MEng in Mechanical and Manufacturing Engineering 12 months Postgraduate Programme By Dublin City University |TopUniversities
Programme Duration

12 monthsProgramme duration

Starting Month

Jan, SepStarting Month

Programme overview

Main Subject

Engineering - Manufacturing and Production

Degree

MEng

Study Level

Masters

Study Mode

Blended

Are you eager to investigate the potential of streamlining manufacturing or next-generation renewable energy systems? Do you want to make critical technologies and processes more efficient? This master's degree allows students to specialise in the widely established area of Mechanical and Manufacturing Engineering and specialise in one of four areas: Simulation-driven Design, Advanced Manufacturing, Sustainable Systems and Energy, or Biomedical Engineering (your specialism is chosen upon registration):

Simulation-driven Design

Simulation-driven Design is a crucial discipline for any engineer or designer looking to excel in their field. Simulations, in which computers predict the behaviour and performance of a design, have proven to be a powerful tool in various industries including automotive, aerospace, and manufacturing. 

Simulations allow for the exploration of multiple design options and the assessment of performance under various operating conditions. This not only saves time and resources, it allows engineers to make informed decisions that lead to the development of efficient and reliable products. 

Simulation-driven Design provides a unique opportunity to optimise designs and streamline the design process. By utilising simulation driven design, engineers can provide accurate and reliable results that were previously unattainable.  The integration of high performance computer systems and global optimisation algorithms has taken Simulation-driven Design to a whole new level. 

During this programme, you’ll explore the fundamentals of Simulation-driven Design and study topics including Advanced Finite Element Analysis, Turbomachinery, Computational Thermo-Fluid Dynamics, Manufacturing Systems Simulation, and more. At the end of the programme you will complete a project related to Simulation-driven  Design in which you can showcase all of your newly acquired skills and knowledge.

Advanced Manufacturing

In today’s rapidly advancing technological landscape, the field of manufacturing is undergoing a powerful transformation. 

The shift from traditional manufacturing to advanced digitised or even smart manufacturing can be seen as a paradigm shift, one that has the potential to ignite the next industrial revolution and reshape the global competitive landscape. 

The emergence of smart manufacturing brings with it a host of opportunities for firms to reinvent themselves and push the boundaries of technological innovation. 

During this programme, you’ll explore the world of Advanced manufacturing and undertake modules in Product Design, Surface Engineering and Tribology, Manufacturing Systems Simulation, Manufacturing Process Analysis, and much more. 

At the end of the course you will complete a project related to Advanced Manufacturing in which you can showcase all of your newly acquired skills and knowledge.

Biomedical Engineering

In the field of medicine, the pursuit of innovative solutions in healthcare is paramount. 

Advancements in biomedical engineering have the potential to revolutionise patient care and improve the quality of life for individuals around the world. 

From developing cutting-edge medical devices to designing sophisticated imaging systems, biomedical engineers play a crucial role bridging the gap between technology and healthcare. They apply the principles of engineering and design to solve complex medical problems and create innovative solutions that save lives and improve patient outcomes. 

By pursuing a master's in this area, you can position yourself at the forefront of this exciting and dynamic field. 

During this programme, you’ll explore the world of Biomedical Engineering by undertaking modules like Biomechanics and Tissue Engineering, Design for Clinical Practice, Finite Element Analysis, and more. 

At the end of the course you will complete a Biomedical Engineering project in which you can showcase all of your newly acquired skills and knowledge.

Sustainable Systems and Energy

As societies around the world continue to grapple with the implications of climate change, there is a growing expectation for engineers to play a crucial role in developing solutions that promote sustainable development. 

Sustainable Engineering is a vital discipline that encompasses designing and operating systems in a way that promotes the responsible use of energy and resources. The field focuses on utilising engineering principles and innovative technologies to create an efficient and sustainable future for generations to come.

During this programme, you’ll advance your knowledge in sustainable energy and systems by undertaking a series of modules including Energy System Decarbonisation, Energy Management, Whole Life Cycle Analysis and more. At the end of the course you will complete a Sustainable Systems and Energy project in which you can showcase your new skills and knowledge.


