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Senior Engineer (Plant Thermal Hydraulics Validations)

Support verification, validation, and uncertainty quantification for plant-scale thermal-hydraulic analysis tools in complex reactor systems. Collaborate with multidisciplinary teams to analyze experimental data and ensure regulatory readiness for next-generation energy technologies.

  • Remote
  • Canada
  • Posted Aug 3, 2026
  • 1 position

Job summary

This position is listed on behalf of a partner company, who manages all applications and next steps. Our partner is looking for a Senior Engineer (Plant Thermal Hydraulics Validations) based in Canada. This role offers the opportunity to contribute to the advancement of next-generation energy technologies through advanced thermal-hydraulic modeling and validation activities. The Senior Engineer will support critical verification, validation, and uncertainty quantification efforts for plant-scale analysis tools used in complex reactor systems. Working at the intersection of simulation, experimentation, and engineering design, this position plays a key role in improving model accuracy, reliability, and regulatory readiness. You will collaborate with multidisciplinary engineering teams to evaluate computational models, analyze experimental data, and strengthen safety and performance assessments. This opportunity is ideal for an experienced thermal-hydraulics professional who enjoys solving complex technical challenges and contributing to innovative energy solutions. The role provides the flexibility of remote work while supporting high-impact engineering initiatives. Accountabilities Support verification, validation, and uncertainty quantification activities for plant-scale thermal-hydraulic analysis tools. Perform system-level steady-state and transient thermal-hydraulic simulations to evaluate model behavior, accuracy, performance, and limitations. Analyze and interpret experimental data from separate-effects and integral test facilities to validate models and address technical gaps. Define validation requirements, identify modeling needs, and collaborate with test engineering teams to align experimental programs with simulation objectives. Develop and maintain documentation covering validation methodologies, model assumptions, simulation results, and uncertainty analyses for engineering reviews and regulatory submissions. Collaborate with multidisciplinary teams supporting plant design, safety analysis, and licensing activities. Apply software quality assurance practices, including configuration control, traceability, and documentation standards for engineering models and analysis results. Contribute to continuous improvement of modeling approaches, validation processes, and technical workflows. Requirements Bachelor’s degree in Mechanical Engineering, Nuclear Engineering, Chemical Engineering, or a related technical discipline, with 6+ years of relevant experience; advanced degrees may be considered equivalent. Demonstrated experience with system-level thermal-hydraulic analysis and code assessment for nuclear systems, advanced reactors, or other complex energy applications. Proven experience performing model validation activities, including model-to-test comparisons, validation metric development, and uncertainty quantification. Hands-on experience analyzing experimental thermal-hydraulic data, evaluating uncertainties, and comparing results against system-level predictions. Experience using system analysis tools such as RELAP5-3D, TRACE, SAS, or equivalent thermal-hydraulic simulation platforms. Strong understanding of thermal-fluid behavior, reactor systems, and advanced energy system design considerations. Familiarity with software quality assurance (SQA) and NQA-1 quality practices for engineering modeling workflows is highly preferred. Strong analytical and problem-solving skills with the ability to manage multiple technical activities simultaneously. Excellent technical communication skills, including the ability to clearly document and present complex engineering analyses. Benefits Competitive hourly compensation range of $56-$95 per hour. Fully remote work opportunity. Opportunity to contribute to advanced reactor and next-generation energy technology initiatives. Exposure to multidisciplinary engineering projects involving simulation, testing, safety analysis, and licensing. Flexible contract-based work environment supporting complex technical challenges. Opportunity to apply and expand expertise in thermal-hydraulics, validation methodologies, and advanced modeling practices. How Jobgether Works We use an AI-powered matching process to ensure your application is reviewed quickly, objectively, and fairly against the role's core requirements. Our system identifies the top-fitting candidates, and this shortlist is then shared directly with the hiring company. The final decision and next steps (interviews, assessments) are managed by their internal team. We appreciate your interest and wish you the best! Why Apply Through Jobgether? Data Privacy Notice: By submitting your application, you acknowledge that Jobgether will process your personal data to evaluate your candidacy and share relevant information with the hiring employer. This processing is based on legitimate interest and pre-contractual measures under applicable data protection laws (including GDPR). You may exercise your rights (access, rectification, erasure, objection) at any time. We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.

What you’ll do

Support verification, validation, and uncertainty quantification for plant-scale thermal-hydraulic analysis tools in complex reactor systems. Collaborate with multidisciplinary teams to analyze experimental data and ensure regulatory readiness for next-generation energy technologies.

Requirements

Requires a Bachelor's degree in Mechanical, Nuclear, or Chemical Engineering with 6+ years of experience in system-level thermal-hydraulic analysis. Proficiency with simulation tools like RELAP5-3D or TRACE and familiarity with NQA-1 quality practices are highly preferred.

Benefits

• Competitive hourly compensation • Fully remote work opportunity • Contribution to advanced reactor and next-generation energy technology initiatives • Exposure to multidisciplinary engineering projects • Flexible contract-based work environment

Other relevant skills

Identified from the job description. Confirm important requirements above.

  • Thermal-Hydraulic Modeling
  • Verification and Validation
  • Uncertainty Quantification
  • System-Level Simulation
  • Experimental Data Analysis
  • RELAP5-3D
  • TRACE
  • SAS
  • Nuclear Systems Analysis
  • Software Quality Assurance
  • NQA-1 Quality Practices
  • Technical Documentation
  • Safety Analysis
  • Plant Design
  • Thermal-Fluid Behavior
  • Regulatory Readiness

Job areas

  • Engineering
  • Energy
  • Science & Research

Additional details

Minimum education
Bachelor’s degree
Minimum experience
5+ years
Posting language
English
Working hours
40 hours per week
Seniority
Mid-Senior level
Application method
Direct apply is available