About The Position

SpaceX is leveraging its experience deploying and operating the world’s largest satellite constellation to develop Starmind, a new constellation of satellites capturing solar energy in space to power low-cost, high-performance AI compute for Earth. Scaling AI in space is a thermal problem as much as a power and processing problem. With a dense compute payload dissipating hundreds of kilowatts, the thermal system must efficiently transfer heat to large radiators that reject it to space, under solar load, eclipse, and multi-mode AI duty cycles. You will join the StarmindThermal team, which owns the satellite cooling stack end-to-end. Rejecting hundreds of kilowatts of accelerator waste heat to space is limited by high-flux loads transferring heat to massive deployable radiators. No capable cooling architecture has been flown at this scale. As a Senior Thermal Engineer focused on fluids analysis, you own conjugate heat transfer and thermal-fluid analysis of cold plates, heat exchangers, and radiator channels and manifolds, and the system 0-D/1-D thermal-fluid network that sets flow split, ΔP budget, loop ΔT, and pump operating point. You co-evolve geometry and flow path with mechanical and fluid-systems owners under tight feedback from manufacturing and test. You sit where the local physics is hardest and the design decisions stick: predictions that close margins, ground in test, and drive rate-production hardware.

Requirements

  • Bachelor’s degree in mechanical, aerospace, or a related engineering discipline
  • 5+ years of professional experience in fluids, CFD, or thermal analysis

Nice To Haves

  • Master’s degree in mechanical, aerospace, or a related engineering discipline
  • Steady/transient conjugate heat-transfer CFD of liquid-cooled or high-heat-flux hardware (STAR-CCM+, ANSYS Fluent/CFX, or equivalent)
  • Hand-calc checks and engineering judgment on mesh, turbulence modeling, and model fidelity
  • Hands on hardware testing inclusive of instrumentation selection and model correlation
  • Relevant manufacturing techniques, and judiciously pushing their constraints
  • Watertight CFD geometry (Siemens NX or equivalent)
  • Package/board-level tools as secondary (Icepak, Flotherm)
  • 0-D/1-D thermal-fluid network modeling to size and balance cooling loops (flow split, ΔP budget, loop ΔT, pump operating point)
  • Scripting analysis workflows and post-processing (Python preferred)

Responsibilities

  • Own conjugate heat-transfer (CHT) and thermal-fluid analysis of high-performance cold plates, heat exchangers, and radiator channels for STARMIND satellites
  • Own the system 0-D/1-D thermal-fluid network that sizes and balances the cooling loop: flow split, ΔP budget, loop ΔT, pump operating point
  • Drive cooling-loop architecture trades with hardware and vehicle-level thermal teammates
  • Co-evolve geometry, materials and processes with hardware owners to find mass producible, efficient thermal solutions
  • Predict component and system performance under wide range of flow and thermal conditions
  • Own pre-test prediction, test design, and model-test correlation for fluid component and integrated thermal tests
  • Automate analysis workflows for re-running trades as designs and boundary conditions change
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