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Computational Modeling Simulation Multiphysics Jobs in Pittsburgh, PA

Rigorous multifidelity modeling-spanning conceptual architecture through EMTgrade simulation ... Multiphysics studies, ensuring cross tool alignment and fidelity across all study types.

... AI-based simulators. Originating from Bosch AI research in Pittsburgh, we are responsible for ... Strong background in math, statistics, computational modeling * 3+ years experiences in industrial ...

... simulation software, collaborating with experts to enhance performance and scalability across ... programming models like CUDA, HIP, SYCL, OpenMP, and other HPC frameworks • Profile solver ...

Computational Modeling Simulation Multiphysics information

See Pittsburgh, PA salary details

$37.9K

$98.3K

$139.8K

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

As of Aug 20, 2026, the average yearly pay for computational modeling simulation multiphysics in Pittsburgh, PA is $98,300.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,200.00 and $125,700.00 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 are popular job titles related to Computational Modeling Simulation Multiphysics jobs in Pittsburgh, PA?

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

What job categories do people searching Computational Modeling Simulation Multiphysics jobs in Pittsburgh, PA look for?

The top searched job categories for Computational Modeling Simulation Multiphysics jobs in Pittsburgh, PA are:

What cities near Pittsburgh, PA are hiring for Computational Modeling Simulation Multiphysics jobs?

Cities near Pittsburgh, PA with the most Computational Modeling Simulation Multiphysics job openings:

Infographic showing various Computational Modeling Simulation Multiphysics job openings in Pittsburgh, PA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 67% In-person, and 33% Remote job distribution, with an average salary of $98,300 per year, or $47.3 per hour.

Power System Modeling Principal Engineer

Nutanix

Moon Township, PA • On-site

$180 - $225/hr

Other

This job post has expired today. Applications are no longer accepted.


Job description

Eaton’s ES AMER HQ division is currently seeking a Power System Modeling Principal Engineer. This position will be based in Raleigh, NC or Pittsburgh, PA. We are offering relocation assistance and sponsorship support for candidates who reside within the U.S.The expected annual salary range for this role is $180,000 - $225000 a year. This position is also eligible for a variable incentive program.Please note the salary information shown above is a general guideline only. Salaries are based upon candidate skills, experience, and qualifications, as well as market and business considerations.Eaton’s Electrical Sector is shaping the future of intelligent power management for next generation datacenter power architectures. As facilities evolve toward converter dominated, DC centric, and highly integrated multidomain systems, system modeling becomes a critical decision-making pillar. Rigorous multifidelity modeling—spanning conceptual architecture through EMTgrade simulation—enables informed design choices, protection strategies, and holistic understanding of system behavior across diverse operating conditions.In this role, the Power Systems Modeling Principal Engineer will define, own, and advance the enterprise modeling strategy for DC distribution and converter driven architectures. You will guide the development of multidomain simulation frameworks, establish modeling governance, and ensure that model insights directly influence system architecture, requirements, design tradeoffs, and validation. The role works in close partnership with Chief Power System Engineers, Applications Engineering, System Architects, and Eaton’s Model Based Engineering (MBE) teams, driving alignment across programs and business units and supporting grid to chip system of systems analysis.What you’ll do:Modeling Strategy & Technical Leadership• Lead the definition, evolution, and governance of Eaton’s power systems modeling strategy across multifidelity levels (architecture, reduced order, system level, and EMT grade).• Define simulation structures and workflows integrating electrical, thermal, mechanical, and other multidomain interactions.Power System Study Development• Develop and own models for power system studies such as protection coordination, load flow, short circuit behavior, harmonics and power quality analysis, converter interactions, transient stability, dynamic response, resilience/blast radius analysis, and greenfield/brownfield datacenter evaluations.Simulation Toolchain Ownership• Build scalable model structures and reusable libraries using PSCAD and Simulink/Simscape Electrical as the primary environments for electrical system modeling.• Lead multitool modeling workflows using electrical system tools (PSSE, CYME, ETAP, DIgSILENT PowerFactory, etc.) and Modelica based or other specialized environments for thermal fluid, mechanical, and Multiphysics studies, ensuring cross tool alignment and fidelity across all study types.Architecture Integration & System Collaboration• Partner with System Architects and MBE teams to embed modeling insights into architecture selection, requirement definition, and design tradeoff decisions.• Translate application engineering needs into modeling structures, fidelity targets, test cases, and simulation plans.• Maintain traceability between modeling artifacts, architecture elements, and system requirements (aligning with MBSE practices).Cross Functional Alignment & Governance• Coordinate modeling activities across groups such as ERL, CDE, divisional engineering teams (UPS, switchgear, converters, transformers).• Promote model governance, documentation standards, reusable assets, and consistent modeling practices across programs.Templates, Workflow Scalability & RealTime Validation• Develop scalable simulation templates, standardized workflows, and reusable modeling patterns to accelerate adoption across the organization.• Support real-time and hardware in the loop validation using platforms such as OpalRT, Typhoon HIL, and ETDS when required for system level verification.Qualifications:Basic Qualifications:Bachelor’s degree in Electrical Engineering, Power Systems, Power Electronics, from an accredited institutionMinimum 15 years of experience in power systems modeling such as: EMT simulation, system-level analysis in converter-dominated architectures.Preferred Qualifications:Master’s or PhD in Power Systems, Power Electronics from an accredited institutionExperience using PSCAD and Simulink/Simscape Electrical as primary modeling environments for power system and EMT simulations.Experience with DC distribution systems, converter behavior, protection strategies, and grid/microgrid interconnection principles.Experience with other power system simulation tools such as CYME, PSSE, ETAP, DIgSILENT PowerFactory.Experience with HIL platforms such as OpalRT, Typhoon HIL, or ETDS for real-time model-based validation.Skills:Position Criteria:Strong communication and collaboration skills across multidisciplinary engineering environments.Prior experience influencing modeling direction, standards, or governance across multiple engineering groups.We are committed to ensuring equal employment opportunities for job applicants and employees. Our recruitment processes use balanced selection criteria and avoid unlawful discrimination against applicants on the basis of their age, colour, disability, marital status, national origin, gender, gender identity, genetic information, race or racial origin, religion, sexual orientation or any other status protected or required by law. #J-18808-Ljbffr