CFD Engineer

Tiberius Aerospace Inc.

$100K — $150K *
Aerospace & Defense
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • B.S. or higher in Aerospace Engineering, Mechanical Engineering, or related field.
  • 2 to 5 years of relevant CFD experience on air vehicle, propulsion, or munition programs.
  • Hands-on experience with major CFD solvers (e.g., Fluent, STAR-CCM+).
  • Working knowledge of meshing tools for aerodynamic flow domains.
  • Understanding of compressible aerodynamics across subsonic to high-supersonic regimes.

Responsibilities

  • Set up and conduct high-fidelity CFD simulations for internal and external flows.
  • Support design studies for inlets and nozzles using RANS or transient CFD.
  • Generate performance databases from CFD results for modeling and simulation.
  • Conduct large-scale parametric CFD studies on high-performance computing platforms.
  • Correlate CFD results with experimental data and refine methodologies.

Benefits

  • Equity participation in the company's growth.
  • Comprehensive health benefits package.
  • 401(k) retirement plan options.
  • Flexible hybrid and remote work opportunities.
  • Opportunities for professional growth and advancement in technical roles.
Full Job Description
About the job

CFD Engineer - Aerodynamics &

Propulsion

High-Fidelity Simulation | Internal & External Flows | Inlet, Combustor & Nozzle Analysis

Job Title CFD Engineer - Aerodynamics & Propulsion

Location Hybrid; remote considered for the right candidate

Employment Type Full Time

Department Engineering / Aerodynamics & Propulsion

Reports To Shawn Gilmore

Salary Range $100,000 to $150,000

Equity Yes

US Citizen required

Position Overview

Tiberius Aerospace is seeking a CFD Engineer to support aerodynamic and propulsion analysis for our advanced

air vehicle and munition programs. This role is hands-on with the simulation stack: meshing, solving, and post-

processing high-fidelity CFD for internal flows (inlets, combustors, nozzles) and external aerodynamics across

subsonic through high-supersonic regimes. You will work closely with aerodynamics and propulsion engineers to

turn design questions into well-posed CFD studies and turn CFD results into design guidance the rest of the team

can use. This is an excellent role for an engineer who wants deep, hands-on computational experience on real

flight hardware programs.

What You'll Do

Set up, solve, and post-process high-fidelity CFD simulations for internal flows including inlets, combustors, and

nozzles, and external aerodynamic flows across the flight envelope.

Support inlet and nozzle flow path design studies using high-fidelity RANS or transient CFD as appropriate to the

design phase.

Generate aerodynamic and propulsion databases from CFD results for use in vehicle performance modeling and

trajectory simulation.

Develop and execute large-scale parametric CFD studies on commercial or government high-performance

computing platforms.

Support combustor and reacting-flow analysis workflows including fuel injection, atomization, and combustion

process modeling as applicable to the propulsion architecture.

Correlate CFD predictions against wind tunnel, direct-connect, or flight test data and help refine simulation setup

based on observed discrepancies.

Document CFD methodology, mesh and solver settings, and validation basis for each major analysis campaign.

Collaborate with the Aero-Propulsion and Flight Dynamics & Controls teams to ensure CFD-derived data products

meet the fidelity and format requirements of downstream simulation users.

CFD Methods & Simulation Execution

Develop and refine computational meshes for internal and external flow domains, balancing mesh resolution

against turnaround time requirements for each phase of design.

Configure and run RANS and, where required, transient high-fidelity CFD simulations (such as DES or DDES) for

inlet and combustor performance, nozzle flow, and external aerodynamic characterization.

Apply viscous-coupled panel methods or method-of-characteristics tools for rapid conceptual-level aerodynamic

design studies ahead of higher-fidelity CFD confirmation.

Post-process CFD results to extract performance metrics such as pressure recovery, distortion, thrust and drag

bookkeeping, and aerodynamic coefficients, and package results into formats usable by the performance

modeling and trajectory simulation teams.

