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Remote Ansys Simulation Jobs in Illinois (NOW HIRING)

Remote Ansys Simulation information

What is a remote Ansys simulation?

A Remote Ansys Simulation job involves using Ansys software to perform engineering simulations such as structural, thermal, fluid dynamics, or electromagnetic analyses from a remote location. Professionals in this role set up, run, and interpret simulation models to help design and optimize products or processes for clients or employers. The remote aspect allows for flexibility in work location, relying on cloud computing or remote desktop solutions to access high-performance computing resources. This job typically requires a background in engineering, familiarity with Ansys tools, and strong analytical skills.

What are the key skills and qualifications needed to thrive as a remote Ansys simulation engineer?

To thrive as a Remote Ansys Simulation Engineer, you need a strong background in engineering principles, finite element analysis (FEA), and proficiency in simulation modeling, typically supported by a relevant degree in mechanical, aerospace, or civil engineering. Expertise in using Ansys software suites, familiarity with CAD tools, and sometimes professional certifications like Ansys Certified Expert are highly valued. Excellent problem-solving, communication, and self-management skills help you effectively collaborate and deliver results in a remote work environment. These skills and tools are essential for producing accurate simulations, ensuring project efficiency, and maintaining effective remote teamwork.

What are some common challenges faced when working remotely as an Ansys simulation engineer, and how can they be addressed?

Remote Ansys Simulation Engineers frequently encounter challenges related to collaboration, communication, and access to high-performance computing resources. Since simulation projects often require close coordination with product design, testing, and manufacturing teams, it’s important to proactively schedule regular video meetings and use collaborative platforms to stay aligned. Additionally, ensuring a stable internet connection and secure remote access to company servers or cloud-based simulation environments can help overcome technical barriers. Building strong virtual relationships with colleagues and seeking out mentorship or training opportunities online can further enhance both workflow efficiency and professional growth.

What is the difference between Remote Ansys Simulation vs Remote CAD Engineer?

AspectRemote Ansys SimulationRemote CAD Engineer
Required CredentialsEngineering degree, Ansys certificationEngineering or design degree, CAD software proficiency
Work EnvironmentRemote, engineering labs, simulation centersRemote, design studios, client sites
Industry UsageEngineering, aerospace, automotive, product designManufacturing, product development, architecture
Common Search IntentSimulation, finite element analysis, engineering modeling3D modeling, drafting, product design

Remote Ansys Simulation specialists focus on performing engineering simulations and analysis using Ansys software, often requiring a background in engineering and certifications. In contrast, Remote CAD Engineers primarily work on creating and modifying 3D models and drawings using CAD tools. While both roles are remote and industry-related, their core tasks and skill sets differ, with Ansys Simulation emphasizing analysis and testing, and CAD Engineering focusing on design and drafting.

What are the most commonly searched types of Ansys Simulation jobs in Illinois?

The most popular types of Ansys Simulation jobs in Illinois are:

What job categories do people searching Remote Ansys Simulation jobs in Illinois look for?

The top searched job categories for Remote Ansys Simulation jobs in Illinois are:

What cities in Illinois are hiring for Remote Ansys Simulation jobs?

Cities in Illinois with the most Remote Ansys Simulation job openings:

Thermal Structural Engineer

Nano Nuclear Energy Inc

Naperville, IL • On-site, Remote

Full-time

Posted 4 days ago


Job description

About NANO Nuclear Energy

NANO Nuclear Energy is an advanced nuclear technology company developing next-generation microreactor systems that will help transform the future of clean, reliable, and resilient energy. Through the development of its KRONOS MMR Energy System, LOKI MMR Energy System, and ZEUS Solid Core Battery Reactor-advanced high-temperature gas-cooled reactor (HTGR) technologies designed for applications including data centers, industrial operations, remote communities, and critical infrastructure-the company is advancing innovative nuclear solutions for a rapidly evolving energy landscape. NANO Nuclear has also submitted a Construction Permit Application (CPA) to the U.S. Nuclear Regulatory Commission (NRC) to support the planned deployment of the KRONOS MMR at the University of Illinois Urbana-Champaign (UIUC), representing a significant milestone toward the commercialization of advanced nuclear technology. 

