Lead Thermal Fluid Hydraulics Engineer

Houston, Texas, United States

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reference
Job reference 1277970
location
Location Houston, Texas, United States
sector
Sector Energy - Power
function
Function Operations & Production
type
Employment type Permanent
date
Date published July 30, 2026

LEAD / PRINCIPAL THERMAL-HYDRAULICS ENGINEER

Deployable Energy

Position Summary


Senior, hands-on technical leader responsible for establishing and developing the thermal-hydraulics and thermal-fluids engineering capability within a growing nuclear energy organization. Provides technical leadership while remaining directly involved in engineering execution, analysis, technical problem-solving, and project delivery. This role will help establish discipline-specific standards, processes, tools, and technical practices; support multiple concurrent projects; and mentor developing engineers as the organization scales.


Functional Scope


• Thermal-Hydraulics - Lead analysis of fluid flow, pressure drop, heat removal, coolant behavior, and system response for reactor, power-conversion, heat-transport, and supporting systems.


• Thermal-Fluids Engineering - Develop engineering approaches integrating heat transfer, fluid mechanics, thermodynamics, and component performance into practical design and operating decisions.


• Fluid Dynamics - Evaluate internal and external flow behavior including compressible-flow effects, flow distribution, mixing, recirculation, instability, and related impacts on system performance.


• Heat Transfer - Assess conduction, convection, radiation, heat-exchanger performance, thermal margins, component temperatures, and heat-rejection pathways across normal, transient, and off-normal conditions.


• Thermodynamics - Apply first-principles and systems-level thermodynamic analysis to Brayton-cycle, helium, supercritical CO2, and related power-conversion applications.


• Systems Analysis - Model and evaluate integrated system behavior, interfaces, operating envelopes, performance limits, and interactions between reactor, heat transport, power conversion, and supporting systems.


• Engineering Modeling & Simulation - Build, maintain, and review analytical, system-level, CFD, and multiphysics models used to support design decisions, technical trade studies, and licensing-quality documentation.


• Performance Analysis - Quantify component and system performance against design requirements, operating targets, safety margins, efficiency goals, and project-level technical objectives.


• Steady-State and Transient Analysis - Perform analyses across normal operation, startup, shutdown, load changes, upset conditions, and design-basis scenarios to understand system response and technical risk.


• Verification & Validation - Establish and apply methods for model checking, benchmarking, sensitivity studies, test-data correlation, uncertainty evaluation, and documentation of analysis credibility.


• Regulatory and Licensing Support - Prepare analysis inputs, assumptions, technical bases, methods, results summaries, and supporting documentation suitable for review within highly regulated nuclear programs.


Technical Leadership


• Serve as the senior technical resource and subject matter expert within the assigned discipline.


• Lead and personally execute complex technical work across multiple nuclear projects and programs.


• Establish and maintain discipline-specific engineering standards, methodologies, procedures, and best practices.


• Lead and participate in technical reviews, design reviews, and technical decision-making.


• Identify and resolve complex multidisciplinary engineering issues while maintaining appropriate technical rigor.


Engineering / Technical Execution


• Develop, perform, and review thermal-fluid and thermal-hydraulic analyses supporting nuclear engineering programs.


• Develop and maintain analytical, system-level, or computational models as appropriate to project needs.


• Evaluate fluid flow, heat transfer, thermodynamic, steady-state, transient, and system-performance behavior.


• Perform or oversee system-level, transient, sensitivity, benchmark, and correlation analyses against test or available operational data where applicable.


• Support model verification, validation, benchmarking, uncertainty evaluation, and technical-review activities.


• Apply relevant computational tools and methods, including CFD and systems-analysis tools, where appropriate to project needs.


• Evaluate thermal-fluid behavior in helium-cooled and supercritical CO2 systems, including heat exchangers, turbomachinery interfaces, power-conversion systems, and related balance-of-system equipment.


• Support design evaluation, technical optimization, testing, technical decision-making, and multidisciplinary engineering integration.


Team & Capability Development


• Help establish and grow the discipline capability within the organization.


• Mentor and provide technical guidance to junior and early-career personnel.


• Support technical assessment of future team members.


• Develop repeatable technical practices and workflows that support continued organizational growth.


• Promote knowledge transfer, accountability, and continuous technical development.


Technical Governance


• Ensure technical activities align with applicable nuclear-industry codes, standards, regulations, quality requirements, and company procedures.


• Support engineering quality, configuration management, document control, and change-control practices.


• Ensure technical work is appropriately developed, reviewed, documented, and controlled.


• Incorporate technical risk management into engineering decision-making.


• Support corrective actions and continuous-improvement initiatives.


Cross-Functional Collaboration


• Partner with engineering leadership, project leaders, systems engineering, and adjacent technical disciplines.


• Collaborate with quality, safety, licensing/regulatory, testing, manufacturing, supply chain, and project-delivery functions.


• Support multidisciplinary technical integration across concurrent projects.


• Interface with suppliers, manufacturers, laboratories, engineering partners, and other external stakeholders as required.


Safety & Quality


• Champion a strong nuclear safety culture and disciplined engineering execution.


• Promote quality-focused technical work and risk-informed decision-making.


• Maintain technical rigor while operating effectively in a fast-moving, evolving organization.


Required Qualifications


• Bachelor's degree in Mechanical, Nuclear, Chemical, Aerospace Engineering, or related discipline.


• Approximately 10+ years of relevant technical experience, unless discipline-specific requirements indicate otherwise.


• Demonstrated hands-on technical experience within thermal-hydraulics, thermal-fluids, systems analysis, or related engineering disciplines.


• Experience leading complex technical work, projects, workstreams, or engineering teams.


• Experience within nuclear or another highly regulated, safety-critical engineering environment.


• Experience supporting regulatory, licensing, safety analysis, or technical documentation activities within a nuclear or similarly regulated environment.


• Strong technical problem-solving, engineering judgment, and decision-making capability.


• Ability to operate successfully within a growing organization where processes and capabilities are still being developed.


Preferred Qualifications


• Advanced engineering degree.


• Experience with thermal-hydraulic systems analysis, CFD, or complex systems modeling.


• Experience with helium-cooled systems, supercritical CO2 power cycles, Brayton-cycle systems, or related advanced-reactor thermal-fluid applications.


• Experience with verification, validation, benchmarking, or test-data correlation.


• Familiarity with regulatory-review processes, licensing methods, nuclear-quality requirements, or preparation of safety-related technical bases.


• Professional Engineering registration, Chartered Engineer status, or equivalent credential where applicable.


• Direct nuclear-industry experience.


• Experience establishing or improving technical processes, standards, and organizational capability.


• Experience mentoring or developing junior technical personnel.


• Experience supporting multidisciplinary or matrixed engineering organizations.


Core Competencies


• Thermal-Hydraulics


• Thermal-Fluids Engineering


• Fluid Dynamics


• Heat Transfer


• Thermodynamics


• Systems Performance Analysis


• Computational Modeling


• Verification & Validation


• Regulatory / Licensing Support


• Helium and Supercritical CO2 Thermal-Fluid Systems


• Technical Leadership


• Nuclear Safety Culture


• Engineering Judgment

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