Издание на английском языке
This publication examines the marine environment, design stages, vessel parameter assessment methods, hydrodynamic analysis, stability, hull design, propulsion systems, space layout, and operational safety. Special attention is paid to sustainable development, environmental requirements, design for production, solution optimization, and design process management. The book covers the full cycle of offshore construction—from requirements formulation to project development and implementation.
It is intended for engineers, shipbuilding specialists, designers, researchers, and students of technical fields related to marine engineering and shipbuilding.
Contents
Preface to the First Edition
Preface to the Second Edition
Acknowledgements
Author's Biography
Nomenclature
1. Introduction
1.1. Development of Marine Vehicles, Structures and Facilities
1.2. Types of Marine Vehicles, Structures and Facilities
1.3. Design Definition and Marine Environment
2. Marine Environment
2.1. Oceans
2.2. Properties of Water
2.3. Atmosphere
2.4. Ocean Circulation
2.5. Ocean Waves
2.6. Climate Change Effects on Marine Environment
3. Design Process
3.1. Mission Requirement
3.2. Market Study
3.3. System Design
3.4. Design Process
3.5. Design Stages
3.6. Information Generation and Management
3.7. Communication
3.8. Design Tools
4. Engineering Economics
4.1. Interest Relationships
4.2. Economic Criteria
4.3. Economic Complexities
4.4. Cash Flow Calculation
4.5. Building Cost Estimation
4.6. Determination of Price
4.7. Design versus Tendering and Contract
4.8. Engineering Economics Application to Ship Design
5. Vehicle Parameter Estimation
5.1. Ship Nomenclature
5.2. Controlling Equations for Preliminary Estimation of Main Parameters
5.3. Data Collection and Analysis for Parameter Estimation
5.4. Approximate Semi-Empirical Relationships for Parameter Estimation
5.5. Basic Ship Method of Parameter Estimation
5.6. Preliminary Performance Estimate
5.7. Simulation-Based Design
6. Stability of Floating Bodies
6.1. Bonjean Curves and Hydrostatics
6.2. Stability at Small Angles
6.3. Stability at Large Angles
6.4. Intact Stability Requirements
6.5. Effect of Parametric Changes on Stability
6.6. Discussion on Stability
6.7. Damaged Stability
6.8. Safety and Subdivision
7. Hydrodynamic Design
7.1. Resistance
7.2. Propulsion
7.3. Seakeeping
7.4. Manoeuvrability
8. Hull Form Design
8.1. Hull Form Characteristics
8.2. Geometrical Design
8.3. Computer-Aided Design of Hull Form
9. Machinery System
9.1. Main and Auxiliary Machinery and Equipment
9.2. Energy Consumption Pattern
10. Structural Design
10.1. Marine Structural Material
10.2. Loads on Marine Structures and Vehicles
10.3. Structural Layout
10.4. Structural Design
11. Layout Design
11.1. Cargo Spaces
11.2. Liquid Non-Cargo Spaces
11.3. Working Spaces
11.4. Accommodation Spaces
11.5. Ergonomics in Layout Design
12. Design for Safety
12.1. Safety at Sea and Design Application
12.2. Design for Maintenance
12.3. Rule-Based Design
12.4. Risk-Based Design
13. Design for Sustainability
13.1. Air Pollution
13.2. Ocean Pollution
13.3. Dispersal of Aquatic Species due to Shipping
13.4. Underwater Noise
13.5. Ship Recycling
14. Design for Production
14.1. Manufacturing Design
14.2. Design for Production
14.3. Modularization
15. Decision-Making Process
15.1. Modelling the Optimization Problem
15.2. Optimization Techniques
15.3. Heuristic Methods for Decision Support Systems
15.4. Multiple Criteria Decision-Making
15.5. Decision Support Applications in Ship Design
16. Design Management
16.1. Creativity and Innovation
16.2. Design Integration
16.3. Design Management
References
Index