Programme overview

Main Subject

Engineering - Manufacturing and Production

Degree

MEng

Study Level

Masters

Study Mode

Blended

Are you eager to investigate the potential of streamlining manufacturing or next-generation renewable energy systems? Do you want to make critical technologies and processes more efficient? This master's degree allows students to specialise in the widely established area of Mechanical and Manufacturing Engineering and specialise in one of four areas: Simulation-driven Design, Advanced Manufacturing, Sustainable Systems and Energy, or Biomedical Engineering (your specialism is chosen upon registration):

Simulation-driven Design

Simulation-driven Design is a crucial discipline for any engineer or designer looking to excel in their field. Simulations, in which computers predict the behaviour and performance of a design, have proven to be a powerful tool in various industries including automotive, aerospace, and manufacturing. 

Simulations allow for the exploration of multiple design options and the assessment of performance under various operating conditions. This not only saves time and resources, it allows engineers to make informed decisions that lead to the development of efficient and reliable products. 

Simulation-driven Design provides a unique opportunity to optimise designs and streamline the design process. By utilising simulation driven design, engineers can provide accurate and reliable results that were previously unattainable.  The integration of high performance computer systems and global optimisation algorithms has taken Simulation-driven Design to a whole new level. 

During this programme, you’ll explore the fundamentals of Simulation-driven Design and study topics including Advanced Finite Element Analysis, Turbomachinery, Computational Thermo-Fluid Dynamics, Manufacturing Systems Simulation, and more. At the end of the programme you will complete a project related to Simulation-driven  Design in which you can showcase all of your newly acquired skills and knowledge.

Advanced Manufacturing

In today’s rapidly advancing technological landscape, the field of manufacturing is undergoing a powerful transformation. 

The shift from traditional manufacturing to advanced digitised or even smart manufacturing can be seen as a paradigm shift, one that has the potential to ignite the next industrial revolution and reshape the global competitive landscape. 

The emergence of smart manufacturing brings with it a host of opportunities for firms to reinvent themselves and push the boundaries of technological innovation. 

During this programme, you’ll explore the world of Advanced manufacturing and undertake modules in Product Design, Surface Engineering and Tribology, Manufacturing Systems Simulation, Manufacturing Process Analysis, and much more. 

At the end of the course you will complete a project related to Advanced Manufacturing in which you can showcase all of your newly acquired skills and knowledge.

Biomedical Engineering

In the field of medicine, the pursuit of innovative solutions in healthcare is paramount. 

Advancements in biomedical engineering have the potential to revolutionise patient care and improve the quality of life for individuals around the world. 

From developing cutting-edge medical devices to designing sophisticated imaging systems, biomedical engineers play a crucial role bridging the gap between technology and healthcare. They apply the principles of engineering and design to solve complex medical problems and create innovative solutions that save lives and improve patient outcomes. 

By pursuing a master's in this area, you can position yourself at the forefront of this exciting and dynamic field. 

During this programme, you’ll explore the world of Biomedical Engineering by undertaking modules like Biomechanics and Tissue Engineering, Design for Clinical Practice, Finite Element Analysis, and more. 

At the end of the course you will complete a Biomedical Engineering project in which you can showcase all of your newly acquired skills and knowledge.

Sustainable Systems and Energy

As societies around the world continue to grapple with the implications of climate change, there is a growing expectation for engineers to play a crucial role in developing solutions that promote sustainable development. 

Sustainable Engineering is a vital discipline that encompasses designing and operating systems in a way that promotes the responsible use of energy and resources. The field focuses on utilising engineering principles and innovative technologies to create an efficient and sustainable future for generations to come.

During this programme, you’ll advance your knowledge in sustainable energy and systems by undertaking a series of modules including Energy System Decarbonisation, Energy Management, Whole Life Cycle Analysis and more. At the end of the course you will complete a Sustainable Systems and Energy project in which you can showcase your new skills and knowledge.


Admission Requirements

For specific admission requirements, please refer to the official DCU course page.


1 Year
Jan
Sep

Scholarships

Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.

To help students navigate this challenging process, we recommend the following articles:

More programmes from the university

Postgrad Programmes 164