ICTQual AB Level 6 International Diploma in Marine & Naval Engineering
The ICTQual AB Level 6 International Diploma in Marine & Naval Engineering is a comprehensive three-year programme, structured over 360 credits, that prepares learners to excel in the demanding and highly specialised fields of marine, offshore, and naval engineering. This qualification blends theoretical knowledge with practical applications, ensuring learners gain the technical, analytical, and professional skills required to design, operate, and maintain advanced marine and naval systems.
Throughout the programme, learners explore a wide spectrum of subject areas, including ship design, propulsion systems, marine structures, naval architecture, fluid mechanics, offshore engineering, marine safety, and sustainable maritime technologies. The curriculum is developed to align with global industry needs, enabling learners to address real-world engineering challenges in both commercial and defence-related maritime sectors.
This diploma caters to both fresh learners seeking to begin a rewarding career and experienced professionals aiming to enhance their qualifications and progress into supervisory or senior roles. By engaging with practical projects, advanced simulations, and applied research, learners develop problem-solving skills, innovation capacity, and adaptability to emerging technologies in the maritime industry.
Upon successful completion, graduates are equipped for careers in shipbuilding, naval defence, offshore energy, marine operations, port engineering, and maritime safety. They are also prepared for progression into professional certifications, technical leadership roles, and specialist training pathways that strengthen their impact within the global marine and naval engineering sector.
The ICTQual AB Level 6 International Diploma in Marine & Naval Engineering represents a future-focused qualification designed to meet the growing demand for skilled professionals in one of the world’s most vital engineering disciplines.
Level 6 International Diploma in Marine & Naval Engineering
To enrol in ICTQual AB Level 6 International Diploma in Marine & Naval Engineering, learner must meet the following entry requirements:
This qualification, the ICTQual AB Level 6 International Diploma in Marine & Naval Engineering, consists of 36 mandatory units.
Year 1 – Foundation in Marine & Naval Engineering
- Principles of Marine and Naval Engineering
- Engineering Mathematics
- Fundamentals of Mechanical and Electrical Engineering
- Materials Science and Engineering
- Engineering Drawing and Computer-Aided Design (CAD)
- Introduction to Fluid Mechanics and Hydrodynamics
- Basics of Marine Propulsion Systems
- Naval Architecture – Fundamentals
- Marine Structures and Ship Construction
- Health, Safety, and Environmental Practices in Maritime Engineering
- Communication and Technical Report Writing
- Introduction to Project Management in Engineering
Year 2 – Intermediate Studies in Marine & Naval Engineering
- Marine Hydrodynamics and Stability
- Marine Propulsion and Power Systems
- Structural Analysis and Ship Design
- Offshore and Coastal Engineering – Fundamentals
- Marine Electrical and Control Systems
- Materials and Corrosion in Marine Environments
- Marine Maintenance and Reliability Engineering
- Computational Methods in Naval Architecture
- Sustainable Maritime Engineering and Green Technologies
- Applied Research Methods in Marine Engineering
- Port and Harbour Engineering – Basics
- Project Planning and Marine Operations Management
Year 3 – Advanced Studies in Marine & Naval Engineering
- Advanced Ship Design and Modelling
- Advanced Propulsion and Power Plant Systems
- Offshore Structures and Subsea Engineering
- Advanced Hydrodynamics and Computational Fluid Dynamics (CFD)
- Naval Defence Systems and Military Applications
- Smart Marine Technologies and Industry 4.0
- Robotics and Autonomous Systems in Maritime Engineering
- Cyber-Physical Systems and IoT in Marine Engineering
- Professional Ethics and Sustainability in Marine & Naval Engineering
- Innovation and Entrepreneurship in Marine Technology
- Infrastructure and Facility Planning for Maritime Systems
- Final Year Major Project (Capstone Project)
Learning Outcomes for the ICTQual AB Level 6 International Diploma in Marine & Naval Engineering:
Year 1 – Foundation in Marine & Naval Engineering
Principles of Marine and Naval Engineering
- Understand the scope and applications of marine and naval engineering.
- Explain the principles of ship design, naval architecture, and marine systems.
- Recognise key components and operational requirements of maritime vessels.
