Mechanical engineering internship/masters thesis in structural analysis – Wave Energy
By doing an internship at CorPower Ocean you will be part of a world class team, determined to make big impact. We are on a mission to bring reliable and competitive wave energy to the world. We offer a high degree of autonomy and flexibility, combined with great personal responsibility. CorPower Ocean is a global leader in wave energy, with a technology that has shown game-changing performance. Your work will contribute to the global transition to renewable energy by unlocking one of the largest untapped sources of clean energy on earth.
The Mechanical team at CorPower Ocean is looking for an intern/master’s thesis student with keen interests in structural analysis, solid mechanics and finite element analysis.
For thesis work placement, projects will be focused on finding and implementing workflow improvements and methodology effectivizations in the structural analysis chain, from input load data sourcing and geometry handling to result evaluations. A part of the project time will be spent getting into the existing methods used at CorPower today, with the intention of improving upon these workflows.
Technical field: Mechanical engineering, Structural Analysis
When: Immediate, preferably 6 months
Workload: Full-time
Analysis
You are proficient in English, both spoken and written. Your personality, experience and interest in the field are the most important and what is most highly valued at CorPower.
CorPower Ocean has a diverse team with many nationalities and backgrounds, all working towards the same goal: To Power the Planet with clean energy from ocean waves.

CorPower Ocean designs, manufactures and operates wave energy farms for our customers. The wave farm solution have a unique design inspired by the pumping principles of the human heart, allowing it to survive the toughest storms. Advanced control technology makes the wave energy converters oscillate in optimal timing with incoming waves, strongly amplifying power absorption. This enables high power output compared to the size, weight and cost of the equipment The combination of low costs, high capacity factor and an effective maintenance scheme makes wave power a key tool to accelerate the transition to 100% renewables around the world