Senior CAE Engineer
Wind power is growing, in every sense of the word. Modvion designs and develops a patented modular wind turbine tower made of laminated wood, engineered to reach higher altitudes and unlock wind resources previously out of reach. Laminated wood, nature's carbon fibre, enables efficient logistics for tall towers while substantially cutting the carbon footprint of wind power.
We are moving from proven, single-tower projects into a phase of scaling delivery, and every project we take on right now is a critical step in proving that model to the market.
The role
In this role you will become a member of our product development team. You will work with strength analysis of our wooden wind turbine towers to ensure that they withstand all the extreme loads that they are exposed to during their service life.
The towers are designed based on load cases from the wind turbine OEMs. We develop tools and methods to apply the loads on our structure and its sub-components. Since we push the limits for how wood is used in mechanical engineering, we need to develop novel methods for the structural analysis which are outside the standard borders of design guidelines.
The product development team comprise expertise in engineering design, method development, mechanical testing, and CAE analysis. We often work in cross-functional teams with our other tech departments focusing on manufacturing and installation. Our culture is characterized by a high level of self-management, strong team engagement to reach a common goal, and genuine care for each other.
Who you are
For this role we are looking for a dedicated and methodical strength analyst with experience. You have worked on a variety of products that are exposed to complex loads and are now eager to apply that experience on our wooden wind turbine towers.
You are looking for a broad position where you will work closely with your colleagues to find the best solution. As our design is driven mainly by strength properties, the team’s work has a great influence on design decisions. You have started to explore how AI can contribute to FE analysis and accelerate the path from data to insight.
We also believe that you
Have a MSc in Mechanical, Civil, Physics Engineering, or equivalent
At least 10 years of professional experience in FE analysis
Experience in fatigue assessment and theory
A couple of years experience in ANSYS
Genuinely understand that a problem can be solved in many different ways.
Know how to read and extract new information from scientific papers
Strive to comprehend product requirements from many different perspectives, for example manufacturing and installation.
Continuously make an effort to improve your understanding of the connection between theory and practice.
Wishlist
Knowledge in Python or Matlab
Experience from working with strength analysis of fiber composites
Experience from validating numerical simulations with physical testing
What we offer
First of all we offer a meaningful, challenging, and fun everyday job.
We also offer you:
Flexibility and freedom with your responsibilities, we trust our team to do a great job
Wellness hour, meaning you’re free to exercise one workhour every week
Planning your daily work to fit with your life
Gym and table tennis at work
Health and wellness allowance ‘Friskvårdsbidrag’
Team activities and more!
The position is based at our office and R&D factory in Gothenburg. We like to meet and work together most of the time, but it’s possible to work from home and use flexible hours when needed.
Does it sound like you?
If you are ready to take on a new challenge and explore the next generation of wooden wind turbine towers, then you have come to the right place. Come join us!
- Locations
- Gothenburg
- Remote status
- Temporarily Remote
Gothenburg
About Modvion
Modvion enables climate-neutral wind power by building wind power towers from laminated wood - nature's own carbon fiber. Wood is stronger than steel at the same weight, stores carbon for a long time and has a lower cost. Modvion's wooden towers are built in modules, which enables cost-efficent taller towers and increased electricity production.