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Ship dynamics and design

K.J. Rawson, E.C. Tupper

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Abstract

Part 1 Powering of ships - general principles: fluid dynamics - components of resistance and propulsion model testing ship trials. Part 2 Powering of ships - application: presentation of data power estimation. Part 3 Seakeeping: seakeeping qualities ship motions limiting seakeeping criteria overall seakeeping performance acquiring data for seakeeping assessments improving seakeeping performance. Part 4 Manoeuvrability: general concepts assessment of manouevrability turning ability rudder forces and torques experiments and trials rudder types and systems ship handling stability and control of submarines design assessment effect of design parameters on manoeuvring. Part 5 Major ship features: machinery equipment creating a fighting ship accommodation measurement. Part 7 Ship design: objectives boundaries creativity design for the life intended. Part 8 Special ship types: passenger ships aircraft cargo carriers submarines high-speed small craft offshore engineering tugs fishing vessels yachts.

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What this paper is about

Part 1 Powering of ships - general principles: fluid dynamics - components of resistance and propulsion model testing ship trials. Part 2 Powering of ships - application: presentation of data power estimation. Part 3 Seakeeping: seakeeping qualities ship motions limiting seakeeping criteria overall seakeeping performance acquiring data for seakeeping assessments improving seakeeping performance. Part 4 Manoeuvrability: general concepts assessment of manouevrability turning ability rudder forces and torques experiments and trials rudder types and systems ship handling stability and control of submarines design assessment effect of design parameters on manoeuvring. Part 5 Major ship features: machinery equipment creating a fighting ship accommodation measurement. Part 7 Ship design: objectives boundaries creativity design for the life intended. Part 8 Special ship types: passenger ships aircraft cargo carriers submarines high-speed small craft offshore engineering tugs fishing vessels yachts.

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Available abstract

Part 1 Powering of ships - general principles: fluid dynamics - components of resistance and propulsion model testing ship trials. Part 2 Powering of ships - application: presentation of data power estimation. Part 3 Seakeeping: seakeeping qualities ship motions limiting seakeeping criteria overall seakeeping performance acquiring data for seakeeping assessments improving seakeeping performance. Part 4 Manoeuvrability: general concepts assessment of manouevrability turning ability rudder forces and torques experiments and trials rudder types and systems ship handling stability and control of submarines design assessment effect of design parameters on manoeuvring. Part 5 Major ship features: machinery equipment creating a fighting ship accommodation measurement. Part 7 Ship design: objectives boundaries creativity design for the life intended. Part 8 Special ship types: passenger ships aircraft cargo carriers submarines high-speed small craft offshore engineering tugs fishing vessels yachts.

Key concepts: Seakeeping, Rudder, Marine engineering, Ship motions, Naval architecture, Engineering, Propulsion, Mooring

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