1

3D Simulation Jobs in Michigan (NOW HIRING)

The ideal candidate will have experience using Flow-3D and other CFD tools to analyze complex fluid dynamics problems and develop accurate, high-performance simulation solutions. Key Responsibilities ...

The ideal candidate will have experience using Flow-3D and other CFD tools to analyze complex fluid dynamics problems and develop accurate, high-performance simulation solutions. Key Responsibilities ...

CAE Engineer General

Dearborn, MI · On-site

$40 - $42/hr

Perform 3D structural simulations at system, subsystem, and component levels using non-linear FEA tools (ABAQUS, ANSYS, OptiStruct) * Conduct pre- and post-processing using tools such as HyperMesh ...

... 3D CAD models for interior system components from Class A surface models in CATIA V5 Maintain ... simulations and apply design improvements Work hard, exceed expectations, challenge industry ...

next page

Showing results 1-20

3D Simulation information

See Michigan salary details

$34K

$107.6K

$166K

How much do 3d simulation jobs pay per year?

As of Jun 24, 2026, the average yearly pay for 3d simulation in Michigan is $107,554.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,200.00 and $127,700.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the 3D Simulation position, and why are they important?

To thrive in a 3D Simulation role, you need strong knowledge of 3D modeling, simulation software, mathematics, and physics, often supported by a degree in computer science, engineering, or a related field. Familiarity with industry-standard tools such as Autodesk Maya, Blender, Unity, Unreal Engine, or MATLAB, as well as experience with programming languages like Python or C++, is typically required. Excellent problem-solving abilities, attention to detail, and effective teamwork and communication skills distinguish top performers. These competencies ensure you can accurately create, test, and refine realistic simulations that meet project specifications and facilitate collaboration across multidisciplinary teams.

What are the typical daily responsibilities of a professional working in 3D Simulation?

As a 3D Simulation professional, your day-to-day tasks often involve developing and refining 3D models, programming simulation behaviors, conducting tests, and troubleshooting issues to ensure accuracy and performance. You may collaborate closely with engineers, designers, or project managers to translate real-world scenarios into digital environments and iterate on prototype simulations based on feedback. Documentation, version control, and staying updated with the latest software advancements are also common aspects of the role. This dynamic workflow allows you to contribute to a wide range of projects, from training applications in aerospace to product design and virtual reality experiences.

What is a 3D Simulation job?

A 3D Simulation job involves creating digital models that replicate real-world objects, environments, or processes to analyze and predict behaviors in a virtual space. Professionals in this field use specialized software to simulate physics, motion, and interactions for industries such as engineering, gaming, healthcare, and manufacturing. Responsibilities may include developing simulation models, optimizing designs, and validating system performance. These simulations help reduce development costs, enhance product design, and improve decision-making before real-world implementation.

3D CFD Engineer- Engine Combustion (Converge, Ansa, Star-CCM+)

3D CFD Engineer- Engine Combustion (Converge, Ansa, Star-CCM+)

Detroit Engineered Products

Auburn Hills, MI • On-site

Other

Posted 2 days ago


Job description

Job Description:
Position Overview:
The Senior Simulation Engineer will provide technical guidance to design teams and serve as an integral member of the propulsion development organization. This role is responsible for utilizing commercial and internal simulation tools to analyze propulsion components and systems, ensuring all functional objectives are met.
Key Responsibilities:
  • Analyze combustion system designs and concepts to achieve functional requirements through advanced simulation.
  • Build and exercise analytical models for internal combustion engines using commercial 3D CFD software tools such as Converge.
  • Provide component-level and system-level design recommendations to Design Responsible Engineers based on interpretation of analysis results.
  • Retrieve and modify CAD models of propulsion system components to support CFD model development.
  • Enhance current standard analysis practices and tools to improve prediction fidelity and execution speed, collaborating with method development teams.
  • Participate in product design and development teams, regularly presenting analysis results to engineering peers, Chief Engineers, and propulsion system management.
  • Document analysis objectives, results, conclusions, and assumptions using a standard report template.
  • Work cooperatively with test engineers to enhance laboratory procedures, supporting the development of first-time capable analysis techniques and reduction of physical testing.
  • Stay abreast of emerging technologies and competitive product developments.

Basic Qualifications:
  • Master of Science degree in Mechanical Engineering, Chemical Engineering, Aerospace/Aeronautical Engineering, or Applied Physics.
  • Minimum 5 years of experience in CFD simulations on propulsion systems, with a focus on combustion system development.
  • Proficiency with engineering analysis tools for propulsion systems modeling and simulation (e.g., Converge, Ansa, Star-CCM+).
  • Excellent verbal and written communication skills.
  • Demonstrated technical problem-solving ability.

Preferred Qualifications:
  • Ph.D. in Mechanical Engineering, Chemical Engineering, Aerospace/Aeronautical Engineering, or Applied Physics.
  • Strong overall knowledge of propulsion system technologies and corresponding energy transformation systems.
  • Specialized experience in combustion system and combustion system simulations.
  • Proficiency in programming with commercial software (e.g., MATLAB Simulink, Visual Basic, Visual C++).
  • Demonstrated record of applied knowledge leading to design or process improvements.