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Master of Science in Renewable Energy Engineering with Professional Placement
Kingston University

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(4.1)

Find out more about studying Master of Science in Renewable Energy Engineering with Professional Placement at Kingston University? We've gathered all the key details, entry requirements, modules, fees, and more. Take the next step by booking an open day to explore it for yourself.

Different course options

DATA SOURCE:
UNISTATS, UCAS
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Qualification

MSc - Master of Science

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Location

Roehampton Vale

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Study mode

Full Time

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Start date

Sep 2026

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Duration

2 Year

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Course info

Lead the way in the green energy revolution with Kingston University’s Renewable Energy Engineering MSc. Gain cutting-edge skills to drive innovation in sustainable energy.Whether you pursue a career in solar, wind, or hydrogen energy, you'll gain hands-on experience with key industry technologies.Our Renewable Energy Engineering MSc will give you a strong theoretical knowledge base of essential topics like solar and wind power, hydrogen and fuel cell technologies. You’ll also delve into the business and management side of renewable energy.Building on this foundation, you’ll gain hands-on experience using advanced tools to test and optimise real-world renewable energy systems. This all takes place in our Renewable Energy Lab. From solar thermal applications to wind power plants, you’ll build the practical skills essential for a variety of careers in the renewable energy sector.But it doesn’t stop there – alongside lab-based learning, you’ll also develop expertise in the most widely used software in the industry. You’ll work with Polysun for solar PV and heating system design, and windPRO for wind farm planning.You’ll also use GaBi for life cycle assessment, and powerful engineering tools like Ansys, SolidWorks and Siemens NX. By combining practical experience with software proficiency, you’ll graduate prepared to excel in any renewable energy career path.

Modules

Modules (Year 1)
Fuel Cells Technology (15 credits) - Core

This broad-based module comprehensively examines fuel cell technology, the principle engineering methodologies for producing hydrogen and electricity as a prime source of power and the relevant applications for renewable energy generation. The content continues by considering how the design and manufacturing processes involved may be applied in the development and optimisation of new and innovative renewable energy systems. The content concludes by examining and evaluating some of the key issues relating to environmental concern as well as socioeconomical impact of fuel cell policy.

Wind Power Technology (15 credits) - Core

The comprehensive content of this module examines the measurement and assessment of wind resources together with the principles and technology of machines used in the generation of power from the wind, including their aerodynamics, the aero-elastic and fatigue characteristics of their materials and the operation of ancillary equipment including gear boxes and electrical machines.

Solar Power Technology (15 credits) - Core

This is a core module which provides a detailed examination of the solar energy conversion process, system design and applications. The comprehensive content considers how the principles of solar energy, as a prime source of power, can be used in the design, development and manufacture of relevant energy systems and technologies. The module content examines current and future technological requirements and considers key energy policies, practices and influences surrounding solar energy deployment.

Renewable Design and Performance Analysis (30 credits) - Core

This module introduces you to the practical and virtual skills needed in the design and development of renewable power systems for solar, wind and fuel cells technologies, and how you can individually, or as part of a team, assess the viability of, and implement such developments. This module will equip you with cognitive and practical skills for conceptual research, design, and critical evaluation of performance characteristics of relevant renewable energy powered engineering systems to minimise greenhouse gas (GHG) emissions. This would lead to the design and development of environmentally benign products. The module delivery is in the format of lectures, hands on practical and tutorials. A significant part of the teaching time is spent in laboratory sessions during which you will work in small groups, involving peer group activities, as well as learning how to use the latest software technologies for individual investigative assignment. The teaching material will be influenced by extensive research activities of the academic staff engaged in delivery of the module. Feedback and feed forward in the form of formative assessments will be organised.

Research Techniques, Innovation and Sustainability (30 credits) - Core

Research Techniques, Innovation and Sustainability equips you with the skills and knowledge required to select and justify a research topic and then to plan and execute that research project. Research is a broad topic covers a variety of activities that range from undertaking a project as part of an academic programme, through research and development in the commercial environment, to acquiring information to inform projects undertaken as part of routine business practice. This module introduces research in these contexts and allows you to develop your own research plan. As part of the module, you will consider setting research questions and determining hypotheses, acquire relevant information and data, apply suitable analytical techniques, and evaluate the significance and potential applications of their research findings. You will also develop your innovation skills through a combination of workshops and team working, resulting in submission of an innovation proposal aimed to address UN Sustainable Development Goal 11, Sustainable Cities and Communities.

Dissertation (60 credits) - Core

Drawing on previous knowledge and experience, the dissertation module allows you to study an area of interest within your chosen field in significant depth. In undertaking the dissertation, you will develop not only a deeper understanding of your subject area but will also be able to demonstrate a high level of autonomy in terms of project dissertation planning and management. You will be able to demonstrate knowledge and competence in reviewing existing published literature and data and, through your own efforts, apply one or more of a range of research methods to collect and analyse data and draw well-founded conclusions as a result of your research. The main output from the module is a final report but the option is available for you to prepare their work in the format of an article suitable for submission to a relevant conference or journal.

Advanced Product Modelling (15 credits) - Optional

This module is structured in a way to develop an in-depth understanding of computer-aided design techniques such as solid and surface modelling that can support the development of engineering products. This module also aims to help you develop a fundamental understanding of the role of these technologies within a Product Lifecycle Management (PLM).

Advanced Computational Fluid Dynamics (15 credits) - Optional

This module extends your knowledge and skills beyond the basic fluid mechanics methods which are normally introduced at early undergraduate level, and to provide a theoretical and analytical introduction to Computational Fluid Dynamics (CFD). In the lectures, emphasis is placed on the numerical models and analytical techniques in fluid dynamics and heat transfer and some of the more advanced theories behind CFD.

Modules (Year 2)
Professional Placement (120 credits) - Core

The Professional Placement module is a core module if you're following a masters programme that incorporates an extended professional placement. It provides you with the opportunity to apply your knowledge and skills in an appropriate working environment, and develops and enhances key employability and subject specific skills in your chosen discipline. You may wish to use the placement experience as a platform for a major project or your future career.

DATA SOURCE:
UCAS/IDP Connect
Tuition fees
Student living
£11,900 per year
Students from Domestic

DATA SOURCE:
UCAS / IDP Connect

Uni info

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Student rating
(4.1)
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Kingston University
Kingston UniversityRoehampton Vale, Friars AvenueLondonSW15 3DWUnited Kingdom
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