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Executive Computational Fluid Dynamics Cfd Engineer Jobs

The RoleUnder supervision, provides Finite Element Analysis (FEA) and Computational Fluid Dynamics ... Engineering or equivalent combination of education and experience1+ years of FEA/CFD experience ...

The Role Under supervision, provides Finite Element Analysis (FEA) and Computational Fluid Dynamics ... Engineering or equivalent combination of education and experience * 1+ years of FEA/CFD experience ...

Spanning foundational science to applied systems engineering and analysis, we focus on solving ... A strong background in computational fluid dynamics (CFD) and multi-physics modeling, demonstrated ...

The CFD Division Head will lead a premier group of approximately fifteen of engineers and research ... Lead technical developments and improvements in field of Computational Fluid Dynamics including but ...

The CFD Division Head will lead a premier group of approximately fifteen of engineers and research ... Lead technical developments and improvements in field of Computational Fluid Dynamics including but ...

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Executive Computational Fluid Dynamics Cfd Engineer information

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How much do executive computational fluid dynamics cfd engineer jobs pay per year?

As of Aug 25, 2026, the average yearly pay for executive computational fluid dynamics cfd engineer in the United States is $93,015.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,500.00 and $110,000.00 per year, depending on experience, location, and employer.

What does an Executive Computational Fluid Dynamics CFD Engineer do?

An Executive Computational Fluid Dynamics (CFD) Engineer leads advanced engineering projects that involve the simulation and analysis of fluid flows using computational methods. They oversee the development, validation, and implementation of CFD models to solve complex engineering problems in industries such as aerospace, automotive, and energy. In this executive role, they also manage teams, coordinate with cross-disciplinary departments, and contribute to strategic decision-making to enhance product performance and innovation.

What are the key skills and qualifications needed to thrive as an Executive Computational Fluid Dynamics CFD Engineer?

To thrive as an Executive Computational Fluid Dynamics (CFD) Engineer, you need advanced knowledge in fluid mechanics, thermodynamics, and numerical methods, typically demonstrated by an engineering degree and extensive experience in CFD analysis. Proficiency with industry-standard tools such as ANSYS Fluent, STAR-CCM+, and programming languages like Python or MATLAB, as well as familiarity with high-performance computing environments, is essential. Strong leadership, problem-solving abilities, and effective communication skills enable you to manage complex projects and collaborate with cross-functional teams. These skills and qualities ensure accurate simulations, innovative solutions, and successful project outcomes in technically demanding environments.

How does an Executive Computational Fluid Dynamics CFD Engineer typically collaborate with cross-functional teams during large-scale projects?

As an Executive CFD Engineer, collaboration with cross-functional teams is essential, especially on complex projects involving aerodynamics, thermal management, or product optimization. You’ll regularly coordinate with design engineers, project managers, and manufacturing specialists to ensure simulation insights translate effectively into design improvements. Clear communication of technical findings to both technical and non-technical stakeholders is a common expectation. Additionally, you may mentor junior engineers or guide team-wide adoption of new simulation tools and best practices, fostering a collaborative and innovative work environment.

What is the difference between Executive Computational Fluid Dynamics CFD Engineer vs Computational Fluid Dynamics CFD Engineer?

AspectExecutive Computational Fluid Dynamics CFD EngineerComputational Fluid Dynamics CFD Engineer
CredentialsBachelor's or Master's in Engineering, often with leadership experienceBachelor's or Master's in Engineering or related field
Work EnvironmentLeadership roles, project management, client interactionDesign analysis, simulation, technical tasks
Industry UsageSenior technical roles, project oversightTechnical CFD analysis, modeling

The Executive CFD Engineer typically combines technical expertise with leadership responsibilities, overseeing projects and managing teams. In contrast, the CFD Engineer focuses on technical simulation work and analysis without managerial duties. Both roles require similar educational backgrounds, but the executive position emphasizes strategic planning and client communication.

What cities are hiring for Executive Computational Fluid Dynamics Cfd Engineer jobs?

Cities with the most Executive Computational Fluid Dynamics Cfd Engineer job openings:

What are the most commonly searched types of Computational Fluid Dynamics Cfd Engineer jobs?

The most popular types of Computational Fluid Dynamics Cfd Engineer jobs are:

What states have the most Executive Computational Fluid Dynamics Cfd Engineer jobs?

States with the most job openings for Executive Computational Fluid Dynamics Cfd Engineer jobs include:

Infographic showing various Executive Computational Fluid Dynamics Cfd Engineer job openings in the United States as of July 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $93,015 per year, or $44.7 per hour.

