Postdoc: AI-Driven Turbomachinery Design (Hybrid)

Postdoc: AI-Driven Turbomachinery Design (Hybrid)

Full-Time 63000 - 77000 Β£ / year (est.) Home office (partial)
The Institute of Ai

At a Glance

  • Tasks: Develop AI-driven design methodologies and collaborate with industry partners.
  • Company: Imperial College London, a leader in innovative research.
  • Benefits: Hybrid work model, competitive salary, and opportunities for professional growth.
  • Other info: Exciting opportunity to work at the forefront of technology and innovation.
  • Why this job: Join a cutting-edge team and make a real impact in turbomachinery design.
  • Qualifications: PhD in a relevant field and strong research background required.

The predicted salary is between 63000 - 77000 Β£ per year.

Imperial College London invites applications for a postdoctoral position in AI-enabled turbomachinery design within SETTL.

The successful candidate will develop ML-driven design methodologies, integrate CFD workflows, and collaborate with industrial partners to advance turbomachinery performance.

The role requires a Ph D in a relevant field, a strong research track record, and excellent communication skills.

#J-18808-Ljbffr

Postdoc: AI-Driven Turbomachinery Design (Hybrid) employer: The Institute of Ai

Imperial College London is an exceptional employer, offering a dynamic work environment that fosters innovation and collaboration in the field of AI-driven turbomachinery design. With access to cutting-edge resources and a strong emphasis on professional development, employees are encouraged to grow their skills while working alongside leading experts and industrial partners. The hybrid work model provides flexibility, making it an attractive opportunity for those seeking meaningful and impactful research roles in a prestigious institution.

The Institute of Ai

Contact Details:

The Institute of Ai Recruitment Team

We think you need these skills to ace Postdoc: AI-Driven Turbomachinery Design (Hybrid)

Machine Learning (ML)
Computational Fluid Dynamics (CFD)
Turbomachinery Design
Research Skills
Collaboration
Communication Skills
Analytical Skills