PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
MAHLE GmbH
Automobile und Zweiräder
Stuttgart
- Art der Beschäftigung: Vollzeit
- 68.000 € – 89.000 € (von XING geschätzt)
- Hybrid
- Zu den Ersten gehören
PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
Über diesen Job
PhD in Simulation of Complex Multiphase Flows in Heat Exchangers (m/f/d)
Together, we move the world—we’ve been doing it for over 100 years. At MAHLE, as a leading international development partner and systems supplier to the automotive industry, we pursue the objective of making mobility more efficient, more environmentally friendly, more convenient, and more economical. As part of our dual strategy, we are working both on the intelligent combustion engine for the use of hydrogen and other nonfossil fuels and on technologies for fuel cells and e-mobility.
MAHLE generated sales of €11.7 billion in 2024. Employing just under 68,000 people at 135 production locations and 11 technology centers, the company is represented in 28 countries. (as at: 12/31/2024). Join our MAHLE team! #StrongerTogether
Your Contribution
- A three-year, individually designed doctoral (PhD) program in the Group's advanced engineering department
- PhD program in the field of computational fluid dynamics and thermodynamics
- The doctoral program begins at the Helmholtz-Zentrum Dresden-Rossendorf (HZDR). The duration of the initial research stay is up to three months and serves as scientific onboarding as well as aligning the research objectives. The subsequent main part of the doctoral research will take place at the MAHLE site in Stuttgart
- Competent support from the department, personnel development and the research center
- Early discussion about possible career options within the MAHLE group
- Modeling and simulation of complex multiphase flows in heat exchangers in the automotive environment
- Development of simulation models to represent dynamic operating and flow conditions in OpenFOAM
- Identification and analysis of fluid engineering properties such as pressure drop, flow distribution, heat transfer, and phase transition
- Intensive research and development work focusing on the further development of physical models for real-world application conditions
- Excellent university degree (Master or comparable) in Mechanical Engineering, Process Engineering, Physical Engineering Science, or comparable programs with a focus on thermodynamics or fluid mechanics
- In-depth knowledge of flow simulation as well as an understanding of thermodynamic and fluid engineering processes in multiphase flows
- Excellent English and fluent German skills
- High level of independence, reliability and self-directed work
#TeamMAHLE is diverse and we see that as a great advantage! We welcome applications with diverse experiences, backgrounds and identities.
LISA.SIEBERT@MAHLE.COM
+49 711 501-14718
Depending on the job profile and personal situation of the employees, MAHLE offers the possibility of flexible working, for example through home office. This is how we support our employees in balancing their professional and private lives.
Closing date for applications
Don't waste any time, apply while the position is online.
Your future at MAHLE
As a team player and someone who thinks ahead, you can deploy all your skills with us. In cooperation with colleagues from different countries and areas, you contribute in designing the mobility of the future. When selecting MAHLE, you choose trend-setting technologies and strategies. Are you interested in working with us and developing efficient and environmentally-friendly solutions, optimising existing products, and turning innovative ideas into reality? Then MAHLE is the right address for you.
Shape the future with us.
