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Thermal Hydraulic Fluids Engineer I & II

Job in Houston, Harris County, Texas, 77246, USA
Listing for: Airswift
Full Time position
Listed on 2026-09-03
Job specializations:
  • Engineering
    Test Engineer, Mechanical Engineer, Systems Engineer, Energy Engineer
Salary/Wage Range or Industry Benchmark: 90000 - 130000 USD Yearly USD 90000.00 130000.00 YEAR
Job Description & How to Apply Below

THERMAL-HYDRAULICS ENGINEER II Deployable Energy Position Summary

Early to Mid-career technical professional responsible for supporting thermal-hydraulics and thermal-fluids engineering activities within a growing nuclear energy organization. Works with moderate guidance from senior technical personnel while taking ownership of defined calculations, analyses, models, documentation, and project-support deliverables. This role supports advanced-reactor and power-conversion applications involving helium and supercritical CO2 systems and contributes to disciplined engineering execution, technical problem-solving, verification and validation activities, and licensing-quality documentation while developing deeper capability under senior engineering mentorship.

Functional

Scope
  • Thermal-Hydraulics
    - Support analysis of fluid flow, pressure drop, heat removal, coolant behavior, and system response for reactor, heat‑transport, power‑conversion, and supporting systems.
  • Thermal-Fluids Engineering
    - Apply heat transfer, fluid mechanics, thermodynamics, and component-performance fundamentals to practical design and operating evaluations.
  • Fluid Dynamics
    - Evaluate internal‑flow behavior including flow distribution, mixing, recirculation, compressible‑flow effects, and impacts on system performance.
  • Heat Transfer
    - Support assessments of conduction, convection, radiation, heat‑exchanger performance, thermal margins, component temperatures, and heat‑rejection pathways.
  • Thermodynamics
    - Apply first‑principles and systems‑level analysis to Brayton‑cycle, helium, supercritical CO2, and related power‑conversion applications.
  • Systems Analysis
    - Model and evaluate integrated system behavior, operating envelopes, interfaces, performance limits, and interactions between reactor, heat transport, power conversion, and supporting systems.
  • Engineering Modeling & Simulation
    - Develop, maintain, and check analytical, system‑level, CFD, or multiphysics models used to support design decisions and technical trade studies.
  • Verification & Validation
    - Support model checking, benchmarking, sensitivity studies, test‑data correlation, uncertainty evaluation, and documentation of analysis credibility.
Key Responsibilities
  • Perform thermal‑fluid and thermal‑hydraulic calculations and analyses supporting nuclear engineering programs.
  • Develop, execute, and document analytical, system‑level, CFD, or multiphysics models under established methodologies and senior technical direction.
  • Evaluate fluid‑flow, heat‑transfer, thermodynamic, steady‑state, transient, sensitivity, and performance behavior for assigned systems and components.
  • Support design evaluation, technical trade studies, optimization activities, testing, and multidisciplinary technical decision‑making.
  • Support verification, validation, benchmarking, uncertainty evaluation, and correlation against test or available operational data.
  • Prepare controlled calculations, technical documentation, assumptions, model records, and review packages.
  • Collaborate with reactor physics, mechanical, systems, safety, testing, and other engineering disciplines.
  • Follow applicable engineering quality, safety, licensing‑support, configuration‑management, and document‑control requirements.
Required Qualifications
  • Bachelor's degree in Mechanical, Nuclear, Chemical, Aerospace Engineering, or related discipline.
  • Approximately 3-10 years of relevant technical experience in thermal‑hydraulics, thermal‑fluids, systems analysis, power generation, nuclear, aerospace, defense, or another safety‑critical engineering environment.
  • Hands‑on experience performing engineering calculations, modeling, simulation, analysis, or technical evaluation within the assigned discipline.
  • Solid technical fundamentals in heat transfer, fluid mechanics, thermodynamics, and engineering problem‑solving.
  • Ability to develop defensible technical work products with appropriate assumptions, methods, traceability, reviewability, and documentation quality.
  • Ability to communicate clearly, collaborate across multidisciplinary teams, and operate effectively in a growing organization where processes and capabilities are still being developed.
  • Demonstrated attention to…
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