Senior Thermal Engineer, Expeditionary AI / HPC Data Centers
Anduril
- Location
- Mountain View, California, United States
- Employment
- Full Time
- Work model
- On-Site
- Level
- Senior
- Posted
- 2h ago
Skills
About this role
New Senior Thermal Engineer, Expeditionary AI / HPC Data Centers Mountain View, California, United States Apply Anduril Industries is a defense technology company with a mission to transform U.S. and allied military capabilities with advanced technology. By bringing the expertise, technology, and business model of the 21st century’s most innovative companies to the defense industry, Anduril is changing how military systems are designed, built and sold. Anduril’s family of systems is powered by Lattice OS, an AI-powered operating system that turns thousands of data streams into a realtime, 3D command and control center. As the world enters an era of strategic competition, Anduril is committed to bringing cutting-edge autonomy, AI, computer vision, sensor fusion, and networking technology to the military in months, not years. About the Team The Thermal Engineering team's work is essential to support our rapid innovation cycle and maintain the performance and reliability of advanced defense technologies. Thermal Engineers own the full development life cycle from conceptual design through prototyping, lab and field testing, and operational deployment, ensuring high-performance, resilient systems that meet the demands of complex, contested environments. About the Role We are looking for a Senior Thermal Engineer in Costa Mesa, CA to own the thermal management of expeditionary AI/HPC data centers—air-transportable, modular compute and command-and-control infrastructure built to run at forward operating locations. You will apply a deep understanding of heat transfer, fluid dynamics, and HVAC to keep high-density compute running reliably in austere environments with extreme temperatures and limited power. What You'll Do
Own the thermal design and analysis of deployable data center cooling systems—air-side and water-side cooling, heat rejection, chilled water plant, and liquid cooling—from rack and chip level up through the full facility. Use first principles to discern the right level of analysis, running hand calcs, spreadsheets, and MATLAB/Python first-order models before detailed design. Define cooling architecture and heat-rejection strategy—CRAH/CRAC, air-side economization, chilled water plants, dry coolers, CDUs, rear-door heat exchangers, and direct-to-chip and immersion liquid cooling—to keep equipment within limits as power density scales. Develop cooling approaches for high-density racks and trade off air, liquid, and hybrid cooling for modular, transportable systems in austere, high-ambient environments. Work with electrical, mechanical, and facilities engineers to characterize IT and equipment heat loads across operating and failure modes. Weigh cooling architectures against reliability, efficiency (PUE/WUE), and total cost, driving trade studies that balance thermal margin with capital and operating cost. Own the thermal FEA/CFD and system models, predict facility performance, and set red/yellow limits for commissioning and operation. Lead prototype builds, field testing, commissioning, and operational validation of cooling designs (CAD, sensor and DAQ selection, data post-processing, results). Present thermal status at internal and customer reviews with a clear view of timelines and technical status. Develop internal tools to improve analysis effectiveness and efficiency. Support failure reviews and root-cause analysis with test data and thermal analysis.
Required Qualifications
MS or higher in mechanical engineering, applied physics, or related field focused on heat transfer, fluid dynamics, and HVAC In-depth understanding of heat transfer and fluid dynamics 5+ years designing thermal management systems for data centers or comparable mission-critical infrastructure Full-spectrum data center thermal experience—air-side and water-side cooling, heat rejection, chilled water plant design, power density management, and liquid cooling Steady-state and transient system