1

Fluid Dynamics Jobs in Indiana (NOW HIRING)

Thermal Analysis Engineer

Kokomo, IN ยท On-site

$100 - $125/hr

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric drive systems * Perform heat transfer, fluid dynamics & thermal analysis of electric motors using ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric drive systems * Perform heat transfer, fluid dynamics & thermal analysis of electric motors using ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric drive systems * Perform heat transfer, fluid dynamics & thermal analysis of electric motors using ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric drive systems * Perform heat transfer, fluid dynamics & thermal analysis of electric motors using ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric drive systems * Perform heat transfer, fluid dynamics & thermal analysis of electric motors using ...

Showing results 21-40

Fluid Dynamics information

See Indiana salary details

$45

$58

$75

How much do fluid dynamics jobs pay per hour?

As of Sep 8, 2026, the average hourly pay for fluid dynamics in Indiana is $58.71, according to ZipRecruiter salary data. Most workers in this role earn between $53.51 and $64.71 per hour, depending on experience, location, and employer.

What is a fluid dynamics job?

A Fluid Dynamics job involves studying and analyzing the behavior of liquids and gases in motion. Professionals in this field use mathematical models, simulations, and experiments to solve problems related to aerodynamics, hydrodynamics, and energy transfer. Common industries that hire fluid dynamics experts include aerospace, automotive, energy, and environmental engineering. Roles may involve designing more efficient transportation systems, optimizing industrial processes, or improving weather prediction models. Strong knowledge of physics, computational methods, and engineering principles is essential for success in this field.

What types of projects do professionals working in fluid dynamics typically handle?

Professionals in Fluid Dynamics commonly work on projects involving the design and analysis of systems where fluid behavior is critical, such as optimizing airflow in aerospace components, improving process efficiency in industrial piping, or enhancing aerodynamic performance in vehicles. They may be involved in developing simulations, performing laboratory experiments, or troubleshooting fluid-related challenges in real-world applications. Collaboration with cross-functional teams such as design engineers, product managers, and manufacturing specialists is frequent, ensuring that solutions are both innovative and practical. This diversity of projects provides the opportunity to apply analytical skills to a range of industries and encourages ongoing professional growth.

What are the key skills and qualifications needed to thrive in the fluid dynamics position, and why are they important?

To excel in a Fluid Dynamics role, you typically need a strong background in physics, mathematics, and engineering, often evidenced by a degree in mechanical, aerospace, or chemical engineering. Experience with computational fluid dynamics (CFD) software, fluid simulation tools, and data analysis platforms is highly valuable, as are relevant certifications such as Professional Engineer (PE) licensure. Excellent problem-solving skills, attention to detail, and the ability to communicate complex concepts clearly make candidates stand out. These skills and qualifications are crucial for accurately analyzing, modeling, and communicating the behavior of fluids in a wide variety of engineering and scientific applications.

Is there a degree for fluid dynamics?

Fluid dynamics is a specialized field often studied within mechanical, aerospace, or civil engineering degree programs. Bachelor's degrees in these areas typically include coursework in fluid mechanics, and advanced roles may require a master's or Ph.D. in fluid dynamics or related disciplines. Certifications or training in computational fluid dynamics (CFD) tools can also enhance job prospects.
Infographic showing various Fluid Dynamics job openings in Indiana as of August 2026, with employment types broken down into 83% Full Time, 15% Part Time, and 2% Contract. Highlights an 81% Physical, 3% Hybrid, and 16% Remote job distribution, with an average salary of $122,120 per year, or $58.7 per hour.

CAE Engineer III, Pump Development

Fort Wayne, IN โ€ข On-site

$80 - $100/hr

Other

Re-posted 17 days ago


Key responsibilities

  • Use computer-simulated models to analyze fluid behavior and flow in pump applications.

  • Evaluate product structural mechanics of new designs using CAE models.

  • Plan, execute, and develop simulation activities to improve product performance and reliability.


Job description

CAE Engineer III, Pump Development

Department: Engineering

Employment Type: Full Time

Location: US - Indiana - Fort Wayne

Description

Primary responsibility is to efficiently use computer-simulated models to analyze the behavior of fluids and fluid flow in rotodynamic pump applications. Additionally, the position will use CAE models to evaluate product structural mechanics of new designs in motor and pump applications. This position will use the principles of fluid and structural mechanics to simulate how air, water, and other liquids interact with physical barriers and analyze the results to come up with solutions to complex engineering problems. Adept at leveraging cutting edge technologies to develop innovative solutions for complex engineering projects.

Key Responsibilities
  • Demonstrate thorough knowledge of fluid dynamics and heat transfer as required for hydraulic CFD analysis and optimization.
  • Establish design solutions to improve product performance and reliability from CFD/FEA simulation results.
  • Ability to think out of the box and be able to work in cross-functional team.
  • Including planning and executing simulation activity, developing design solutions to meet performance targets, collaborating with design engineering on their feasibility, and root cause resolution of issues discovered during validation testing.
  • Prepare and present technical presentations.
  • Develop computational models to simulate fluid flow, heat transfer, structural, vibration, or impact simulation.
  • Collaborates with other Global Engineering teams on various engineering projects.
  • Provides technical support in discussions of simulation tools, design reviews, DFMEA, and validation planning and execution.
  • Participates in a cross-functional and cross-cultural team environment.
  • Analyzes computational technology, resource needs, and market demand to plan and assess the feasibility of projects.
  • Establishes individual engineering priorities to support the test plan schedule.
  • Performs other related duties as required or assigned.
Skills Knowledge and Expertise

Skills and Abilities

  • New product development experience from concept to production.
  • Experience in developing new or derivative designs of motors, pumps, or other turbomachinery.
  • Assist in all stages of the Fluid-dynamic, Thermodynamic and Heat Transfer design analysis within the Franklin Electric Global Engineering Team.
  • Extensive working knowledge of a CAD system (ProE/CREO preferred).
  • High level of analytical ability for difficult / complex technical problems.
  • Strong interpersonal skills and ability to work effectively with others.
  • Manages large and complex development projects. Demonstrates a track record of successful projects.
  • Analyzes information and evaluates results to choose the best solution and solve problems.
  • Understands complex analytical tools such as finite element analysis, computational fluid dynamics analysis, parametric modeling, electric motor design and analysis, and complex mathematical analysis programs.
  • Maintains confidentiality and uses discretion with business information.
  • Writes routine reports and correspondence.
  • Deals with problems involving several known variables in situations of routine nature.
  • Plans the time, method, manner, and/or performance sequence of own work; may also occasionally assist in planning work assignments performed by others within a limited area of operation.
Education and Experience
  • Bachelorโ€™s degree in engineering or a related technical field (required).
  • Masterโ€™s degree in Hydraulic Design or related CAE field of study (preferred)
  • Ten or more years of related experience (Masterโ€™s degree in a relevant field could substitute for years of experience.)
Computer Skills
  • Advanced: Pro-E (CREO) CAD software required
  • ANSYS CFx and FLUENT experience required
  • ANSYS Mechanical experience required
#J-18808-Ljbffr