Engineering Mathematics
- Apply algebra, calculus, and trigonometry to engineering problems.
- Develop mathematical models for marine and naval systems.
- Solve technical problems using numerical and analytical methods.
Fundamentals of Mechanical and Electrical Engineering
- Understand mechanical principles including motion, energy, and mechanics.
- Explain electrical fundamentals including current, voltage, and resistance.
- Apply mechanical and electrical concepts to practical maritime engineering tasks.
Materials Science and Engineering
- Identify materials used in marine and naval applications.
- Understand the relationship between material properties and performance.
- Select suitable materials for marine construction and engineering systems.
Engineering Drawing and Computer-Aided Design (CAD)
- Interpret technical drawings using international standards.
- Develop 2D and 3D models using CAD software.
- Apply dimensioning and tolerancing principles in marine engineering designs.
Introduction to Fluid Mechanics and Hydrodynamics
- Understand principles of fluid flow and hydrodynamics.
- Analyse the behaviour of fluids in marine environments.
- Apply fluid mechanics to ship hull design and offshore structures.
Basics of Marine Propulsion Systems
- Explain different types of marine propulsion systems.
- Analyse the performance of propellers, engines, and power transmission.
- Understand the principles of efficiency, thrust, and fuel consumption.
Naval Architecture – Fundamentals
- Understand basic ship design principles and hull geometry.
- Analyse stability, buoyancy, and weight distribution in vessels.
- Apply naval architecture concepts to simple ship design problems.
Marine Structures and Ship Construction
- Identify structural components of ships and marine platforms.
- Understand construction techniques and material selection.
- Evaluate structural integrity and strength of marine structures.
Health, Safety, and Environmental Practices in Maritime Engineering
- Apply maritime safety regulations and risk assessments.
- Identify hazards in shipbuilding and offshore operations.
- Implement environmentally sustainable practices in marine engineering.
Communication and Technical Report Writing
- Develop professional written and verbal communication skills.
- Prepare structured technical reports and documentation.
- Apply referencing and technical writing standards in marine contexts.
Introduction to Project Management in Engineering
- Understand project management principles and lifecycle.
- Apply planning, scheduling, and resource allocation tools.
- Analyse risk, cost, and quality in marine engineering projects.
Year 2 – Intermediate Studies in Marine & Naval Engineering
Marine Hydrodynamics and Stability
- Analyse ship stability under different loading and sea conditions.
- Apply hydrostatic and hydrodynamic principles to vessel behaviour.
- Evaluate the effect of waves and currents on marine operations.
Marine Propulsion and Power Systems
- Understand advanced marine engines and propulsion systems.
- Analyse power transmission and efficiency of marine vessels.
- Apply thermodynamic principles to marine propulsion.
Structural Analysis and Ship Design
- Perform stress, strain, and deflection analysis on ship components.
- Apply design principles for hulls and marine superstructures.
- Evaluate safety, durability, and performance of marine structures.
Offshore and Coastal Engineering – Fundamentals
- Understand design and construction of offshore platforms.
- Analyse coastal processes and their impact on structures.
- Apply engineering solutions for offshore and coastal projects.
Marine Electrical and Control Systems
- Explain shipboard electrical systems and instrumentation.
- Apply control theory to marine automation systems.
- Understand monitoring and safety systems in maritime environments.
Materials and Corrosion in Marine Environments
- Identify corrosion mechanisms in marine applications.
- Apply protective coatings and materials selection for durability.
- Analyse material performance in saltwater and harsh conditions.
Marine Maintenance and Reliability Engineering
- Develop maintenance strategies for ships and offshore structures.
- Analyse failure modes and implement reliability engineering principles.
- Apply condition monitoring techniques for predictive maintenance.
Computational Methods in Naval Architecture
- Use computational tools to model marine systems and structures.
- Apply simulation techniques for hull design and stability analysis.
- Interpret computational results for engineering decision-making.
Sustainable Maritime Engineering and Green Technologies
- Understand environmental challenges in the marine sector.
- Analyse fuel-efficient, low-emission, and renewable technologies.
- Apply sustainability principles in ship design and operations.
Applied Research Methods in Marine Engineering
- Develop research proposals and methodologies in marine contexts.
- Collect, analyse, and interpret technical data.
