Senior Thermal Analyst - Space

Antares

• $145K — $185K *
Aerospace & Defense
5 - 7 years of experience
Job Overview by Ladders

Qualifications

  • Bachelor's degree in Mechanical, Aerospace, Nuclear Engineering, or related field.
  • 5+ years of thermal engineering experience, especially in high-temperature and nuclear systems.
  • Solid knowledge in conduction, convection, radiation, and thermal-fluid systems.
  • Proficient in building thermal models from empirical data.
  • Experience in communicating design assumptions and implications.
  • Preferred: Master's degree or higher in relevant engineering disciplines.

Responsibilities

  • Construct and validate thermal models for various thermal systems.
  • Anchor models to experimental data and improve their accuracy.
  • Identify data gaps and collaborate on necessary testing.
  • Design and analyze thermal management architectures for nuclear systems.
  • Evaluate and select heat rejection system configurations based on various constraints.
  • Develop system-level thermal performance models and assess impacts on subsystems.
  • Create tools for predicting thermal system behaviors and performance.

Benefits

  • Access to a modern facility designed for collaboration and innovation.
  • Located in a strategic area within Los Angeles' tech ecosystem.
  • Opportunities for professional growth in cutting-edge technological fields.
  • Engagement in high-impact projects with national relevance.
Full Job Description
About the Team

As a Senior Space Thermal Engineer at Antares, you will own and drive the thermal design and analysis of a space nuclear vehicle, including the reactor, spacecraft, and heat rejection systems. You will develop, validate, and anchor thermal models to experimental and test data, using those models to guide early architecture decisions, system-level integration, and hardware design trades.

This role will focus primarily on high-temperature thermal management for space nuclear systems, including reactor heat transport and radiator architectures, while also supporting traditional low-temperature spacecraft radiator design where required. You will work closely with reactor, fluids, mechanical, test, and systems engineers to define thermal management architectures, evaluate heat rejection system configurations, identify data gaps, and mature thermal hardware integration approaches from concept through test-informed design.

Role and Responsibilities
  • Construct, own, and validate thermal models for the reactor core, spacecraft, radiator systems, and integrated vehicle thermal response.
  • Anchor thermal models to experimental, analytical, and test data wherever available; quantify uncertainty and improve model fidelity over time.
  • Identify gaps in thermal, materials, coolant-loop, radiator, and reactor heat-transfer data, and work with test engineers to define, execute, and interpret required tests.
  • Develop and analyze space nuclear thermal management architectures, including reactor heat transport, coolant loops, radiator systems, and integrated heat rejection systems.
  • Generate, compare, and downselect heat rejection system configurations across performance, mass, temperature, integration, reliability, manufacturability, and operational constraints.
  • Build system-level thermal models to assess vehicle-level performance, transient response, operating limits, and subsystem integration impacts.
  • Create tools, methods, and analysis processes for predicting radiator thermalization behavior, heat rejection system performance, operating characteristics, and integrated thermal response across the vehicle.
  • Investigate and develop thermal hardware integration approaches, including coolant loop architectures, radiator panel integration, heat pipe coupling, panel-to-structure interfaces, and heat-transfer paths.
  • Support early-stage concept development through modeling-driven design trades, first-principles analysis, and rapid evaluation of thermal system options.
  • Partner with reactor, mechanical, fluids, materials, test, and systems teams to ensure thermal design assumptions are reflected in hardware requirements, test plans, and design reviews.
  • Produce and review technical documentation, including thermal analyses, model validation reports, test plans, design trade studies, interface requirements, and design review materials.
  • Participate in formal and informal design reviews, ensuring thermal architecture, model assumptions, margins, risks, and verification approaches are clearly documented

Basic Qualifications
  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Nuclear Engineering, Thermal Sciences, or a related technical discipline.
  • 5+ years of experience in thermal engineering, thermal analysis, heat transfer, spacecraft thermal systems, nuclear systems, high-temperature systems, or closely related hardware development.
  • Strong fundamentals in conduction, convection, radiation, transient heat transfer, thermal-fluid systems, and system-level thermal modeling.
  • Experience building and validating thermal models using test data, experimental data, or flight/hardware data.
  • Experience performing thermal design trades and communicating model assumptions, uncertainty, margins, and design implications to cross-functional engineering teams.

Preferred Skills & Experience
  • Master's degree or higher in Mechanical Engineering, Aerospace Engineering, Nuclear Engineering, Thermal Sciences, or a related field.
  • Experience with spacecraft thermal control systems, radiators, heat pipes, thermal straps, louvers, MLI, coatings, spacecraft environmental interfaces, or orbital thermal analysis.
  • Experience with high-temperature thermal systems, nuclear thermal systems, reactor heat transport, Brayton/Rankine/Stirling-adjacent thermal architectures, pumped loops, liquid metal coolants, gas coolants, or refractory materials.
  • Experience developing or analyzing heat rejection systems for space, nuclear, defense, aerospace, or high-reliability energy systems.
  • Strong familiarity with Python and Git-controlled code repositories.
  • Familiarity with thermal modeling and simulation tools such as Thermal Desktop, SINDA/FLUINT, OpenTD, ANSYS, COMSOL, STAR-CCM+, or Fluent.
  • Experience developing reduced-order models, sizing tools, parametric trade tools, or integrated system models for thermal architecture studies.
  • Experience designing, executing, or interpreting thermal vacuum, component-level, coolant-loop, heat pipe, radiator, or high-temperature heat-transfer tests.
  • Understanding of radiator performance drivers, including view factors, emissivity, absorptivity, fin efficiency, thermal spreading, panel thermalization, degradation, and environmental effects.
  • Experience with coolant loop architecture, pump/valve/heat exchanger integration, pressure drop, flow stability, startup/shutdown transients, or two-phase/single-phase thermal-fluid systems.
  • Experience integrating thermal hardware into aerospace or nuclear systems, including structural interfaces, thermal expansion, manufacturability, inspection, reliability, and operations constraints.
  • Strong technical judgment in ambiguous design spaces, with the ability to make progress using incomplete data while clearly identifying risks and validation needs.
  • Strong communication skills, including the ability to explain complex thermal architectures, model assumptions, trade results, and test implications to engineers, program stakeholders, and leadership.

Salary Range
  • Senior Thermal Analyst - $145,000 - $185,000

Location
  • We are located in Torrance, CA in a 322,000 square foot, brand new facility featuring large open spaces for team collaboration, R&D, and production, as well as easy access to the 405, 105, and 110 freeways. Our facility is in the heart of Los Angeles' vibrant emerging tech ecosystem alongside many other high growth startups and enterprises.

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