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Simulation Engineer Intern Jobs in Vernon, CT (NOW HIRING)

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Simulation Engineer Intern information

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How much do simulation engineer intern jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for simulation engineer intern in Vernon, CT is $19.30, according to ZipRecruiter salary data. Most workers in this role earn between $16.11 and $20.91 per hour, depending on experience, location, and employer.

What does a simulation engineer intern do?

A Simulation Engineer Intern assists in creating and running computer-based models to predict how systems or products will perform in real-world scenarios. They typically work under the guidance of senior engineers, helping to analyze data, optimize designs, and solve engineering problems through simulations. This role often involves using specialized software such as MATLAB, ANSYS, or Simulink, and requires strong analytical and problem-solving skills. Simulation Engineer Interns gain valuable experience in applying theoretical knowledge to practical engineering challenges.

What types of projects and tasks can a simulation engineer intern expect to work on during their internship?

As a Simulation Engineer Intern, you can expect to work on a variety of projects that involve creating, running, and analyzing simulations to support product development or research. Typical tasks may include building simulation models using specialized software, validating simulation results against real-world data, and preparing reports for engineering teams. Interns often collaborate closely with senior engineers and cross-functional teams, such as design or testing, to ensure simulations align with project goals. This hands-on experience not only sharpens your technical skills but also provides valuable insights into the collaborative nature of engineering projects and the role of simulation in the product lifecycle.

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

To thrive as a Simulation Engineer Intern, you need a solid background in engineering principles, mathematics, and physics, often supported by current enrollment in a relevant degree program. Familiarity with simulation software such as MATLAB, Simulink, or ANSYS, along with basic programming skills in languages like Python or C++, is typically required. Strong problem-solving abilities, attention to detail, and collaboration skills are essential soft skills for success in this role. These competencies are crucial for accurately modeling complex systems, analyzing results, and contributing effectively to engineering teams.

What is the difference between Simulation Engineer Intern vs Simulation Engineer?

AspectSimulation Engineer InternSimulation Engineer
Required CredentialsTypically pursuing a bachelor's or master's in engineering, computer science, or related fieldsBachelor's or higher degree in engineering, computer science, or related disciplines; often with some professional experience
Work EnvironmentInternship setting, often part-time or summer roles within engineering teamsFull-time professional role within engineering or R&D teams
Employer & Industry UsageUsed by companies in automotive, aerospace, electronics, and manufacturing sectors for training and developmentUsed in similar industries for product development, testing, and simulation tasks

The main difference between a Simulation Engineer Intern and a Simulation Engineer is experience level and responsibility. Interns are typically students gaining practical experience, while Simulation Engineers are full-time professionals responsible for designing and analyzing simulations to support product development.

Infographic showing various Simulation Engineer Intern job openings in Vernon, CT as of June 2026, with employment types broken down into 13% Internship, 65% Full Time, 18% Part Time, 2% Contract, and 2% Nights. Highlights an 95% Physical, 2% Hybrid, and 3% Remote job distribution, with an average salary of $40,154 per year, or $19.3 per hour.

