Marine & Naval Engineering is the discipline that combines naval architecture, marine propulsion, offshore structure design, hydrodynamics, and ship systems engineering. The ICTQual AB Level 6 International Diploma in Marine & Naval Engineering is aimed at learners who want to acquire advanced technical skills and knowledge required for designing, operating, maintaining, and innovating in marine and naval sectors—such as shipbuilding, offshore platforms, marine propulsion, maritime transport, and naval defence.
The programme prepares students for both theory and practice in marine engineering: from ship hull design, stability, propulsion, and hydrodynamics, to materials and corrosion in marine environments, systems control, safety, and regulation.
Course Overview
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Level: Level 6 (senior/advanced diploma).
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Duration & Credit Value: Typically structured over three years, with significant credit requirements (often ~360 credits in similar ICTQual engineering programmes).
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Structure: A mix of foundational, intermediate, and advanced modules / units. The course includes theoretical classes, workshops/labs, project work, simulation, and possibly industrial case studies.
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Delivery: Usually through approved centres offering blended learning (face-to-face practicals + online/theoretical work), assignments, and evidence-based assessments.
Entry Requirements
While I could not find the official detailed entry requirements publicly, based on ICTQual AB’s standard patterns, the likely criteria include:
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Minimum Age: Generally 18 or above.
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Academic Background: A Level 5 qualification (or equivalent) in marine engineering, naval architecture, mechanical / electrical engineering, or another relevant technical field. Strong mathematics and physics foundations are usually expected.
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Experience: Some candidates may benefit from or require prior experience in marine or offshore engineering, shipyards, or related marine systems. There may be a Recognition of Prior Learning (RPL) or experienced candidate route for those with relevant background.
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Language Skills: Adequate proficiency in English to understand technical literature, report writing, communication.
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Other: Access to tools/ labs, and willingness to engage in both theoretical and hands-on / applied learning.
Study Units
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
Graduates of this diploma will usually be expected to achieve the following:
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Demonstrate sound knowledge of hydrodynamics, marine propulsion, stability, and ship design; the ability to analyse resistance, power, and ship performance.
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Understand marine materials, corrosion, fatigue, and the effects of a marine environment on structures; choose appropriate materials and protective measures.
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Design or assess structural components of ships or offshore installations; apply strength of materials, structural analysis, load and stress calculations.
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Operate, maintain, and troubleshoot marine propulsion systems, electrical systems, control and instrumentation onboard vessels or offshore platforms.
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Understand safety, environmental regulation, pollution control, classification societies, maritime laws applicable in different jurisdictions.
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Use simulation, design tools (CAD, CFD etc.), modelling techniques to support design, performance prediction, and optimization.
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Lead or contribute to projects in marine engineering, either in design, maintenance, or R&D context; work with cross-disciplinary teams.
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Incorporate principles of sustainability, energy efficiency, green technologies in marine engineering designs and operations.
Course Benefits
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Strong employability: The marine & naval engineering sector needs graduates who can design, build, maintain ships, offshore structures, naval vessels, or work in marine power, dredging, ship repair, defense.
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Hands-on & practical skills: Practical learning ensures students are capable of real work—welding/fabrication, system maintenance, stability calculation etc.
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Global relevance: Marine & naval engineering is international—ships, marine systems, classification societies, and regulations cross national borders.
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Opportunity for specialization: Within marine engineering, learners may specialize in propulsion, structures, offshore engineering, or naval defence.
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Exposure to advanced and emerging technologies: E.g. green marine tech (alternative fuels, emission controls), automated ship systems, smart maritime instrumentation, etc.
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Professional and academic recognition: A Level 6 diploma gives credence for roles, and can be a stepping stone for higher studies or certifications.
Future Progression & Qualification Route
After completing the ICTQual AB Level 6 International Diploma in Marine & Naval Engineering, typical progression routes include:
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Working in roles such as Marine Engineer, Naval Architect (junior), Ship Design Technician, Offshore / Subsea Engineer, Maintenance & Repair Engineer, Ship Propulsion Specialist etc.
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Advancing to supervisory, quality control, technical management roles in shipyards, marine systems companies, offshore installation firms, maritime defense.
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Pursuing higher education (if recognised) such as bachelor’s top-up degrees, or master’s programs in Marine Engineering, Naval Architecture, Offshore Engineering, Maritime Systems, or related fields.
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Obtaining professional certifications or memberships (maritime classification societies, marine engineering institutes, naval defence engineering bodies).
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Specialising in related fields: e.g. marine safety, pollution control, renewable marine power (e.g. tidal/wave/solar offshore), smart shipping, or unmanned marine systems.
Qualification Route
Likely there are two or more pathways to complete or gain the qualification:
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Standard Full Route: Complete all required units over the full period (three years), including theory, practical assignments, labs, and a capstone project.
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Experienced / Recognition of Prior Learning (RPL): For candidates with prior relevant experience in marine engineering, shipyards, offshore work etc., there may be assessment of prior learning, and possible exemptions or fast tracking through certain units.
The ICTQual AB Level 6 International Diploma in Marine & Naval Engineering offers a robust pathway for anyone aiming to work in marine or naval sectors—whether in shipyards, maritime transport, naval defence, or offshore engineering. It promises a mix of theoretical understanding, practical skills, exposure to modern marine systems, and relevance in globally significant industries. If you are drawn to working with ships, offshore platforms, propulsion systems, naval architecture or marine power & design, this diploma can set a strong foundation for a promising career.