Thesis: Numerical Optimization of the Diffuser Vanes in High-Pressure Radial Compressors
Thesis: Numerical Optimization of the Diffuser Vanes in High-Pressure Radial Compressors
Augsburg, DE, 86153
What you should know about us
Everllence enables its customers to achieve sustainable value creation in the transition towards a carbon neutral future. Addressing tomorrow’s challenges within the marine, energy and industrial sectors, we improve efficiency and performance at a systemic level. Leading the way in advanced engineering for more than 250 years, we provide a unique portfolio of technologies. Headquartered in Germany, Everllence employs some 15,000 people at over 120 sites globally. Our after-sales brand, Everllence PrimeServ, offers a vast network of service centres to our customers all over the world.
We can offer you the following tasks
- Familiarization with the fundamentals of radial compressor aerodynamics, in particular the function and design of compressor stator vanes
- Development or adaptation of numerical computational models for a highpressure radial compressor with stator vanes
- Execution of CFD simulations to evaluate the reference design with regard to efficiency, pressure recovery, mass flow, and compressor map behavior
- Analysis of the flow fields in the stator vane region with a focus on loss mechanisms, local flow separation, incidence effects, and secondary flows
- Parametric investigation of relevant stator vane geometry parameters, such as vane angle, vane count, profile shape, stagger angle, and inlet/outlet geometry
- Identification of suitable optimization approaches to reduce aerodynamic losses and improve pressure recovery
- Geometric modification and numerical evaluation of optimized stator vane variants using suitable CFD methods
- Comparison and assessment of the optimized geometries based on defined key performance indicators, such as efficiency, pressure ratio, pressure recovery, mass flow, and compressor map characteristics
- Evaluation, visualization, and interpretation of the simulation results
- Documentation and presentation of the results
You can help us with these qualifications
- Bachelor / Master Thesis in mechanical engineering or aerospace engineering or similar
- Knowledge in turbomachinery / fluid dynamics
- Experience with numerical fluid dynamics (CFD)
- Basic knowledge in Linux and scripting (Python, Bash or similar) beneficial
Our benefits for you
Canteen, meal allowance, accessibility, workplace health management, company doctor, gym, parking, good transport links, employee discounts, student network, women’s network
Good to know
Feel free to contact Nicola Hasl if you have any questions. Email: nicola.hasl@everllence.com.
Please only apply via the “Apply now” button. Unfortunately, applications via email cannot be considered.
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Your professional home
Everllence headquarters in Augsburg were once the setting for the invention of the diesel engine, with which Rudolf Diesel declared war on the steam engine. Today, our primary mission is to overcome the challenges faced by the marine, energy and industrial sectors – not only to ensure our customers’ success, but also to preserve our environment. From small increases in the efficiency of individual components, such as dual-fuel engines, exhaust gas treatment systems or software solutions, to major innovations at system level – every day, around 5,000 employees work at our site in the beautiful renaissance city of Augsburg to create a better future. You too can help us do that. We are the employer for you if you want to make a difference.
That is important to us
Integrity and Compliance are essential elements of our corporate culture. We firmly support diversity and equal opportunities and are therefore looking forward to receiving a diverse range of applications. Just click on “Apply now” and start your career with us. Applications from people with disabilities are strongly encouraged.