Postdoctoral Appointee High-fidelity Scale-resolving CFD Simulations and Reduced Order Modeling of Propulsion and Power Generation Systems
UChicago Argonne
About this role
A postdoctoral appointee in the Multiphysics Computations Section at Argonne National Laboratory to conduct high-fidelity scale-resolving CFD simulations and develop reduced-order models for turbulent and reacting flows relevant to advanced propulsion and power-generation systems. The role involves working with a multidisciplinary team to enhance predictive capabilities of next-generation engine modeling codes for systems such as gas turbines and detonation engines.
Skills
Qualifications
About UChicago Argonne
uchicagoargonnellc.orgN/A
Recent company news
Argonne National Laboratory celebrates 75 years of scientific discovery
Jun 23, 2021
UChicago to harness Argonne's AI, supercomputer tools for cancer drug discovery
Nov 14, 2024
Argonne and UChicago scientists take important step in developing national quantum internet
Feb 19, 2020
UChicago, Argonne scientists zero in on molecules that could fight COVID-19
Feb 24, 2021
Five Argonne researchers recognized as 2020 Distinguished Fellows
Oct 30, 2020
About UChicago Argonne
Headquarters
San Francisco, CA
Company Size
201-500 employees
Founded
2018
Industry
Technology
Glassdoor Rating
4.2 / 5
Leadership Team
Sarah Johnson
Chief Executive Officer
Michael Chen
Chief Technology Officer
Emily Williams
VP of Engineering
David Rodriguez
VP of Product
Jessica Thompson
Chief Financial Officer
Andrew Park
VP of Sales
Unlock Company Insights
View leadership team, funding history,
and employee contacts for UChicago Argonne.
Salary
$71k – $118k
per year
More jobs at UChicago Argonne
Similar Jobs
Sr. Propulsion Engineer
Venus Aerospace
Software Engineer – High-Fidelity Multiphase CFD (New College Grad with PhD)
BETA CAE Greece
Senior Engineer - CFD
Brunswick Corporation
Battery Thermal 3D CFD–Virtual Propulsion Engineer (VPE)
General Motors
CFD Engineer - Process
Cadillac Formula 1® Team
Stage- tesi Digital Twins / high-fidelity CFD
Leonardo