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Remote Cfd Aerodynamics Jobs (NOW HIRING)

Aerodynamics Expert Role Type: Contractor Location: Global, Remote Schedule: ~15 hrs/week, Flexible ... Run and automate CFD workflows using Python and CLI-based tools. * Analyze lift, drag, pressure ...

New

Remote Role Overview We are looking for experienced CFD Engineers to work on projects involving computational fluid dynamics, aerodynamics, and fluid-flow simulations. The role requires strong ...

CFD Engineer

Tucson, AZ · On-site +1

$100K - $150K/yr

... CFD Engineer - Aerodynamics & Propulsion Location Hybrid; remote considered for the right candidate Employment Type Full Time Department Engineering / Aerodynamics & Propulsion Reports To Shawn ...

CFD Engineer

Tucson, AZ · On-site +1

$100K - $150K/yr

... CFD Engineer - Aerodynamics & Propulsion Location Hybrid; remote considered for the right candidate Employment Type Full Time Department Engineering / Aerodynamics & Propulsion Reports To Shawn ...

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Remote Cfd Aerodynamics information

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$11K

$93K

$132K

How much do remote cfd aerodynamics jobs pay per year?

As of Sep 13, 2026, the average yearly pay for remote cfd aerodynamics 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 is a remote CFD aerodynamics engineer?

A Remote CFD Aerodynamics Engineer is a professional who uses Computational Fluid Dynamics (CFD) software to analyze and optimize the aerodynamic properties of vehicles, aircraft, or other objects, all while working remotely. These engineers model fluid flow and airflow interactions to improve performance, reduce drag, and enhance efficiency. They often collaborate with engineering teams, interpret simulation results, and recommend design modifications without being physically present at a specific workplace. Remote CFD Aerodynamics Engineers require strong analytical, problem-solving, and communication skills, along with expertise in CFD tools.

What are the key skills and qualifications needed to thrive as a remote CFD aerodynamics engineer?

To thrive as a Remote CFD Aerodynamics Engineer, you need a strong background in fluid dynamics, computational methods, and a relevant engineering degree (such as aerospace or mechanical engineering). Proficiency with CFD software tools like ANSYS Fluent, OpenFOAM, or STAR-CCM+, along with experience in programming languages like Python or MATLAB, is typically required. Excellent problem-solving, communication, and time-management skills help you collaborate effectively across remote teams and convey complex results clearly. These abilities are crucial for delivering accurate aerodynamic analyses and ensuring successful project outcomes in a distributed work environment.

What are the typical collaboration methods for remote CFD aerodynamics engineers working with multidisciplinary teams?

Remote CFD Aerodynamics engineers often collaborate with multidisciplinary teams—including design, manufacturing, and testing—using digital tools such as video conferencing, shared simulation platforms, and project management software. Regular virtual meetings and cloud-based data sharing are essential to ensure everyone is aligned on project goals and simulation results. Clear communication and documentation help bridge any gaps caused by remote work, and engineers are encouraged to proactively participate in discussions and provide feedback on designs to ensure aerodynamic considerations are integrated early in the development process.

What is the difference between Remote Cfd Aerodynamics vs Remote Fluid Dynamics Engineer?

AspectRemote Cfd AerodynamicsRemote Fluid Dynamics Engineer
Required CredentialsEngineering degree, CFD certificationsEngineering degree, CFD certifications
Work EnvironmentDesign firms, automotive, aerospaceEnergy, manufacturing, aerospace
Industry UsageVehicle design, aerodynamics testingFluid flow analysis across industries

Remote Cfd Aerodynamics focuses specifically on aerodynamic simulations, primarily in automotive and aerospace sectors, while Remote Fluid Dynamics Engineer covers broader fluid flow analysis across various industries. Both roles require similar credentials and often work in remote settings, but their application areas differ, with Cfd Aerodynamics emphasizing airflows and vehicle design.

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Infographic showing various Remote Cfd Aerodynamics job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 95% Full Time, 2% Part Time, and 2% Contract. Highlights an 88% Physical, 5% Hybrid, and 7% Remote job distribution, with an average salary of $93,015 per year, or $44.7 per hour.

Aerodynamics Expert - Remote

New York, NY • Remote

$80 - $130/hr

Full-time

Posted 3 days ago

New


Job description

Aerodynamics Expert

Role Type: Contractor
Location: Global, Remote
Schedule: ~15 hrs/week, Flexible
Pay: $80–$130/hour

micro1 is seeking Aerodynamics Experts to support an AI training project involving CFD, aerodynamic analysis, engineering simulations, and Python. No prior AI experience is required.

Key Responsibilities
  • Solve and validate aerodynamic and fluid-dynamics problems.
  • Develop computational models, geometries, meshes, and solver configurations.
  • Run and automate CFD workflows using Python and CLI-based tools.
  • Analyze lift, drag, pressure, velocity, and other simulation results.
  • Diagnose mesh, convergence, stability, turbulence, and boundary-condition issues.
  • Perform validation, sanity checks, and mesh-independence studies.
  • Review AI-generated engineering solutions for technical accuracy.
Required Skills
  • Aerodynamics
  • Fluid Mechanics & CFD
  • Python
  • Computational Modeling & Simulation
  • Mesh & Solver Configuration
  • Numerical Validation & Troubleshooting
  • Technical Problem-Solving
Qualifications
  • MS/PhD in Aerospace/Mechanical Engineering, or BS + 1–2 years of relevant aerodynamics experience.
  • Strong aerodynamics and CFD knowledge with practical Python experience.
  • Experience with CLI/programmatic tools such as OpenFOAM, SU2, Gmsh, FEniCSx, SciPy, or equivalent.
  • Ability to clearly communicate technical reasoning and engineering trade-offs.