- Present findings in structured and professional formats.
Port and Harbour Engineering – Basics
- Understand the design and operation of ports and harbours.
- Analyse coastal structures, breakwaters, and docking facilities.
- Apply planning principles for maritime infrastructure development.
Project Planning and Marine Operations Management
- Understand operational management in shipping and offshore projects.
- Apply project planning tools, scheduling, and resource management.
- Evaluate risk, safety, and cost-efficiency in marine operations.
Year 3 – Advanced Studies in Marine & Naval Engineering
Advanced Ship Design and Modelling
- Develop complex ship designs using advanced CAD and simulation tools.
- Analyse structural integrity and hydrodynamic performance.
- Apply optimisation techniques for vessel efficiency and safety.
Advanced Propulsion and Power Plant Systems
- Understand high-performance marine engines and energy systems.
- Analyse power generation, transmission, and fuel efficiency.
- Apply thermodynamic and mechanical principles to advanced propulsion.
Offshore Structures and Subsea Engineering
- Design and evaluate offshore platforms and subsea systems.
- Analyse structural behaviour under environmental loads.
- Apply advanced engineering solutions for deep-water operations.
Advanced Hydrodynamics and Computational Fluid Dynamics (CFD)
- Use CFD to simulate fluid-structure interaction.
- Analyse wave forces, drag, and stability in complex marine conditions.
- Evaluate results to improve ship design and offshore operations.
Naval Defence Systems and Military Applications
- Understand principles of naval weapon systems and defence platforms.
- Analyse shipboard combat and surveillance systems.
- Apply engineering concepts to military and strategic maritime applications.
Smart Marine Technologies and Industry 4.0
- Explore automation, digital twins, and IoT in maritime engineering.
- Apply smart monitoring and predictive maintenance solutions.
- Analyse integration of advanced technologies in ships and ports.
Robotics and Autonomous Systems in Maritime Engineering
- Understand autonomous ships, UAVs, and underwater vehicles.
- Apply robotics principles for marine inspection and maintenance.
- Evaluate safety and operational efficiency of autonomous maritime systems.
Cyber-Physical Systems and IoT in Marine Engineering
- Integrate hardware, software, and communication networks for marine applications.
- Apply IoT protocols for real-time monitoring and data collection.
- Design cyber-physical systems for offshore and naval operations.
Professional Ethics and Sustainability in Marine & Naval Engineering
- Understand ethical responsibilities in maritime and naval engineering.
- Apply sustainability principles to shipbuilding and offshore projects.
- Analyse social and environmental impact of engineering solutions.
Innovation and Entrepreneurship in Marine Technology
- Develop innovative approaches to marine engineering challenges.
- Apply entrepreneurial skills to maritime technology ventures.
- Create business models for marine and offshore engineering solutions.
Infrastructure and Facility Planning for Maritime Systems
- Plan and design ports, shipyards, and offshore facilities.
- Analyse operational efficiency and layout optimisation.
- Apply strategic planning principles for maritime infrastructure projects.
Final Year Major Project (Capstone Project)
- Undertake independent applied research or engineering project.
- Integrate knowledge from multiple disciplines within marine and naval engineering.
- Present findings through a professional report and presentation.
The ICTQual AB Level 6 International Diploma in Marine & Naval Engineering equips learners with the advanced technical knowledge, practical skills, and professional competence required to excel in the global maritime, naval, and offshore industries. Graduates of this programme are well-prepared to take on specialist, supervisory, or senior roles in marine engineering, shipbuilding, naval operations, and offshore energy projects.
Academic and Professional Development
- Opportunity to undertake specialised post-diploma training or certifications in marine systems, naval architecture, offshore engineering, and maritime safety.
- Access to professional development programmes focusing on marine propulsion, naval defence systems, underwater robotics, and sustainable maritime technologies.
- Pathway to membership with international engineering councils and marine industry associations, enhancing credibility and career progression.
Professional Career Opportunities
Graduates can pursue a wide range of roles across the marine and naval sector, including:
- Marine and Naval Engineer – design, operate, and maintain ships, vessels, and offshore structures.
- Shipbuilding and Structural Engineer – plan, construct, and evaluate marine structures and naval vessels.
