1

Aeronautical Engineer Jobs in Michigan (NOW HIRING)

Advanced Controls Lead Engineer

Auburn Hills, MI · On-site

$79K - $102K/yr

Bachelor's degree in Mechanical, Electrical, Controls, Systems Engineering, Automotive Engineering, Aerospace/Aeronautical Engineering or related degree * Minimum 5 years of total experience

Resident Design Release Engineer

Detroit, MI

$39.75 - $45.50/hr

Mechanical Engineering, Electrical Engineering, Industrial Engineering, Manufacturing Engineering, Computer Science, Aeronautical Engineering. Advanced degrees preferred. Additional Information GOOD ...

next page

Showing results 1-20

Aeronautical Engineer information

See Michigan salary details

$20

$54

$85

How much do aeronautical engineer jobs pay per hour?

As of Aug 9, 2026, the average hourly pay for aeronautical engineer in Michigan is $54.58, according to ZipRecruiter salary data. Most workers in this role earn between $37.31 and $72.07 per hour, depending on experience, location, and employer.

What is an aeronautical engineer?

An aeronautical engineer works with aircraft and their propulsion systems. As an aeronautical engineer, your job is to design, develop, and implement new procedures and technologies for the creation and maintenance of aircraft components. Specific duties involve testing new designs and materials, assessing parts that were damaged or malfunctioned during flight, and collaborating with designers, pilots, and other engineers. You play an essential role in the aircraft manufacturing process. Aeronautical engineer positions are typically available with aircraft and aerospace manufacturers, government agencies, defense contractors, and aerospace engineering firms.

What is the difference between Aeronautical Engineer vs Aerospace Engineer?

AspectAeronautical EngineerAerospace Engineer
CredentialsBachelor's in Aeronautical Engineering or related fieldBachelor's in Aerospace Engineering or related field
Work EnvironmentDesign, develop, test aircraft and related systemsDesign, develop, test aircraft and spacecraft
Industry UsagePrimarily in aviation industryIn both aviation and space industries

Both aeronautical and aerospace engineers share similar educational backgrounds and work environments, focusing on aircraft design and testing. However, aerospace engineers have a broader scope, including spacecraft and satellites, making their roles more diverse within the aerospace industry.

What does an aeronautical engineer do?

An aeronautical engineer designs, develops, tests, and helps manufacture aircraft such as airplanes and helicopters. They focus on the aerodynamic performance, materials, structural integrity, and systems of air vehicles. Their responsibilities include ensuring safety, efficiency, and compliance with regulations, as well as addressing environmental and economic concerns in aviation. Aeronautical engineers often work for aerospace companies, government agencies, or research organizations.

What are some typical challenges faced by aeronautical engineers when working on new aircraft designs?

Aeronautical engineers often face challenges such as meeting stringent safety regulations, balancing weight and fuel efficiency, and integrating advanced technologies within strict timelines. Collaboration with multidisciplinary teams—like avionics, materials science, and manufacturing—is essential to address these complexities. Staying up-to-date with evolving industry standards and addressing unexpected technical issues during prototype testing are also common aspects of the role.

What jobs can an aeronautical engineer do?

An aeronautical engineer can work in designing, developing, testing, and maintaining aircraft, spacecraft, and related systems. They often work for aerospace manufacturers, government agencies, or research institutions, utilizing skills in aerodynamics, materials, and propulsion. Certification and knowledge of CAD software are also important in this field.

What are the key skills and qualifications needed to thrive as an aeronautical engineer?

To thrive as an Aeronautical Engineer, you need a solid background in aerospace engineering principles, physics, mathematics, and typically a bachelor's degree in aerospace or mechanical engineering. Familiarity with CAD software, simulation tools like MATLAB or ANSYS, and industry certifications such as a Professional Engineer (PE) license are highly valued. Problem-solving, teamwork, and effective communication are crucial soft skills for collaborating on complex projects and presenting technical information. These skills and qualifications are essential for developing safe, innovative, and efficient aircraft and aerospace systems in a highly regulated, multidisciplinary environment.
What are the most commonly searched types of Aeronautical Engineer jobs in Michigan? The most popular types of Aeronautical Engineer jobs in Michigan are:
What are popular job titles related to Aeronautical Engineer jobs in Michigan? For Aeronautical Engineer jobs in Michigan, the most frequently searched job titles are:
What cities in Michigan are hiring for Aeronautical Engineer jobs? Cities in Michigan with the most Aeronautical Engineer job openings:
What are popular job titles related to Aeronautical Engineer jobs in MI? For Aeronautical Engineer jobs in MI, the most frequently searched job titles are:
Infographic showing various Aeronautical Engineer job openings in Michigan as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, and 4% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $113,532 per year, or $54.6 per hour.

3D CFD Simulation Engineer

Detroit Engineered Products

Auburn Hills, MI • On-site

Other

Re-posted yesterday


Job description

Job Description: The senior simulation engineer is responsible for providing guidance to design teams. He/ She will be an integral part of the development team. The engineer is responsible for utilizing commercial and /or internal tools to analyze propulsion components / systems to ensure functional objectives are met. The responsibility of the senior engineer position will include, but not limited to • The simulation engineer analyzes combustion system designs and concepts to achieve functional requirements • Builds and exercises analytical models for internal combustion engines using commercial 3D CFD software tools such as Converge. • Provides component-level and/or system-level design recommendations to Design Responsible Engineers based on interpretation of analysis results. • Retrieves and modifies CAD models of propulsion system components to support the development of CFD models. • Enhances current standard analysis practices and/or tools to improve prediction fidelity and/or execution speed in collaboration with the method development teams • Participates in product design and development teams and regularly presents analysis results to engineering peers, Chief engineers and propulsion system management. • Documents analysis objectives, results, conclusions and assumptions using a standard report template. • Cooperatively works with test engineers to enhance laboratory procedures to support the development of first-time capable analysis techniques and the physical means reduction. • Stays abreast of new technology and competitive products.
Basic
Qualifications: - Master of Science degree in one of the following disciplines: Mechanical Engineering, Chemical engineering, Aerospace/Aeronautical Engineering or Applied Physics - Minimum 5 years' experience in CFD simulations on propulsion systems with focus on combustion system development - Experience with engineering analysis tools for Propulsion systems modeling and simulation (e.g. Converge, Ansa, Star-CCM+) - Excellent communication skills, both verbal and written - Demonstrated technical problem solving skills
Preferred
Qualifications: - Ph.D in Mechanical Engineering, Chemical engineering, Aerospace/Aeronautical Engineering or Applied Physics - Good overall knowledge of propulsion system technologies and corresponding energy transformation systems - Experience in Combustion system and combustion system simulations - Good skill in programming with commercial software (e.g. Matlab Simulink, Visual Basic, Visual C++ - Demonstrated/proven expertise / record of applied knowledge for design / process improvements