Joining NANO Nuclear means contributing to pioneering technologies with the potential to redefine the nuclear industry while working alongside experts in engineering, science, and innovation. Our team operates in a collaborative, entrepreneurial environment where employees are encouraged to solve challenging technical problems and advance the materials technologies needed for next-generation energy systems. 

Position Overview 

NANO Nuclear Energyis seeking a Thermal Structural Engineer to support the design, analysis, anddevelopment of advanced microreactor systems. The successful candidate willcontribute to thermal and structural evaluations of reactor components andsupporting systems, including heat transfer analysis, mechanical designevaluations, finite element analysis (FEA), and engineering documentation. Moreexperienced candidates are encouraged to apply and may take on expandedtechnical ownership, mentoring responsibilities, and leadership of analysisactivities.

Key Responsibilities 

  • Perform thermal and structural analyses supporting the design and development of advanced microreactor systems.
  • Conduct heat transfer, thermal stress, and mechanical performance evaluations for reactor components and subsystems.
  • Develop and execute engineering analyses using analytical methods and simulation tools such as ANSYS, COMSOL, Abaqus, or equivalent.
  • Support finite element analysis (FEA), computational modeling, and design optimization activities.
  • Evaluate components under steady-state, transient, and accident-condition operating scenarios.
  • Support mechanical design activities including component sizing, material selection, and design verification.
  • Prepare engineering calculations, technical reports, design documentation, and presentations.
  • Collaborate with nuclear, mechanical, materials, systems, and licensing teams.
  • Participate in design reviews, testing activities, and engineering problem-solving efforts.
  • Apply engineering principles and industry standards to support safe and reliable reactor designs. 

Qualifications

  • Bachelor's degree in Mechanical Engineering, Nuclear Engineering, Aerospace Engineering, Chemical Engineering, or a related engineering discipline required; Master's degree preferred, with flexibility on years of experience.
  • 5+ years of engineering experience.
  • Strong understanding of heat transfer, thermodynamics, fluid mechanics, and mechanics of materials.
  • Experience with thermal-fluid systems, structural analysis, pressure vessels, high-temperature components, or similarly complex engineering systems.
  • Strong computational analysis and engineering simulation experience.
  • Experience with ANSYS, COMSOL, Abaqus, or similar advanced engineering analysis tools.
  • Experience with MATLAB, Python, or other modeling and programming tools is valuable, particularly when used for engineering analysis and simulation. The relevance of this experience will be evaluated based on how these tools have been used in practice.
  • Ability to communicate complex technical information clearly through written reports, presentations, and technical discussions.
  • Ability to work collaboratively within a multidisciplinary engineering environment.
  • Nuclear experience is highly preferred but not required. Relevant experience from aerospace, oil & gas, energy, defense, or other technically complex industries will be considered.
  • Experience with advanced reactor systems, HTGRs, microreactors, or other nuclear technologies is a plus.
  • Familiarity with ASME codes and standards is preferred.
  • Experience supporting technical documentation for regulatory review is a plus.

 What We Offer 

  • The opportunity to develop materials solutions for next-generation nuclear technology.
  • A collaborative engineering culture focused on innovation and technical excellence. 
  • Opportunities for mentorship, professional growth, and technical leadership. 
  • Competitive compensation and benefits package. 
  • The opportunity to contribute to a cleaner, more reliable energy future.  

Salary range for this position is:

Level I - II $85,000- $120,000

Level III: $120,000- $145,000;

Level IV: $145,000- 170,000;

Level V: $170,000- $195,000;

Level VI: $185,000- $215,000

This job description is intended to provide a general overview of the role and may encompass responsibilities across multiple functions or levels within the organization. The scope of the position, title, responsibilities and compensation will be determined based on the specific needs of the business, as well as the candidate's experience, qualifications and level of expertise. The salary range provided, where applicable, is intentionally broad and not indicative of a single level or final compensation offer. Actual compensation will be determined based on relevant experience, skills, qualifications, internal equity and other applicable factors.

Equal Opportunity Statement 

NANO Nuclear Energy is an equal opportunity employer committed to fostering a diverse and inclusive workplace. We encourage individuals with diverse backgrounds, experiences, and perspectives to apply.