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Entry Level Cfd Engineer Jobs in Denver, CO (NOW HIRING)

Entry Level Cfd Engineer information

See Denver, CO salary details

$41.7K

$75.7K

$124.5K

How much do entry level cfd engineer jobs pay per year?

As of Sep 2, 2026, the average yearly pay for entry level cfd engineer in Denver, CO is $75,681.00, according to ZipRecruiter salary data. Most workers in this role earn between $53,500.00 and $91,100.00 per year, depending on experience, location, and employer.

What is an entry level CFD engineer?

An Entry Level CFD (Computational Fluid Dynamics) Engineer is responsible for using simulation tools to analyze and predict fluid flow, heat transfer, and other related physical phenomena. They typically assist in designing and optimizing products or systems in industries like aerospace, automotive, and energy. Their role involves setting up simulations, processing computational models, and interpreting results to improve designs. Strong analytical skills, proficiency in CFD software (such as ANSYS Fluent or OpenFOAM), and a solid understanding of fluid mechanics are essential for this role.

What are the typical projects or tasks an entry level CFD engineer can expect during their first year?

As an Entry Level CFD Engineer, you can expect to work on projects involving simulation setup, meshing, running analyses, and post-processing of results for various engineering applications such as aerodynamics, HVAC systems, or thermal management. You may assist senior engineers in validating simulation data, preparing technical reports, and presenting findings to clients or team members. Daily tasks often include refining models, troubleshooting computational issues, and collaborating with CAD designers or testing teams. This hands-on experience helps you build technical expertise and develop a strong foundation for more advanced CFD projects over time.

What are the key skills and qualifications needed to thrive in the entry level CFD engineer position, and why are they important?

To thrive as an Entry Level CFD Engineer, you need a solid background in fluid dynamics, heat transfer, applied mathematics, and an engineering degree such as Mechanical or Aerospace Engineering. Familiarity with computational tools like ANSYS Fluent, OpenFOAM, or STAR-CCM+, and proficiency in programming languages like Python or MATLAB are typically required. Strong analytical thinking, problem-solving skills, and effective communication help you interpret results and collaborate with multidisciplinary teams. These skills ensure accurate simulations, clear reporting, and successful integration of CFD analyses into real-world engineering projects.

What are the most commonly searched types of Cfd Engineer jobs in Denver, CO?

The most popular types of Cfd Engineer jobs in Denver, CO are:

What job categories do people searching Entry Level Cfd Engineer jobs in Denver, CO look for?

The top searched job categories for Entry Level Cfd Engineer jobs in Denver, CO are:

What cities near Denver, CO are hiring for Entry Level Cfd Engineer jobs?

Cities near Denver, CO with the most Entry Level Cfd Engineer job openings:

Infographic showing various Entry Level Cfd Engineer job openings in Denver, CO as of August 2026, with employment types broken down into 90% Full Time, 5% Part Time, and 5% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $75,681 per year, or $36.4 per hour.

Turbomachinery Engineer (Early Career, Exceptional Talent)

Boom Technology

Centennial, CO • On-site

$87 - $117/hr

Other

PTO

Posted 14 days ago


Job description

Turbomachinery Engineer (Early Career, Exceptional Talent)

Stall margin on a high-pressure-ratio compressor. Cooling a turbine blade running in a gas path above its own melting point. At Boom, you'll own problems like these in your first year.

We hire a small number of early-career engineers and give them more responsibility than their résumés justify. At most companies you'd spend a few years meshing geometry someone else defined and re-running cycle decks someone else scoped before you touch real hardware. Here, entry-level Turbomachinery Engineers get a piece of the machine – a combustor liner, a compressor stage match, the secondary air system that cools the turbine disks, a transient stability or fuel-air mixing problem nobody has solved yet – and are accountable for making it work on the test stand.

We're building two engines at once: Superpower, a 42 MW gas turbine for AI data centers, and Symphony, a medium-bypass turbofan designed for Mach 1.7 cruise. Neither is on a schedule that leaves room for waiting your turn. The propulsion problems we're solving don't have playbooks. You will help write them.

This job is demanding and rewarding.

This job isn't for everyone. You're the right person if:

  • You've done something extraordinary early – designed rocket injectors, led a competition team (e.g., Formula SAE, AIAA Design/Build/Fly) where you owned propulsion, aerothermal, or fluid networks, or done propulsion work in an internship that most engineers don't see for years.
  • You love building and want to work long, smart, and hard to create things that have real impact.
  • You want ownership, not a lane, on a team with other high performers.
  • You get more energized when a problem gets harder, not less.
  • You're uncomfortable waiting for someone else to find the answer.
  • GPU-accelerated CFD, the turbine blade flow bench, and engine test stands sound more interesting to you than a conference room.

What You'll Do

  • Own a defined piece of the propulsion system – from 1D cycle performance and 3D CFD modeling to fuel nozzle design, secondary air systems, rotordynamics, or variable guide vane geometry – with real accountability for the outcome.
  • Work directly on the test stand and in the shop with mechanical, materials, and controls teams to turn propulsion concepts into operational gas turbine hardware.
  • Analyze thermodynamic cycles, internal flow networks, and turbomachinery physics to set the operating limits for machines that go into service within the year.
  • Support engine testing operations in real time – evaluating raw data against expected performance models, troubleshooting anomalies, and driving hardware design revisions.
  • Partner with design and manufacturing engineers to ensure gas-path components are optimized for both extreme aerothermal loads and production manufacturability.

You Probably Have

  • A degree in Aerospace Engineering, Mechanical Engineering, or equivalent hands-on propulsion/thermal-fluids experience.
  • At least one internship, co-op, or equivalent experience where you analyzed, designed, or tested real-world propulsion, fluid, or thermal systems.
  • Hands-on modeling and analytical experience – proficiency with 1D/3D CFD tools (e.g., Ansys Fluent, STAR-CCM+, or OpenFOAM), thermodynamics/cycle analysis tools (e.g., NPSS, GasTurb, or pyCycle), and/or finite element analysis (FEA) tools (e.g., Abaqus, Ansys Mechanical, Nastran, or CalculiX).
  • A rock-solid grasp of core propulsion fundamentals – thermodynamics, compressible fluid mechanics, heat transfer, and combustion.
  • A track record of finishing hard things, inside school and outside of it.

Engineers who want to spend their first year doing work that actually matters should apply.

Work Location

Internships require 100% onsite at Boom's headquarters located at 6803 S Tucson Way, Centennial, CO 80112.

Compensation

The Base Salary Range for this position is $87,000 - $117,000 per year. Actual salaries will vary based on factors including but not limited to location, experience, and performance. The range listed is just one component of Boom’s total rewards package for employees. Other rewards may include long-term incentives/equity, a flexible PTO policy, and many other progressive benefits. Additional perks include on-site meals and gym access.

To conform to U.S. Government aerospace technology export regulations (ITAR and EAR), applicant must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Due to the nature of this position, candidates must be eligible to access export-controlled information and technology as required by applicable U.S. export control laws. Learn more about ITAR here.

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