NuScale Power

Fuels Engineer 4

NuScale Power  •  United States (Onsite)  •  3 hours ago
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Job Description

NOTE: THIS POSITION IS AVAILABLE FOR REMOTE WORK FOR INDIVIDUALS LIVING BEYOND A 30 MILE RADIUS OF A PHYSICAL NUSCALE OFFICE BUT WITHIN THE CONTIGUOUS UNITED STATES.

POSITION SUMMARY: The Fuels Engineer 4 is a senior technical contributor within the Nuclear Methods group of the Nuclear Fuels department. The position reports to the Manager, Nuclear Methods and plays a critical role at the intersection of fuel performance analysis, neutronics, transient analysis, and multi‑physics method development. This engineer is a recognized technical authority in fuel thermal‑mechanical (TM) analysis and contributes substantively to the development, qualification, and deployment of advanced methods used for designing and analyzing next‑generation light‑water reactor fuel and supporting reload safety analysis. This role requires deep subject‑matter expertise, strong engineering judgment, and the ability to collaborate across Thermal‑Hydraulics, Nuclear Design, Code Development, Engineering, and Operations functions. The Fuels Engineer 4 contributes to strategic technical direction, licensing basis development, and consistent, high‑quality analysis outputs that underpin the safety and performance of the NuScale reactor design.

ESSENTIAL DUTIES AND RESPONSIBILITIES:

  • Serve as a primary technical authority for fuel TM analysis methods, including gap conductance, cladding strain, fatigue, creep collapse, pellet‑cladding interaction, and performance margins.
  • Exercise in-depth knowledge of industry best-practices and state-of-the-art advancements to drive development, qualification, and application of next‑generation fuel performance modeling approaches. Evaluate and incorporate relevant industry advancements, benchmark data, and vendor methodologies into NuScale’s TM framework.
  • Support development of interfacing methods such as neutronics, subchannel analysis, and system thermal-hydraulics.
  • Perform safety analysis calculations using industry-standard and advanced fuel thermal-mechanical simulation tools. Independently evaluate limits and margins for normal operation and DBEs where fuel performance plays a role.
  • Lead planning and execution of software benchmarking, qualification, and QA documentation.
  • Integrate fuel thermal-mechanical methods with other multi-physics modeling and methods development for comprehensive advanced fuels engineering methods.
  • Apply knowledge of next generation LWR fuel designs, modeling strategies, and analysis methods to support product and service strategy development.
  • Work collaboratively within the Nuclear Fuels organization to ensure fuel‑related inputs and outputs are integrated correctly across methodologies. Coordinate interface definition and change control for TM inputs/outputs, shared models, and cross‑discipline analysis frameworks.
  • Provide technical leadership within Nuclear Methods; mentor junior engineers and lead complex analysis tasks in areas of expertise.
  • Contribute to technical development of licensing technical or topical reports, license applications, and other licensing documentation, and participate in licensing interactions including interface with the government regulator in areas of technical responsibility.
  • Prepare and verify engineering reports, calculations, studies, system descriptions, requirement specifications, and other design documents with particular emphasis on fuel performance and neutronics. Work on tasks in multiple and diverse areas.
  • Develop innovative solutions to multifaceted technical challenges requiring original thinking, multi‑physics reasoning, and the ability to navigate uncertainty. Independently frame problems, propose solution strategies, and execute analyses with minimal oversight.
  • Perform other duties as assigned. Flexibly support changing organizational priorities, including urgent analysis needs, cross‑functional reviews, technical troubleshooting, or special studies.

CORE COMPETENCIES: To perform the job successfully, the individual should demonstrate competencies in performing the essential functions of this position by performing satisfactorily in each of these competencies.

