
Yacht Engineering Course
Master the full engineering scope of modern yachts, from naval architecture and structural design to propulsion, electrical systems, and safety compliance. This course delivers the technical depth professionals need to design, build, maintain, and commission sailing and motor yachts to industry standards. Whether you work in a boatyard, a naval architecture firm, or aboard a superyacht, this programme gives you the engineering foundation to perform at the highest level.
What you'll learn:
You will develop a solid understanding of yacht structural design, material selection, and load analysis for fibreglass, aluminium, and steel hulls. You will learn to design and troubleshoot marine propulsion, electrical, plumbing, and fluid systems to professional standards. The course covers steering gear, standing and running rigging, and deck hardware for both sailing and motor yachts. You will study fire safety, damage control, corrosion protection, and classification‑society regulatory compliance. Advanced topics include superyacht HVAC and stabilisation, navigation electronics integration, and sustainable engineering practices. By the final chapter, you will be ready to manage yacht build and refit projects from scope definition through sea trials and handover.
How you study in practice Yacht Engineering Course
How you practise Yacht Engineering Course
For businesses looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Yacht Engineering
Foundations of Yacht Engineering
Lesson 1 • Overview of Onboard Engineering Systems
Maps the major mechanical, electrical, and fluid systems found on a yacht. Sets the integration context for all subsequent technical chapters.
Lesson 2 • Yacht Classifications and Hull Forms
Covers monohull, catamaran, and trimaran designs alongside displacement, semi-displacement, and planing hulls. Establishes vocabulary used throughout the course.
Lesson 3 • Naval Architecture Fundamentals
Introduces hydrostatics, buoyancy, and stability principles essential to yacht design. Connects geometric hull parameters to real-world performance outcomes.
Lesson 4 • Stability Theory and Righting Moments
Explains static and dynamic stability, GZ curves, and metacentric height. Provides the analytical basis for evaluating vessel safety under load.
Chapter 2HideHide detailsSee detailsYacht Structural Design and Materials
Yacht Structural Design and Materials
Lesson 1 • Structural Inspection and Repair
Teaches methods for detecting delamination, cracking, and corrosion in yacht structures. Prepares students to specify and execute structural repairs.
Lesson 2 • Structural Load Analysis
Identifies static, dynamic, and impact loads acting on a yacht hull and deck. Connects load types to structural member sizing and placement decisions.
Lesson 3 • Aluminium and Steel Construction
Examines metal hull construction methods, welding standards, and corrosion protection strategies. Relevant to bluewater cruisers and commercial yachts.
Lesson 4 • Fibreglass and Composite Construction
Covers glass-reinforced plastic, carbon fibre, and sandwich core laminates used in modern yacht building. Explains layup schedules and structural efficiency.
Lesson 5 • Scantling Rules and Classification Standards
Applies classification society scantling rules to determine minimum structural dimensions. Bridges theoretical load analysis with regulatory compliance requirements.
Chapter 3HideHide detailsSee detailsMarine Propulsion Systems
Marine Propulsion Systems
Lesson 1 • Diesel Engine Principles
Explains the four-stroke diesel cycle, fuel injection, and combustion in marine engines. Establishes thermodynamic foundations for all propulsion troubleshooting.
Lesson 2 • Alternative Propulsion Technologies
Introduces hybrid diesel-electric, pure electric, and hydrogen fuel cell propulsion systems. Positions students to evaluate emerging low-emission options.
Lesson 3 • Propeller Theory and Selection
Applies blade geometry, pitch, and cavitation theory to propeller sizing. Enables students to match propellers to engine power curves and hull speed.
Lesson 4 • Propulsion System Maintenance and Faults
Provides systematic fault-finding procedures for engines, gearboxes, and shafting. Reinforces preventive maintenance schedules to maximise reliability.
Lesson 5 • Transmission and Drive Train Systems
Covers gearboxes, shaft lines, flexible couplings, and stern glands. Connects engine output to propeller thrust with minimal power loss.
Chapter 4HideHide detailsSee detailsMarine Electrical Systems
Marine Electrical Systems
Lesson 1 • Renewable Energy Integration
Covers solar photovoltaic, wind turbine, and hydrogenerator installations for energy self-sufficiency. Connects renewable sources to charge controllers and battery banks.
Lesson 2 • Electrical Fault Finding and Safety
Applies multimeter, clamp meter, and insulation testing to locate wiring faults. Emphasises fire prevention, bilge blower interlocks, and safe isolation procedures.
Lesson 3 • DC Electrical Fundamentals
Reviews Ohm's law, circuit types, and 12/24 V DC system architecture common on yachts. Provides the analytical base for all onboard electrical work.
Lesson 4 • AC Electrical Systems and Shore Power
Explains inverters, generators, and shore power connections for 120/240 V AC systems. Addresses galvanic isolation and safety earthing requirements.