- Offshore and Subsea Engineer – specialise in oil, gas, renewable energy, and subsea systems.
- Marine Propulsion and Power Systems Specialist – optimise engine performance, fuel efficiency, and energy systems.
- Naval Defence and Military Systems Engineer – develop and maintain naval defence platforms and systems.
- Autonomous Maritime Systems Developer – design UAVs, autonomous ships, and underwater vehicles.
- Maritime Project Manager or Operations Manager – oversee marine projects, shipyard operations, and port infrastructure.
- Research and Development (R&D) Specialist – innovate new marine technologies, sustainable solutions, and smart maritime systems.
Industry Recognition and Advancement
- Eligibility for industry-recognised professional certifications with maritime and naval engineering authorities.
- Recognition as a pathway to senior technical or management positions in shipyards, offshore operations, naval engineering departments, and maritime research organisations.
With the rapid growth of smart shipping technologies, autonomous vessels, offshore energy projects, and naval innovations, learners of this diploma are positioned to become future-ready professionals in an increasingly advanced and globalised maritime sector.
To deliver the ICTQual AB Level 6 International Diploma in Marine & Naval Engineering, centres must demonstrate robust academic, administrative, and quality assurance systems to ensure consistent, high-quality delivery aligned with international standards.
1. Accreditation and Approval
- Centres must hold valid approval from ICTQual AB.
- Compliance with ICTQual AB policies on quality assurance, assessment, and learner support is mandatory.
2. Qualified Academic Staff
- Teaching staff must have recognised qualifications in marine engineering, naval architecture, offshore engineering, or related disciplines.
- Staff should possess professional experience in maritime, naval, or offshore engineering, ideally at supervisory or managerial levels.
- Continuous professional development (CPD) of staff should be supported to keep pace with emerging maritime technologies.
3. Physical and Learning Resources
- Access to suitable classrooms, laboratories, and practical training facilities.
- Availability of marine and naval engineering equipment (e.g., CAD/CAM software, simulation tools, propulsion models, ship systems).
- Provision of e-learning platforms or digital resources for blended or remote delivery.
4. Assessment and Internal Quality Assurance (IQA)
- Structured assessment methods aligned with course learning outcomes.
- Centres must implement internal verification to maintain fairness, reliability, and consistency in assessments.
- Records of assessments and IQA decisions must be maintained for external audit purposes.
5. Learner Support Services
- Academic guidance and mentoring for learners’ progression.
- Access to libraries, digital databases, and research tools relevant to marine engineering.
- Career counselling, pastoral support, and guidance on progression opportunities.
6. Administrative and Compliance Standards
- Accurate record-keeping of learner enrolments, assessments, and certification requests.
- Compliance with ICTQual AB’s data protection, ethics, and reporting policies.
- Participation in periodic monitoring, audits, and quality review processes conducted by ICTQual AB.
Route for Candidates with No Experience
This route is ideal for learners who are new to Marine & Naval Engineering and do not have prior professional experience. The process is as follows:
- Admission: Learners enrol at an ICTQual AB approved centre to begin the three-year programme.
- Training: Complete all required study units through structured classroom, practical, and online learning
- Assessment: Submit assignments, technical reports, case studies, and complete project work aligned with the learning outcomes of each unit.
- Certification: On successful completion of all assessments, learners are awarded the ICTQual AB Level 6 International Diploma in Marine & Naval Engineering, recognising their technical competence and professional readiness.
Route for Experienced and Competent Candidates
For learners who already have relevant work experience in Marine & Naval Engineering or related fields, the following route is available:
- Eligibility: Professionals with 6 years of relevant experience in marine engineering, naval operations, offshore engineering, or related sectors may apply.
- Assessment of Competence: Centres evaluate prior experience and existing skills against the diploma’s learning outcomes.
- Evidence Submission: Learners provide portfolios, work records, or documented evidence demonstrating practical competence in marine and naval engineering tasks.
- Knowledge and Understanding: Centres may conduct a skills gap analysis or targeted learning to ensure familiarity with all essential concepts and outcomes.
- Certification: Upon successful verification, learners may achieve the ICTQual AB Level 6 Diploma without completing the full training programme, recognising prior learning and industry experience.