  • Problem solving: Identifies and resolves problems in a timely manner, gathers and reviews information appropriately. Uses own judgment and acts independently; seeks input from other team members as appropriate for complex or sensitive situations.
  • Oral/written communication: Listens carefully and speaks clearly and professionally in all situations. Edits work for accuracy and clarity. Is able to create, read, and interpret complex written information. Ability to develop strong interpersonal networks within the organization.
  • Planning/organizing: Prioritizes and plans work activities, organizes personal and project timelines and deadlines, tracks project timelines and deadlines, and uses time efficiently.
  • Adaptability: Adapts to changes in the work environment, manages competing demands and is able to deal with frequent interruptions, changes, delays, or unexpected events.
  • Dependability: Consistently on time and at work, responds to management expectations and solicits feedback to improve performance.
  • Team Building: Capable of developing strong interpersonal networks and trust within the organization.
  • Safety Culture: Adheres to the NuScale Safety culture and is expected to model safe behavior and influence peers to meet high standards.
  • Quality Assurance: Commits to the understanding and implementation of quality assurance regulations, standards and guidelines of 10 CFR 50 Appendix B, 10 CFR 21, and NQA-1.

MINIMUM SKILLS, QUALIFICATIONS AND ABILITIES:

  • Education: A minimum of B.S. degree in Nuclear, Mechanical, Chemical Engineering (or related discipline) from a four-year accredited college or university is required. Advanced degree in Nuclear, Mechanical, or Chemical Engineering is desirable.
  • Experience: A minimum of 8 years of full-time, directly relevant engineering experience is required. Demonstrated experience in implementing engineering design processes for fuel thermal-mechanical analysis and fuel design is required. Additional experience with neutronics, transient analysis, and related safety analysis is preferred. Experience in core design and neutronics preferred.
  • Industry Requirements: Eligible to work under Department of Energy 10 CFR Part 810.

PHYSICAL DEMANDS: The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

  • Ability to understand and communicate clearly using a phone, personal interaction, and computers.
  • Ability to learn new job functions and comprehend and understand new concepts quickly and apply them accurately in a rapidly evolving environment.
  • The employee frequently is required; to sit and stand; walk; bend, use hands to operate office equipment; and reach with hands and arms.
  • Ability to travel nationally and locally using common forms of transportation.

Disclaimer: Employee(s) must perform the essential duties and responsibilities with or without reasonable accommodation efficiently and accurately without causing significant safety threat to self or others. The above statements are intended to describe the general nature and level of work being performed by employee(s) assigned to this classification. They are not intended to be construed as an exhaustive list of all responsibilities, duties and/or skills required of all employees in this classification.

NuScale Power, LLC is an equal opportunity employer and does not discriminate against otherwise qualified applicants on the basis of race, color, creed, religion, ancestry, age, sex, marital status, national origin, disability or handicap, or veteran status.

Pay and Benefits:

The target pay range for this position is $127,104 - $153,401 annually. The full pay range is $113,955 - $178,237 annually

At NuScale, compensation decisions are determined using factors such as relevant job-related skills, full-time working experience, education and training, equity within the department.

For information on employee benefits, please visit our Careers Overview page: Employee Benefits | NuScale Power

NuScale Power

About NuScale Power

NuScale has designed a new kind of nuclear power plant that is smarter, safer, cleaner, and more cost competitive than the large gigawatt nuclear power plants of the past.

At the heart of the NuScale power plant is the NuScale Power Module™ (NPM), a small modular reactor (SMR) that brings together traditional components—the reactor vessel, steam generator, pressurizer, and containment—into a single, simplified, and fully factory-fabricated unit. Each NPM can produce 77 megawatts of electricity (MWe), and one NuScale plant can house up to 12 NPMs for a total of 924 MWe (gross). This scalability feature is unique to NuScale and allows for customization of facility output to match demand and project economics.

NuScale has achieved a paradigm shift in the level of safety of a nuclear power plant facility—safety comes first, second to none. NuScale’s Triple Crown for Nuclear Plant Safety™ design ensures that on loss of all electricity to the power station, an undesirable situation for other nuclear plant designs, each NPM will safely shut down and self-cool, indefinitely, with no need for operator or computer action, AC or DC power, or additional water. This capability is a first for commercial nuclear power.

Learn about NuScale’s work and our mission to improve the quality of life for all humankind by continuously improving nuclear power at www.nuscalepower.com

Industry
Energy & Utilities
Company Size
201-500 employees
Headquarters
Corvallis, OR
Year Founded
2007
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