Lesson 5 • Battery Systems and Charging
Compares lead-acid, AGM, gel, and lithium battery chemistries for marine service. Covers charging sources, battery management, and bank sizing.
Chapter 5HideHide detailsSee detailsMarine Plumbing and Fluid Systems
Marine Plumbing and Fluid Systems
Lesson 1 • Freshwater Systems Design
Covers pressurised freshwater circuits, tank sizing, and pump selection for cruising yachts. Addresses water quality, filtration, and contamination prevention.
Lesson 2 • Waste and Sewage Systems
Covers holding tanks, macerators, and overboard discharge compliance for marine sanitation. Ensures students design systems meeting environmental protection standards.
Lesson 3 • Fuel Systems and Bunkering
Covers diesel and gasoline fuel tank design, vent systems, and fuel polishing. Addresses safe bunkering procedures and spill prevention requirements.
Lesson 4 • Seawater Cooling and Raw Water Systems
Explains raw water intake, strainers, sea cocks, and engine cooling circuits. Connects seawater system design to corrosion control and maintenance access.
Lesson 5 • Bilge Pumping and Flooding Control
Designs automatic and manual bilge pump systems with appropriate capacity and redundancy. Prepares students to respond to flooding emergencies effectively.
Chapter 6HideHide detailsSee detailsSteering, Deck, and Rig Systems
Steering, Deck, and Rig Systems
Lesson 1 • Deck Hardware and Fittings
Covers winches, cleats, blocks, tracks, and anchor systems with load calculations. Connects hardware selection to structural reinforcement requirements covered earlier.
Lesson 2 • Mast, Boom, and Spar Engineering
Analyses compressive and bending loads in aluminium and carbon spars. Prepares students to specify spar sections and inspect for fatigue and corrosion.
Lesson 3 • Standing Rigging for Sailing Yachts
Explains shroud and stay materials, wire vs. rod vs. fibre rigging, and tension tuning. Addresses fatigue failure modes and inspection intervals.
Lesson 4 • Running Rigging and Sail Controls
Covers halyards, sheets, furling systems, and traveller controls for efficient sail handling. Connects rope selection and lead geometry to crew safety and performance.
Lesson 5 • Steering System Design and Types
Compares tiller, cable, hydraulic, and electronic steering systems for different yacht sizes. Covers rudder forces, feedback, and emergency steering provisions.
Chapter 7HideHide detailsSee detailsSafety, Fire, and Damage Control Systems
Safety, Fire, and Damage Control Systems
Lesson 1 • Fire Detection and Suppression
Covers smoke, heat, and flame detectors alongside fixed and portable suppression systems. Addresses engine room, galley, and accommodation fire risks specifically.
Lesson 2 • Gas Systems and Explosion Prevention
Covers LPG and CNG installation standards, locker design, and vapour detection systems. Addresses ignition source control and safe purging procedures.
Lesson 3 • Risk Assessment and Safety Management
Applies formal risk assessment methods to yacht engineering tasks and passage planning. Produces safety management documentation aligned with industry standards.
Lesson 4 • Flooding and Damage Control
Develops systematic responses to hull breaches, sea cock failure, and progressive flooding. Builds on bilge system knowledge to create layered damage control plans.
Lesson 5 • Life-Saving Appliances and Equipment
Reviews life raft specifications, EPIRB, distress flares, and immersion suit requirements. Connects equipment standards to offshore passage planning and crew safety.
Chapter 8HideHide detailsSee detailsSystems Integration and Yacht Commissioning
Systems Integration and Yacht Commissioning
Lesson 1 • Handover Documentation and Owner Training
Produces as-built drawings, system manuals, and maintenance schedules for vessel handover. Delivers structured owner and crew training on all critical systems.
Lesson 2 • Pre-Launch Inspection and Testing
Executes structured pre-launch checklists covering structural, mechanical, and electrical readiness. Ensures all systems meet design specifications before the vessel enters the water.
Lesson 3 • Systems Integration Planning
Develops a master integration plan coordinating mechanical, electrical, and fluid systems. Identifies interface conflicts and sequencing dependencies before installation begins.
Lesson 4 • Defect Management and Rectification
Establishes a defect tracking system to capture, prioritise, and close commissioning punch list items. Connects quality control processes to final acceptance criteria.
Lesson 5 • Sea Trial Procedures
Designs and executes sea trial programmes to verify propulsion, steering, and stability performance. Documents results against design targets and identifies deficiencies for correction.
Your valid completion certificate
This course is for you:
Marine technician: ready to move beyond repairs into full system engineering.
Sailing enthusiast: wants to understand the vessel deeply, not just sail it.
Mechanical engineer: transitioning into the marine and yacht building sector.
Refit project coordinator: needs technical grounding to manage specialist trades confidently.
Naval architecture student: seeking practical systems knowledge to complement academic theory.
Career changer: drawn to the marine industry and building credentials from scratch.
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