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Aerodynamics Engineer Jobs in Kansas (NOW HIRING)

Collaborate with aerodynamics, propulsion, software, systems engineering, and other cross-functional teams throughout vehicle development. * Support system design, integration, and flight testing ...

Collaborate with aerodynamics, propulsion, software, systems engineering, and other cross-functional teams throughout vehicle development. * Support system design, integration, and flight testing ...

Collaborate with aerodynamics, propulsion, software, systems engineering, and other cross-functional teams throughout vehicle development. * Support system design, integration, and flight testing ...

Senior Level Product Review Engineer

Wichita, KS · On-site

$118.15 - $159.85/hr

... aerodynamics, avionics, and more. You will address defects as they arise in the fleet, assess ... The liaison engineering job function will immerse you in a multifaceted environment which will ...

Aerodynamics Engineer information

See Kansas salary details

$68.7K

$84K

$107.9K

How much do aerodynamics engineer jobs pay per year?

As of Aug 10, 2026, the average yearly pay for aerodynamics engineer in Kansas is $83,978.00, according to ZipRecruiter salary data. Most workers in this role earn between $74,000.00 and $87,800.00 per year, depending on experience, location, and employer.

What is the difference between Aerodynamics Engineer vs Aerospace Engineer?

AspectAerodynamics EngineerAerospace Engineer
Required CredentialsBachelor's or Master's in Aerospace, Mechanical, or Aeronautical EngineeringBachelor's or Master's in Aerospace, Mechanical, or related engineering fields
Work EnvironmentDesign labs, wind tunnels, simulation software, aircraft or vehicle testing sitesDesign, development, testing of aircraft, spacecraft, and related systems
Industry UsagePrimarily in aeronautics, automotive, and defense sectors focusing on airflow and performanceBroader aerospace sector including aircraft, spacecraft, satellites, and defense systems

While both roles require similar educational backgrounds and often work in related environments, Aerodynamics Engineers focus specifically on airflow and performance optimization, whereas Aerospace Engineers have a broader scope including design and development of entire aerospace systems.

What does an aerodynamics engineer do?

To achieve flight, heavier-than-air objects like planes or rockets must conform to certain principles of aerodynamics. Aerodynamics is the study of the motion of air and its interaction with solid objects. An aerodynamics engineer tests aerospace designs, such as aircraft bodies and propulsion systems to ensure they meet all aerodynamic specifications and conform to the physical laws of aerodynamics. Your duties and responsibilities include designing mathematical models and simulations to test designs before firms construct prototypes or full products. You also work to improve the efficiency of existing designs.

How much do aerodynamics engineers make?

Aerodynamics engineers typically earn a median annual salary of around $80,000 to $120,000, depending on experience, education, and location. Senior roles or those working in aerospace or defense industries can earn higher salaries, often exceeding $150,000. Skills in computational fluid dynamics (CFD) and proficiency with simulation tools can also influence compensation.

What are the key skills and qualifications needed to thrive as an aerodynamics engineer, and why are they important?

To thrive as an Aerodynamics Engineer, you need strong knowledge of fluid dynamics, computational modeling, and a degree in aerospace or mechanical engineering. Familiarity with tools like CFD software (e.g., ANSYS Fluent, OpenFOAM), wind tunnel testing, and experience with CAD systems are typically required. Critical thinking, problem-solving, and effective communication are key soft skills that help in cross-functional teamwork and innovative design. These skills and qualities are vital for optimizing designs, ensuring safety, and advancing aerodynamic performance in various industries.

What are some common challenges aerodynamics engineers face when collaborating with multidisciplinary teams?

Aerodynamics Engineers often work closely with professionals from structural engineering, manufacturing, and systems integration. One common challenge is balancing aerodynamic performance with structural and cost constraints, which requires clear communication and compromise. Additionally, integrating feedback from different teams while ensuring that aerodynamic goals are met can be complex and requires strong project management skills. Regular meetings and effective use of simulation tools help streamline the collaboration process.
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Infographic showing various Aerodynamics Engineer job openings in Kansas as of August 2026, with employment types broken down into 91% Full Time, 4% Part Time, 1% Temporary, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $83,978 per year, or $40.4 per hour.

