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Remote Ansys Simulation Jobs in Florida (NOW HIRING)

Remote Ansys Simulation information

What are the key skills and qualifications needed to thrive as a Remote Ansys Simulation Engineer, and why are they important?

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 a Remote Ansys Simulation job?

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 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 cities in Florida are hiring for Remote Ansys Simulation jobs? Cities in Florida with the most Remote Ansys Simulation job openings:

Fuel Development Lead - TRISO

AMPERA INC

Palm Beach Gardens, FL • On-site, Remote

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 12 days ago


Job description

Benefits:
  • 401(k)
  • 401(k) matching
  • Competitive salary
  • Dental insurance
  • Paid time off
  • Vision insurance
  • Donation matching
  • Employee discounts
  • Health insurance
  • Opportunity for advancement
  • Wellness resources

Fuel Development Lead (TRISO & Liquid Metal Jetting Integration)

Location: Palm Beach Gardens, FL
Employment Type: Full-time, Exempt
About AMPERA

AMPERA is redefining clean, sovereign energy with compact, ultra-safe nuclear systems that power AI, industry, and defense with zero emissions and unmatched reliability. Our modular micro-reactors combine the best of fusion and fission to deliver scalable, deployable, and inherently safe energy anywhere from AI data centers to remote or defense operations.
As a fast-growing company, AMPERA blends the agility of a startup with the ambition of a global energy innovator. Joining us means becoming part of a bold mission to revolutionize how the world generates power through advanced nuclear design, next-generation manufacturing, and materials innovation.
Position Overview

We are seeking a highly experienced Fuel Development Lead with a strong background in nuclear materials, TRISO fuel design, and advanced manufacturing integration. This individual will lead the development of AMPERAs next-generation fuel systems that power our compact micro-reactors including the integration of Liquid Metal Jetting (LMJ) additive manufacturing techniques for precision fuel fabrication.
The ideal candidate brings deep expertise in nuclear fuel engineering and a passion for translating research into scalable, manufacturable solutions that redefine how clean nuclear power is produced and delivered.
Key Responsibilities

  • Lead R&D for TRISO-based fuel forms optimized for AMPERAs hybrid reactor systems.
  • Develop material specifications, fuel geometries, and coating processes compatible with Liquid Metal Jetting manufacturing.
  • Collaborate with additive manufacturing and materials science teams to optimize print parameters, sintering, and encapsulation techniques.
  • Conduct fuel performance modeling, irradiation testing, and post-irradiation evaluations (PIE).
  • Define QA/QC protocols, safety standards, and regulatory documentation aligned with NRC and DOE guidelines.
  • Evaluate new material candidates (ceramic matrices, refractory metals, moderators) for improved performance and longevity.
  • Lead supplier engagement, academic collaborations, and R&D partnerships related to fuel development.
  • Contribute to reactor physics models and neutronics simulations by providing validated fuel data.
  • Provide technical mentorship to fuel engineers and coordinate cross-disciplinary design reviews.

Qualifications

  • Ph.D. or M.S. in Nuclear Engineering, Materials Science, or related discipline.
  • 8+ years of experience in nuclear fuel design, TRISO or advanced fuel R&D, or irradiation testing.
  • Deep knowledge of nuclear materials, fuel cycle design, and irradiation behavior.
  • Experience with additive manufacturing, particularly metal or ceramic printing methods.
  • Familiarity with neutronics and thermal analysis tools (MCNP, SCALE, COMSOL, ANSYS, etc.).
  • Strong understanding of NRC/DOE fuel qualification processes and safety standards.
  • Proven leadership in multidisciplinary engineering environments.
  • U.S. citizenship or eligibility for security clearance may be required.
What We Offer

  • Competitive salary
  • Comprehensive benefits package including healthcare, dental, vision, STD, LTD, Life/AD&D and 401(k).
  • Opportunity to pioneer advanced nuclear fuel technologies driving the next generation of clean energy.
  • Collaborative, mission-driven environment that fosters technical excellence and innovation.
  • Career advancement potential as AMPERA expands its fuel development and reactor manufacturing programs.