1594 Gas Supply Systems – Pipelines for Maximum Operating Pressure over 16 Bar – Functional Requirements
- References
Chapter 8: Offshore Pipeline Mechanical Design
8.1 Offshore Pipeline Mechanical Design Framework
8.2 Mechanical Design of Offshore Pipelines according to API 1111
8.3 DNV-ST-F101 Provisions for the Mechanical Design of Offshore Pipelines
8.4 A Short Note on Buckle Propagation and Arrestor Design
8.5 Discussion of API and DNV Collapse Formulae
8.6 Other Formulae for Predicting the Collapse Pressure of Pipes and Tubes
8.7 Discussion of Collapse Formulae and the Slenderness Approach
8.8 Effect of Pipe Manufacturing on the Collapse Pressure
- References
Chapter 9: Pipeline Analysis and Design in Geohazard Areas
9.1 Aspects of Strain-Based Design
9.2 Strain Demand Calculation (Pipeline Strain Analysis)
9.3 Strain Resistance Verification of the Pipeline
9.4 Outline of Mitigation Measures
- References
Part IV: Special Topics
Chapter 10: Buried Steel Water Pipeline Design
10.1 Manufacturing of Large Diameter Pipes and In-Situ Construction
10.2 Wall Thickness Determination
10.3 Ring Deflection
10.4 External Pressure Collapse Design
10.5 Steel Pipeline Joints
10.6 Longitudinal Stress
10.7 Lap-Welded Joints under Severe Longitudinal Action
10.8 Improving the Structural Performance of Lap-Welded Joints
- References
Chapter 11: Global Buckling of Pipelines
11.1 Driving Force for Global Buckling
11.2 Upheaval Buckling
11.3 Lateral Buckling
- References
Chapter 12: Mechanically Lined Pipes
12.1 Fabrication of Lined Pipes
12.2 A Brief Presentation of the TU Delft Experiments
12.3 Structural Response of Lined Pipes under Monotonic Bending
12.4 Effect of Fabrication Process on Bending Response of Lined Pipes
12.5 Structural Response of Lined Pipes under Cyclic Loading
- References
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Spyros Karamanos,Structural Mechanics,Design,Metal Pipes,Systematic Approach,Onshore,Offshore Pipelines