Naval Architecture for Ship Design and Construction : Principles of Stability, Hydrostatics, and Hull Form with Propulsion Systems and Marine Engineeri
Overview
Design a ship by connecting every calculation
A stable loading condition, a fair hull, an efficient propeller, and a buildable structure cannot be treated as separate assignments. A change in weight shifts draft and trim; a revised stern alters resistance and inflow; a machinery choice changes arrangement, shafting, and lifecycle cost. This engineering textbook develops the reasoning needed to follow those connections from mission requirements through verification.
Beginning with coordinate systems, principal dimensions, form coefficients, and numerical integration, the chapters build a practical foundation for buoyancy, displacement, intact stability, trim, and weight control. The treatment then moves through hull form development, resistance prediction, propeller behavior, propulsion matching, prime movers, shafting, structural loads, production, damage stability, seakeeping, maneuvering, and integrated design decisions. Worked derivations define variables and units, while distinct numerical examples show how the governing relationships are applied. Applications include loading changes, free-surface penalties, inclining data, draft survey corrections, propeller selection, engine derating, bearing reactions, hull-girder stress, compartment flooding, and response prediction in irregular seas.
Use this text to:- calculate displacement, centers, drafts, trim, metacentric height, and righting-arm behavior;
- develop and evaluate hull geometry from offsets, sectional areas, waterlines, and fairness criteria;
- estimate resistance and effective power, then connect propeller performance to engine capability;
- assess shaft sizing, bearings, alignment, vibration, structural stress, fatigue, and welded production;
- analyze flooding, free-surface effects, residual stability, wave response, and maneuvering behavior;
- organize requirements, trade studies, margins, verification evidence, and lifecycle decisions.
Each of the eighteen chapters combines explanatory prose with equations, step-by-step derivations, topic-specific tables, technical diagrams, worked examples, and practice problems with answers. The progression supports both structured study and selective reference when a project calls for a particular calculation or design check.
This text is intended for naval architecture and marine engineering students, early-career designers, shipyard engineers, marine surveyors, technical officers, and practicing engineers who need a broad review of vessel design. It assumes comfort with algebra and introductory mechanics, then develops the specialized concepts in a connected sequence.
Move from isolated formulas to an integrated design basis, and learn how geometry, loading, hydrodynamics, machinery, structure, construction, and verification shape one another across the life of a ship.
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Details
- ISBN-13: 9798191324104
- ISBN-10: 9798191324104
- Publisher: Independently Published
- Publish Date: August 2026
- Dimensions: 11 x 8.5 x 0.83 inches
- Shipping Weight: 2.05 pounds
- Page Count: 404
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