NIAR CONSULTANT - Computational Fluid Dynamics (CFD) Engineer

Wichita, KS • On-site

The Chronicle Of Higher Education, Inc.
Newspaper Publishers • 201 - 500 employees

$80 - $110/hr

Other

Posted 6 days ago


Job description

Department

NIAR Engineering Design and Modification Team

Location

Wichita, KS-WSU McConnell

Job Description

Since its inception in 1985, the National Institute for Aviation Research (NIAR) at Wichita State University has made a name for itself as the most capable university-based aviation research center in the United States, providing research, design, testing, certification and training to the aviation manufacturing industry, government agencies, educational entities and other clients that can benefit from our services. NIAR is looking for a talented CFD Engineer to join our growing, innovative computational aerodynamic team. This position will be an independent contractor consulting as a Computational Fluid Dynamics Engineer to support various diverse customer program efforts.

Essential Functions
  • Perform computational fluid dynamics simulations for aerospace vehicles operating across multiple speed regimes, including but not limited to:
    • Low‑speed commercial aircraft.
    • Transonic and supersonic flight.
    • Hypersonic.
  • Conduct steady and time‑accurate Reynolds‑Averaged Navier‑Stokes (RANS) simulations to predict aerodynamic and aero‑thermodynamic performance, forces, moments, heat loads, and flow characteristics.
  • Generate high‑quality unstructured grids for complex vehicle geometries and perform either manual or automated grid adaptation.
  • Analyze and interpret CFD results to provide engineering insights for vehicle design, performance optimization, and mission planning.
  • Validate simulation results against other computational approaches, experimental data, and flight test measurements.
  • Document analysis methodologies, simulation parameters, and results in technical reports and presentations.
  • Collaborate with multidisciplinary teams including aerodynamicists, thermodynamicists, aero‑elasticians, flight mechanics, design, stress, and loads engineers.
  • Support the development and implementation of best practices for CFD simulation workflows.
  • Contribute to code verification and validation activities to ensure simulation accuracy and reliability.
Qualifications / Minimum Requirements
  • Master’s degree in aerospace engineering, mechanical engineering, or closely related field; or 5+ years of relevant experience with a Bachelor’s degree in aerospace engineering, mechanical engineering, or closely related field.
  • Experience with steady and time‑accurate RANS simulations.
  • Demonstrated proficiency with industry‑standard unstructured‑grid CFD software packages (Kestrel, FUN3D, STAR‑CCM+, ANSYS Fluent, or equivalent).
  • Strong background in fluid dynamics, aerodynamics, and numerical methods.
  • Experience with grid generation tools (unstructured and hybrid meshes).
  • Proficiency in Linux/Unix environments and high‑performance computing (HPC) systems.
  • Experience analyzing flows across multiple Mach number regimes.
  • Strong programming/scripting skills (Python, MATLAB, Fortran, C/C++, or similar).
  • Ability to process and visualize large datasets (Tecplot, ParaView, FieldView, or equivalent).
  • Excellent problem‑solving and analytical capabilities.
  • Strong written and verbal communication skills.
  • Ability to work both independently and as part of a collaborative team.
  • Proven track record of technical documentation and reporting.
Preferred Qualifications
  • Proficiency with CFD code and automated grid refinement.
  • Experience with hypersonic flow physics, including:
    • High‑temperature gas effects
    • Chemical non‑equilibrium
    • Radiation heat transfer
    • Ablation modeling
  • Familiarity with scale‑resolving methods, including:
    • Hybrid RANS‑LES approaches
    • Large Eddy Simulation (LES) and Wall‑Modeled LES (WMLES)
    • Detached Eddy Simulation (DES) and variants (DDES, IDDES)
    • Direct Numerical Simulation (DNS)
  • Knowledge of uncertainty quantification and sensitivity analysis techniques.
  • Experience with high‑lift device analysis (flaps, slats, landing gear aerodynamics).
  • Experience with automated workflow development and parametric studies.
  • Experience with programming for high‑performance computing (MPI, CUDA/HIP/SYCL for GPUs, OpenMP).
  • Experience with multi‑body and overset mesh generation and CFD.
  • Background in experimental aerodynamics and wind tunnel testing.
  • Publications in peer‑reviewed journals or conference proceedings.

All services will be provided as an independent contractor, pursuant to a Professional Services Agreement, which must be executed prior to being assigned any work.

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