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Computational Modeling Simulation Multiphysics Jobs in Naples, FL

Computational Modeling Simulation Multiphysics information

See Naples, FL salary details

$36.7K

$95.4K

$135.6K

How much do computational modeling simulation multiphysics jobs pay per year?

As of Sep 10, 2026, the average yearly pay for computational modeling simulation multiphysics in Naples, FL is $95,364.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,900.00 and $122,000.00 per year, depending on experience, location, and employer.

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 job categories do people searching Computational Modeling Simulation Multiphysics jobs in Naples, FL look for?

The top searched job categories for Computational Modeling Simulation Multiphysics jobs in Naples, FL are:

What cities near Naples, FL are hiring for Computational Modeling Simulation Multiphysics jobs?

Cities near Naples, FL with the most Computational Modeling Simulation Multiphysics job openings:

Infographic showing various Computational Modeling Simulation Multiphysics job openings in Naples, FL as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $95,364 per year, or $45.8 per hour.

Senior Systems Engineer - R&D, Energy Storage

Bonita Springs, FL • On-site

$98K - $134K/yr

Full-time

Medical, Dental, Vision, Life, PTO

Re-posted 17 days ago


Job description

e2Companies is seeking a Senior Systems Engineer to join the Research and Development team to support the advancement of next generation energy storage, high voltage power infrastructure, and integrated generation technologies. This role will work closely with senior technical leadership to support system architecture development, battery and protection strategy design, high voltage testing methodologies, and proprietary control and modeling platforms. The Senior Systems Engineer will contribute to both theoretical research and practical implementation, ensuring scalable system design, validation rigor, and long-term technical continuity. The ideal candidate brings strong academic grounding in power systems or electrochemical systems, combined with hands-on laboratory, modeling, and software development experience, and demonstrates readiness to assume increasing technical ownership within a growth-stage innovation environment.
This position requires full-time, on-site employment at our Bonita Springs, Florida headquarters. Relocation assistance is available for qualified candidates willing relocate to Southwest Florida.
RESPONSIBILITIES
Research and System Architecture
  • Lead and support research and development activities related to battery systems, high voltage insulation systems, and grid-interactive power architectures.
  • Evaluate system components and recommend architectures, formulations, and design modifications to meet product performance, safety, and lifecycle requirements.
  • Evaluate high energy active materials and cell architectures, integrating material selection and formulation into system-level performance objectives.
  • Conduct ongoing technical literature research to inform material selection, degradation modeling, and system design strategies.
  • Engage with suppliers and technology partners to evaluate emerging materials, components, and system integration strategies.

Battery and Laboratory Development
  • Specify and test prototype cells or subsystems, quantitatively analyzing performance to support design decisions.
  • Define, validate, and standardize laboratory test procedures, equipment configurations, and experimental protocols.
  • Design and execute laboratory validation programs including insulation testing and analysis, electromagnetic compatibility evaluation, and cycle life testing.
  • Apply diagnostics, failure mode, and contingency analysis to identify root causes of performance limitations and generate technically sound corrective solutions.
  • Champion environmental health and safety standards within laboratory and validation environments.

Modeling, Software, & Controls
  • Perform modeling and simulation of power systems, transient events, protection coordination, and degradation mechanisms using MATLAB or equivalent analytical tools.
  • Develop and maintain engineering software tools and internal platforms in C# to support system modeling, data analysis, automation, and algorithm implementation.
  • Contribute to control logic development and system-level algorithm design for energy storage and distributed generation platforms.
  • Collaboration, Leadership & Governance
  • Collaborate with cross-functional engineering and manufacturing teams to translate research findings into deployable, production-ready systems.
  • Mentor laboratory technicians and junior engineers to ensure high quality execution and technical understanding of experimental work.
  • Support technical documentation, validation reporting, intellectual property development, and structured knowledge transfer processes.
  • Present research findings and technical recommendations to executive leadership and internal stakeholders.
  • Other duties as assigned.

BASIC QUALIFICATIONS (MUST-HAVE)
  • Master's or PhD in Electrical Engineering, Power Systems, Energy Systems, Electrochemical Engineering, or related discipline.
  • 8+ years of progressive experience in power systems, power electronics, energy storage, or related infrastructure environments.
  • Demonstrated experience in laboratory testing, system validation, and performance modeling within an industrial R&D setting.
  • Strong understanding of insulation systems, transient behavior, protection strategies, and degradation mechanisms.
  • Professional experience developing engineering applications or analytical tools in C#.
  • Experience with MATLAB or similar modeling and simulation platforms.
  • Demonstrated ability to design experiments that produce clear, data-driven outcomes supporting engineering decisions.
  • Strong analytical reasoning, structured documentation practices, and ability to operate with high technical accountability.

PREFERRED QUALIFICATIONS (NICE-TO-HAVE)
  • Experience with lithium-based battery systems and battery management architectures.
  • Background in electromagnetic compatibility testing or high transient environments.
  • Experience with distributed generation systems, microgrids, or grid modernization initiatives.
  • Exposure to computational electromagnetic modeling or advanced power system simulation tools.
  • Experience contributing to patent development or proprietary technology platforms.

WORK ENVIRONMENT AND PHYSICAL REQUIREMENTS
  • Work is performed in a combination of office, laboratory, manufacturing, and limited field environments.
  • Occasional exposure to high voltage equipment, battery modules, switchgear, and laboratory testing apparatus.
  • Ability to stand, walk, bend, and use hands and arms for extended periods during testing and validation activities.
  • Ability to safely work around energized systems while following all required safety procedures and personal protective equipment standards.
  • Compliance with company safety policies, OSHA requirements, and applicable electrical codes and standards.

HERE'S WHAT YOU GET
  • Competitive compensation aligned with experience and impact
  • PTO and paid sick time to support work-life balance
  • Comprehensive medical, dental, vision, and life insurance coverage
  • Equity participation through the Employee Incentive Program
  • 8 Paid Federal Holidays + "eHappy Days" (additional company-paid days off, announced at the start of each year)
  • Childcare assistance up to $300 per month
  • The opportunity to grow with a rapidly scaling energy and infrastructure company
  • A performance-driven, team-oriented culture with regular events and e2 for Good community initiatives

e2Companies LLC is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability, or protected veteran status.