1

Computational Modeling Simulation Multiphysics Jobs in Indiana

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric ... Working experience in multiphysics simulation preferred * Knowledge of common electric motor ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric ... Working experience in multiphysics simulation preferred * Knowledge of common electric motor ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric ... Working experience in multiphysics simulation preferred * Knowledge of common electric motor ...

Provide computational fluid dynamics (CFD) simulations of electric motors, components & electric ... Working experience in multiphysics simulation preferred * Knowledge of common electric motor ...

Product Function Modeling, Simulation and Analysis - Impacts product design decisions through the utilization and/or interpretation of computational tools and methods that predict the capability of a ...

Product Function Modeling, Simulation and Analysis - Impacts product design decisions through the utilization and/or interpretation of computational tools and methods that predict the capability of a ...

Showing results 41-60

Computational Modeling Simulation Multiphysics information

What is computational modeling simulation multiphysics?

Computational modeling simulation multiphysics refers to the use of computer-based models to simulate and analyze systems that involve multiple interacting physical phenomena—such as fluid dynamics, heat transfer, electromagnetics, and structural mechanics—all at once. This approach allows researchers and engineers to predict complex real-world behavior, optimize designs, and reduce the need for expensive prototypes. Multiphysics simulations are widely used in industries like aerospace, automotive, energy, and biomedical engineering, where accurate modeling of coupled physical processes is critical.

What are common challenges faced by professionals in computational modeling simulation multiphysics, and how can they be addressed?

One of the main challenges in Computational Modeling Simulation Multiphysics roles is managing the complexity of integrating multiple physical phenomena, such as thermal, structural, and fluid dynamics, into a single simulation. This often requires a deep understanding of both the underlying physics and the numerical methods used by simulation software. Collaborating closely with domain experts and maintaining clear communication within multidisciplinary teams can help address these challenges. Additionally, staying updated with advances in simulation tools and best practices through continuous learning is key to overcoming technical hurdles and ensuring accurate results.

What are the key skills and qualifications needed to thrive as a computational modeling simulation multiphysics engineer, and why are they important?

A strong background in physics, engineering, mathematics, and computational science—typically with an advanced degree—is essential for a Computational Modeling Simulation Multiphysics Engineer. Proficiency in simulation software such as ANSYS, COMSOL Multiphysics, MATLAB, and programming languages like Python or C++ is commonly required, along with familiarity with high-performance computing environments. Analytical thinking, problem-solving skills, and effective communication set standout professionals apart in this field. These capabilities enable accurate modeling of complex physical phenomena, efficient collaboration, and successful project outcomes in research and industry settings.

What is the difference between Computational Modeling Simulation Multiphysics vs Computational Engineer?

AspectComputational Modeling Simulation MultiphysicsComputational Engineer
CredentialsTypically requires degrees in engineering, physics, or related fields; certifications in simulation software are commonSimilar educational background; often holds engineering degrees and software certifications
Work EnvironmentPrimarily in R&D labs, engineering firms, or manufacturing settings focusing on complex simulationsInvolved in product development, software development, or systems design in various industries
Industry UsageUsed in aerospace, automotive, energy, and manufacturing for advanced simulationsApplied across industries for designing, analyzing, and optimizing systems and products

While both roles involve computational skills and engineering principles, Computational Modeling Simulation Multiphysics specializes in complex, multi-physics simulations, whereas Computational Engineer focuses on designing and implementing computational solutions across various engineering projects.

What are popular job titles related to Computational Modeling Simulation Multiphysics jobs in Indiana?

For Computational Modeling Simulation Multiphysics jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Computational Modeling Simulation Multiphysics jobs in Indiana look for?

The top searched job categories for Computational Modeling Simulation Multiphysics jobs in Indiana are:

What cities in Indiana are hiring for Computational Modeling Simulation Multiphysics jobs?

Cities in Indiana with the most Computational Modeling Simulation Multiphysics job openings:

Infographic showing various Computational Modeling Simulation Multiphysics job openings in Indiana as of September 2026, with employment types broken down into 92% Full Time, and 8% Part Time. Highlights an 84% In-person, 8% Hybrid, and 8% Remote job distribution.