Support reacting-flow CFD setup for combustor analysis, including fuel injection and atomization modeling,

working under the direction of propulsion engineers.

Manage CFD job submission, monitoring, and data management on HPC platforms, troubleshooting convergence

issues and solver stability problems as they arise.

Support correlation studies comparing CFD predictions to wind tunnel, ground test, and flight test data, helping

identify and document sources of discrepancy.

Maintain CFD case documentation including mesh generation procedures, boundary condition definitions, solver

settings, and convergence criteria for reproducibility and audit.

Operational & Cross-Functional Support

Coordinate with Aero-Propulsion team members on CFD study scope, priority, and turnaround requirements

relative to program design milestones.

Provide aerodynamic and propulsion data products to the Flight Dynamics & Controls team for trajectory

simulation and stability analysis use.

Support test planning activities by providing pre-test CFD predictions used to define wind tunnel or ground test

points and success criteria.

Participate in design reviews and provide CFD-based technical support for aerodynamic and propulsion design

decisions.

Coordinate with IT or computing infrastructure support on HPC account access, software licensing, and

computational resource allocation.

Support documentation of CFD methodology and results for program milestone review packages.

What You'll Bring

B.S. or higher in Aerospace Engineering, Mechanical Engineering, or a related field.

2 to 5 years of CFD experience, which may include relevant graduate research, internships, or industry

experience on air vehicle, propulsion, or munition programs.

Hands-on experience with at least one major CFD solver (e.g., commercial codes such as Fluent or STAR-CCM+,

or DoD/academic codes such as FUN3D, Kestrel, or CFD++).

Working knowledge of meshing tools and mesh generation strategies for internal and external aerodynamic flow

domains.

Understanding of compressible aerodynamics and propulsion flow physics across subsonic through high-

supersonic regimes.

Proficiency in CFD post-processing, data reduction, and automation.

Must be a U.S. citizen and eligible to obtain and maintain a U.S. government security clearance.

Preferred Experience
Experience with internal flow CFD for inlets, combustors, or nozzles on air-breathing propulsion systems.

Experience with reacting-flow or combustion CFD modeling.

Familiarity with transient high-fidelity methods such as DES, DDES, or LES for operability and distortion analysis.

Experience running CFD on commercial or DoD HPC platforms, including job scheduling and parallel scaling.

Background correlating CFD predictions against wind tunnel, ground test, and flight test data.

Experience with high-dynamic, high-g, or gun-launched flight environments.

Active or clearable to obtain a U.S. government security clearance.

What We're Looking For

A CFD engineer who is genuinely comfortable in the weeds of a simulation - mesh quality, boundary conditions,

convergence behavior - and who can troubleshoot a stalled solver without escalating every issue.

Someone who understands that a CFD result is only useful if it is correctly framed, documented, and handed off

in a format the next person can actually use.

An engineer who is eager to grow technical depth in propulsion integration and flight vehicle aerodynamics, with

strong fundamentals and the right instincts to build on.

Someone who communicates results clearly, flags uncertainty honestly, and is comfortable saying when a result

does not look right rather than passing along a number without scrutiny.

A team player who enjoys working closely with a senior lead, absorbing methodology, and taking on increasing

analysis ownership over time.

Compensation & Benefits
Tiberius Aerospace offers competitive base compensation commensurate with experience, equity participation,

comprehensive health benefits, and 401(k). Specific compensation will be discussed during the interview process.

Growth Opportunity

This role offers the opportunity to build deep, hands-on CFD expertise on real flight hardware programs, working

directly with Aero-Propulsion colleagues on propulsion integration and vehicle aerodynamics for next-generation

precision strike systems. As Tiberius scales through Series A and into full-rate development, this person will have

the opportunity to take on increasing analysis ownership, lead CFD studies independently, and grow into a senior

aerodynamics or propulsion engineering role.

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