Simulation Engineering Intern - Summer 2027 | LiquidPiston

Suffield, CT • On-site

LiquidPiston
Motor Vehicle Manufacturing • 11 - 50 employees

$16.25 - $21.25/hr

Other

Posted yesterday

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Job description

Simulation Engineering Intern - Summer 2027 | LiquidPiston
Location: Suffield, CT
Schedule: Full-time, onsite 5 days/week
Employment Type: Summer 2027 Internship
Compensation: Paid internship
Relocation: Relocation assistance is not available
Why LiquidPiston?
What if you could use simulation to help develop an entirely new kind of engine?
LiquidPiston is developing compact, high-performance rotary engines based on a novel thermodynamic cycle for applications across defense, aerospace, commercial power, and advanced propulsion.
As a Simulation Engineering Intern, you won't be working on theoretical exercises that sit on a shelf. You'll use modeling, simulation, programming, and engineering analysis to help answer real questions about how our engines perform and then compare those predictions against physical test data. You'll work alongside engineers developing and testing next-generation propulsion technology, gaining experience seeing a simulation move from a model on a computer to hardware on the test stand.
The Opportunity
We're looking for an engineering student who enjoys figuring out why something behaves the way it does.This internship is centered around computational engineering: building models, running simulations, analyzing results, improving predictions, and turning data into useful engineering decisions.
Depending on your background and the needs of the team, you may work on areas such as engine performance, thermodynamics, heat transfer, fluid behavior, structural response, or system-level modeling.You'll have the opportunity to take ownership of meaningful technical work while learning from engineers working across mechanical design, combustion, controls, and engine testing.
What You'll Do
Model Real Engineering Problems
  • Develop and modify simulation models used to evaluate engine and propulsion-system behavior.
  • Model performance across different operating conditions and design configurations.
  • Apply engineering fundamentals to understand thermodynamic, thermal, fluid, structural, or system-level behavior.
  • Run simulations, evaluate outputs, and identify trends or unexpected results.
  • Use engineering judgment to determine whether simulation results make physical sense.
  • Explore design alternatives and help evaluate performance tradeoffs.
Turn Data Into Answers
  • Analyze simulation and experimental datasets to identify trends, relationships, and areas for improvement.
  • Compare simulation predictions against physical test results.
  • Investigate differences between predicted and measured behavior.
  • Help refine models based on what the test data is telling us.Create clear plots, calculations, and summaries that help engineers make decisions.
Improve the Way We Simulate
  • Write scripts and tools to automate repetitive simulation and data-processing tasks.
  • Develop Python, MATLAB, or similar workflows for analysis and visualization.
  • Help organize, process, and interpret large engineering datasets.
  • Look for opportunities to make simulation workflows faster, more repeatable, and easier to use.
  • Build tools that help engineers spend less time processing data and more time understanding it.
Work Across Engineering Teams
  • Collaborate with mechanical, combustion, controls, and test engineers.
  • Help connect simulation results with physical hardware and test programs.
  • Participate in technical discussions and design reviews.
  • Document modeling approaches, assumptions, methods, and conclusions.
  • Present findings and explain technical results to engineers and other team members.
Qualifications
  • Currently pursuing a Bachelor's or Master's degree in Mechanical Engineering, Aerospace Engineering, or a related engineering field.
  • Strong interest in simulation, computational engineering, modeling, or engineering analysis.
  • Solid understanding of engineering fundamentals such as thermodynamics, heat transfer, fluid mechanics, or structural mechanics.
  • Strong analytical and problem-solving skills.
  • Comfortable working with technical data and drawing conclusions from results.
  • Curious and willing to dig into problems rather than accepting unexpected results at face value.
  • Detail-oriented with a methodical approach to engineering work.
  • Able to work independently while collaborating effectively with a multidisciplinary team.
  • Strong written and verbal communication skills.
Requirements
  • Available to work full-time onsite in Suffield, CT, 5 days per week during Summer 2027.
  • Experience using at least one engineering simulation or analysis tool such as ANSYS, MATLAB/Simulink, GT-Power, COMSOL, Abaqus, STAR-CCM+, Fluent, or a comparable tool.
  • Programming or scripting experience with Python, MATLAB, C++, or a similar language.
  • Ability to analyze and interpret simulation or engineering data.
  • Ability to clearly document technical work, assumptions, methods, and results.
  • Ability to learn new engineering software and computational methods quickly.
  • Must understand fundamental operating principles of internal combustion engines.
Our Culture
At LiquidPiston, we challenge convention and solve hard problems. We move fast, think boldly, and iterate quickly. Our team thrives on collaboration, creativity, and resilience. We take calculated risks and believe that every setback is a steppingstone toward breakthrough innovation.
Equal Opportunity Employer
LiquidPiston, Inc. is proud to be an Equal Opportunity Employer. All qualified applicants will receive consideration for employment regardless of race, color, religion, gender, sexual orientation, gender identity, national origin, or veteran status, and will not be discriminated against on the basis of disability.
All offers of employment at LiquidPiston are contingent upon the successful completion of a pre-employment background check, drug screening and credit check.

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