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Principal Thermal Systems Engineer (CFD)

Oxford Global ResourcesSan Jose, CA🇺🇸United StatesPosted 3 Aug 2026

Why This Role Stands Out

If you are a seasoned thermal engineer with a passion for advanced simulation and a desire to shape the future of industrial and energy products, this principal role offers a unique opportunity for significant impact. You will lead critical thermal analysis efforts, collaborating with diverse teams to drive innovation and optimize system performance from concept to production. Apply now to leverage your expertise and contribute to groundbreaking engineering solutions.

Quick Overview

Seniority
Leader
Work mode
On Site
Location
San Jose, CA, United States
Posted
4 weeks ago
Airflow

Job Description

Job Title: Principal Thermal Systems Engineer (CFD)

Location: San Jose, CA - Onsite

6-12 months Temp-to-Perm/Full-time

Target Start Date: ASAP

Job Description:

We are seeking a Principal Thermal Systems Engineer (CFD) to lead advanced thermal analysis and simulation efforts supporting the development of complex industrial and energy-related products. This role will play a critical part in optimizing system performance, improving reliability, and guiding engineering decisions through analytical and simulation-based methods.

The successful candidate will work across multiple engineering disciplines to evaluate thermal behavior, airflow characteristics, cooling strategies, and overall system performance throughout the product development lifecycle.

Key Responsibilities:

  • Lead thermal analysis and simulation activities for complex mechanical and electromechanical systems.
  • Develop predictive models to evaluate heat transfer, airflow distribution, temperature management, and overall system performance.
  • Provide engineering recommendations that influence product architecture, design decisions, and performance optimization efforts.
  • Support development programs from concept through validation and production readiness.
  • Collaborate with multidisciplinary teams to assess technical feasibility and identify opportunities for design improvement.
  • Present findings and recommendations to engineering leadership and project stakeholders.
  • Support testing, validation, and correlation activities to ensure analytical models accurately represent real-world performance.
  • Improve simulation methodologies, modeling approaches, and engineering processes to enhance prediction accuracy and efficiency.
  • Contribute to technical problem-solving efforts related to performance, reliability, and thermal management challenges.

Requirements:

  • REQUIRED - Master's or PhD degree in Mechanical Engineering, Aerospace Engineering, Thermal Sciences, or a related discipline.
  • 8+ years of industry experience utilizing CFD in Thermal management, in Electronics System/Data center cooling.
  • Highly skilled in one of the CFD tools: Ansys Icepak/Cadence/Fluent (Icepak or Cadence Preferred and can give in-depth examples of when/where they've utilized this)
  • Strong foundation in heat transfer, thermodynamics, fluid mechanics, and numerical analysis methods.
  • Experience utilizing commercial engineering simulation software for thermal and flow analysis.
  • Ability to develop simplified engineering calculations alongside detailed simulation models to support design decisions.
  • Experience supporting complex product development programs in industrial, energy, transportation, electronics, or related industries.
  • Demonstrated ability to manage multiple technical priorities while maintaining high-quality deliverables.
  • Experience mentoring engineers and providing technical leadership on challenging engineering problems.
  • Strong analytical thinking, troubleshooting abilities, and engineering judgment.
  • Excellent communication and presentation skills with the ability to convey complex technical concepts to diverse audiences.

Preferred Experience:

  • Experience with cooling system design, airflow management, thermal optimization, or environmental performance analysis.
  • Familiarity with validation testing and model correlation techniques.
  • Exposure to highly integrated mechanical, electrical, or industrial equipment systems.

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