MSc Business & Management (MBM)
The MSc Business & Management program at the University of Strathclyde is designed ...
Glasgow
INTAKE: September
The BEng (Hons) Naval Architecture with High Performance Marine Vehicles program at the University of Strathclyde offers students a comprehensive education in naval architecture with a specialized focus on high-performance marine vehicles. This program integrates principles of naval architecture, marine engineering, and hydrodynamics to prepare students for careers in the design, analysis, and optimization of advanced marine vessels, such as racing yachts, high-speed ferries, and military patrol boats. Students gain hands-on experience through practical projects, laboratory work, and industry placements, ensuring they develop the skills and knowledge required to tackle real-world engineering challenges in the marine sector.
Curriculum: The curriculum of the BEng (Hons) Naval Architecture with High Performance Marine Vehicles program covers a range of subjects relevant to the design and performance of high-speed marine vehicles. Students study topics such as ship hydrodynamics, structural design, marine propulsion systems, stability analysis, and yacht design principles. The program also includes modules on composite materials, marine propulsion technology, and computational fluid dynamics (CFD) to equip students with specialized skills in high-performance vessel design. Practical design projects and simulations allow students to apply theoretical concepts to real-world design scenarios, enhancing their problem-solving abilities and creativity in marine engineering.
Research Focus: The University of Strathclyde has a strong research focus in naval architecture, hydrodynamics, and marine technology, providing students with opportunities to engage in cutting-edge research projects related to high-performance marine vehicles. Faculty members and researchers conduct research in areas such as hull optimization, hydrofoil design, propeller performance, and CFD simulations for marine applications. Students in the BEng (Hons) Naval Architecture with High Performance Marine Vehicles program have the opportunity to participate in research activities, work on industry-sponsored projects, and collaborate with research centers and industry partners, gaining valuable insights into emerging technologies and innovative design solutions for high-speed vessels.
Industry Engagement: The program emphasizes industry engagement and practical experience to ensure students are well-prepared for careers in the marine industry. Students have the opportunity to undertake industry placements, internships, and work-based projects with leading yacht design firms, marine engineering companies, and high-performance boat builders. These industry engagements provide students with hands-on experience in high-speed vessel design, performance testing, and manufacturing processes, as well as valuable networking opportunities with industry professionals. The university also maintains strong links with the maritime industry through guest lectures, industry seminars, and collaborative research projects, ensuring the program remains aligned with industry needs and developments.
Global Perspective: The BEng (Hons) Naval Architecture with High Performance Marine Vehicles program offers students a global perspective on marine engineering, exposing them to international regulations, design standards, and industry best practices. Students have the opportunity to study alongside peers from diverse backgrounds, participate in international design competitions, and undertake study abroad or exchange programs at partner institutions around the world. This global perspective equips students with the intercultural competence, adaptability, and awareness of global trends necessary to succeed in the international marine industry, where high-performance vessels play a vital role in various applications, including leisure, commercial, and defense sectors.
Glasgow
IELTS 6.5
£ 23750
Undergraduate Entry Requirements
Academic Qualifications: Applicants should have successfully completed their secondary education with a minimum overall score of 70 to 75% or equivalent in their respective country's grading system.
English language proficiency:
Students must provide:
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
The University of Strathclyde offers a range of scholarships and financial aid options to support students in their academic journey. These scholarships are designed to recognize excellence, provide access to education, and support students in pursuing their goals.
Excellence Scholarship: The Excellence Scholarship is awarded to high-achieving students entering undergraduate programs at the University of Strathclyde. It provides a financial contribution towards tuition fees and is available for both Scottish and international students.
Faculty-specific Scholarships: Many faculties within the University of Strathclyde offer scholarships tailored to specific areas of study. These scholarships aim to attract exceptional students and provide them with financial support throughout their academic program.
International Undergraduate Scholarship: This scholarship is available to international undergraduate students who have demonstrated academic excellence. It offers a financial award towards tuition fees and is renewable for subsequent years based on satisfactory academic progress.
Graduates of the BEng (Hons) Naval Architecture with High Performance Marine Vehicles program from the University of Strathclyde are well-prepared for careers as naval architects specializing in the design and construction of high-performance marine vessels. They can work for leading yacht design firms, naval architecture consultancies, and marine engineering companies involved in the development of racing yachts, luxury motor yachts, high-speed ferries, and military patrol boats. Naval architects specializing in high-performance vessels utilize their knowledge of hydrodynamics, structural engineering, and marine technology to create innovative and efficient vessel designs that excel in terms of speed, maneuverability, and performance.
Yacht Designer: Graduates can pursue careers as yacht designers, creating bespoke designs for luxury yachts, racing yachts, and performance sailing boats. They work closely with clients to understand their requirements and preferences, translating them into unique yacht designs that balance aesthetics, functionality, and performance. Yacht designers collaborate with naval architects, interior designers, and marine engineers to develop comprehensive design solutions that meet the highest standards of craftsmanship and innovation. They may work for renowned yacht design studios, shipyards, or as freelance designers serving high-net-worth individuals and yacht owners worldwide.
Marine Engineer specializing in High-Speed Vessels: Marine engineers specializing in high-speed vessels play a key role in the design, propulsion, and systems integration of fast boats, ferries, and offshore support vessels. Graduates can work for marine engineering firms, shipyards, and maritime technology companies involved in the development of advanced propulsion systems, hydrofoil technologies, and lightweight materials for high-speed applications. Marine engineers collaborate with naval architects and hydrodynamicists to optimize vessel performance, ensuring efficient power delivery, stability, and safety at high speeds. They may also be involved in the testing, commissioning, and maintenance of high-speed marine systems, contributing to the reliability and competitiveness of high-performance vessels in the global market.
Offshore Racing Team Engineer: Graduates can pursue careers in offshore racing as part of racing teams involved in competitive sailing events such as the America's Cup, Volvo Ocean Race, and offshore powerboat racing circuits. They work as performance engineers, structural engineers, or systems engineers, supporting the design, construction, and optimization of racing yachts and powerboats for maximum speed and performance. Offshore racing team engineers utilize their expertise in naval architecture, aerodynamics, and composite materials to enhance the speed, stability, and safety of racing vessels, gaining hands-on experience in the high-stakes world of professional sailing and powerboat racing.
Research and Development Specialist: Graduates can embark on careers in research and development (R&D) within the maritime industry, focusing on the advancement of high-performance marine technologies and materials. They may work for research institutions, marine technology companies, or government agencies involved in the development of next-generation marine propulsion systems, hydrodynamic coatings, and lightweight composite structures for high-speed vessels. Research and development specialists collaborate with multidisciplinary teams to conduct experiments, simulations, and field trials aimed at improving the performance, efficiency, and sustainability of high-performance marine vehicles, contributing to technological innovation and competitiveness in the global maritime market.