Full-time

Posted 9 days ago


Job description

SUMMARY

The Professional, Engineering - Thermodynamics is responsible for performing advanced thermodynamic, fluid-flow, heat-transfer, and computational fluid dynamics analyses in support of aircraft design, testing, and performance optimization. This position evaluates complex coupled fluid-heat transfer challenges, supports aircraft right-sizing and design decisions, prepares and documents analysis and test results, and develops engineering practice documentation to support consistent technical execution.

ESSENTIAL FUNCTIONS

  • Perform complex computational analyses involving coupled fluid-heat transfer, pipe network flow, heat transfer, thermodynamics, and aircraft-related thermal challenges
  • Conduct internal flow CFD analysis to support aircraft design, system performance, and component sizing decisions
  • Interpret analysis results within the context of aircraft design requirements, right-sizing, reliability, safety, and performance objectives
  • Prepare engineering test plans for analysis validation, ground testing, flight testing, and related technical evaluations
  • Document analysis results, assumptions, methodologies, ground test findings, flight test findings, and technical recommendations
  • Develop, write, and update engineering practice documents, procedures, and technical standards as required
  • Use CFD, finite element, CAD, and simulation tools to model complex thermal-fluid behavior and support design trade studies
  • Collaborate with engineering, design, testing, and program stakeholders to communicate results and support informed technical decisions
  • Comply with company policies and procedures and perform other duties as assigned

KNOWLEDGE

  • Advanced knowledge of thermodynamics, fluid mechanics, heat transfer, internal flow analysis, and coupled fluid-thermal systems
  • Knowledge of CFD analysis methods, finite element analysis concepts, aircraft system performance, and in-flight icing considerations
  • Working knowledge of Star-CCM+, Ansys Fluent, SpaceClaim, SimCenter3D, and Microsoft Office products, including advanced Excel
  • Familiarity with inlet and outlet design, pipe network flow, test planning, ground testing, and flight test documentation
  • Knowledge of programming, complex codes, Unix operating systems, high-performance computing interfaces, and languages such as Fortran, Visual Basic, C++, C#, or Python is preferred

COMPETENCIES

  • Strong analytical thinking and technical problem-solving
  • Clear and professional written and verbal communication
  • Attention to detail in analysis, documentation, validation, and reporting
  • Ability to translate complex technical results into practical design recommendations
  • Self-motivated, innovative, and collaborative team approach
  • Ability to manage priorities, deadlines, and short-term travel assignments as required

EXPERIENCE AND EDUCATION

  • Master's degree in Mechanical Engineering, Aerospace Engineering, or a related field required
  • Coursework or experience in fluid mechanics, heat transfer, in-flight icing, CFD analysis, and thermal systems required
  • Minimum of five to eight years of experience in internal flow CFD analysis required
  • Experience performing complex CFD and finite element analyses required
  • Experience with inlet/outlet design and analysis, high-performance computing, or programming is preferred

WORKING CONDITIONS

  • Prolonged periods of sitting at a desk and working at a computer
  • Repetitive use of the hands, wrists, and arms due to computer usage
  • Work is primarily performed in an office or engineering environment with occasional exposure to test, laboratory, aircraft, or shop environments
  • Short-term travel may be required to support testing, technical reviews, or project assignments
  • Reasonable accommodations may be made to enable qualified individuals with disabilities to perform the essential functions of the position

WORK AUTHORIZATION/SECURITY CLEARANCE

  • Must be legally authorized to work in the United States
  • If a security clearance is required:
    • Candidate must be able to obtain and maintain applicable security clearance requirements
    • Successful candidates must be able to obtain required Program Access approval, if applicable