Structural and Dynamic Systems Tech Advisors - Analytical #IN1279

Columbus, IN • On-site

Cummins
Transportation Equipment Manufacturing • 10K+ employees

$135K - $146K/yr

Full-time

Posted 14 days ago


Cummins rating

8.2

Company rating: 8.2 out of 10

Based on 271 frontline employees who took The Breakroom Quiz


Job description

Utilize extensive knowledge of mechanical engineering principles to determine structural performance of components and systems in order to provide improvement recommendations. Determine the validity of the design to meet user requirements and provide design recommendation as needed. Obtain input and negotiate with Design, Thermal Sciences, Materials and Product Validation and deliver key structural performance parameters like motion, load, natural frequencies, stress, design margin, life, and sound power to Design and Product Validation. Make technical decisions in the area of structural design, such as materials and their processing as well as geometry, that impact structural performance of mechanical components and systems. Apply computer modeling processes including Matlab, Python, APDL ANSYS, FORTRAN, Excel, Windows/Linux operating systems and high performance computing hardware systems for complex technical problem solving and decision making. Utilize mechanical engineering tools and methods including ANSYS, FE-Safe, GT-Suite, modeFRONTIER and AVL Excite to provide guidance for processes that enable high quality decision making and predict the component's deformation, stresses, fatigue life and other factors. Apply Principles of Fatigue and Durability to determine life of mechanical components and systems via numerical modeling and physical measurements and evaluates component temperatures, natural frequencies, mode shapes, displacements, strains/stresses, wear and fatigue life to draw conclusions that influence design decisions. Utilize the Principles of Noise and Acoustics and the Principles of Dynamics and Vibration to evaluate both air and structure borne noise, sound power levels, sound quality, rigid and flexible body motion, velocities, accelerations, friction, and wear. Impact mechanical product design decisions to best meet stakeholder's requirements through the utilization and interpretation of numerical tools and methods that predict the performance of a mechanical component or system. Solve complex product problems using a process that protects the user, determines the assignable cause, implements data-based solutions, identifies systemic root causes, and recommends actions to prevent problem reoccurrence. Identify representation of a system or system element by using suitable analytical tools and techniques including Finite Element Analysis (FEA) Computational Fluid Dynamics (CFD), Design Optimization and Geometric Dimensioning and Tolerancing (GD&T) in order to derive knowledge about the real system. Define the strategy for modeling, simulation, and analysis of systems and system elements by considering specifics of a given situation or nature of the system of interest in order to derive insights for making quality decisions. Manage individual part life cycle including design, procurement, validation, production and retirement. Coach and mentor other engineers, project managers and cross-functional team members.

Cummins is an equal opportunity employer. Our policy is to provide equal employment opportunities to all qualified persons without regard to race, sex, color, disability, national origin, age, religion, union affiliation, sexual orientation, veteran status, citizenship, gender identity, or other status protected by law.

Start Date of Posting: 8/27/26
End Date of Posting:  9/14/26

Location: Columbus, IN

Position: ON SITE

*Annual USD Salary Minimum - Maximum 

$135,886 - $146,400

Positions require a Master's degree in Mechanical Engineering or related field and 3 years of experience as an Applied Mechanics, Mechanical or Systems Engineer or Technical Specialist, or related position. Alternatively, the employer will accept a Bachelor's Degree in Mechanical Engineering or related field and 6 years of experience as an Applied Mechanics, Mechanical or Systems Engineer or Technical Specialist, or related position. Experience to include: Computer modeling processes including Matlab, Python, APDL ANSYS, FORTRAN, Excel, Windows/Linux operating systems and high performance computing hardware systems; Mechanical engineering tools and methods including ANSYS, FE-Safe, GT-Suite, modeFRONTIER and AVL Excite; Principles of Fatigue and Durability; Principles of Noise and Acoustics; Principles of Dynamics and Vibration; Product problem solving; Finite Element Analysis (FEA), Computational Fluid Dynamics (CFD), Design Optimization and Geometric Dimensioning and Tolerancing (GD&T); Systems modeling and simulation; Part Life cycle management. 


What Cummins employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom


Cummins logo

About Cummins

Sourced by ZipRecruiter

Cummins Inc., headquartered in Columbus, IN, US, is a global power leader that designs, manufactures, and distributes numerous power products and systems. With its genesis from as early as 1919, the company readily serves diverse industries such as transportation, industrial, generator drive, or marine applications, among others. At the heart of Cummins' operations, its key product lineup encompasses diesel & natural gas engines, generator sets, engine components, and filtration, emission solutions, and electrical power generation systems. Cummins deeply embodies core values of integrity, respect for diversity, teamwork, performance excellence, and social responsibility - all of which dynamically fuel their mission 'Making people's lives better by powering a more prosperous world'.

Industry

Transportation equipment manufacturing

Company size

10,000+ Employees

Headquarters location

Columbus, IN, US

Year founded

1919