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Senior Aerothermal Engineer

Inversion · Playa Vista, California, United States · $137,000-$193,000

Open. First seen 20 September 2026.

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Description

Advanced Reentry Technologies Who We Are: Inversion is an aerospace and defense company pioneering advanced reentry technology to enable next-generation capabilities from space. By combining high-performance materials, precision aerodynamics, and mission-driven autonomy, Inversion is transforming reentry into an operational capability for an entirely new class of missions. The company’s highly maneuverable reentry spacecraft, Arc, is designed for rapid global cargo delivery, hypersonic testing, and other national security missions that require precise, controlled flight through the atmosphere.

Arc creates an entirely new transportation domain, unlocking unprecedented speed and global reach. Headquartered in Los Angeles, Inversion designs, manufactures, and integrates its spacecraft under one roof, enabling the company to move rapidly from concept to flight. The company is backed by leading investors including Y Combinator, Spark Capital, and Lockheed Martin Ventures, with customers across the U.S. government and commercial space industry.

Position Overview: Every surface of Inversion's reentry vehicles is designed against the aerothermal environment it must survive — and that environment must be known before it can be designed against. As the Senior Aerothermal Environments Engineer, you will develop and database the aerothermal environment around our reentry vehicles, combining high-fidelity CFD, engineering-level methods, and test data into database products that drive vehicle design. In this role, you will: Develop and maintain aerothermal environment databases spanning the full flight envelope of Inversion's reentry vehicles Run high-enthalpy CFD solutions at conditions anchoring the database, including flows in thermal-chemical non-equilibrium Apply handbook and engineering-level heating estimation methods to efficiently populate the trajectory and attitude space between high-fidelity anchor points Fuse heating estimates from data sources of varying fidelity — CFD, engineering methods, ground test, and flight data — into coherent database products with defined uncertainties and margins Deliver environments that directly drive TPS sizing, structural design, and trajectory constraints, and support downstream users in applying them correctly Build and mature the tooling, automation, and data infrastructure behind database generation and delivery Required Qualifications: Bachelor's degree in Aerospace or Mechanical Engineering, or equivalent experience Typically, 5+ years of experience in hypersonic, supersonic, reentry, or rocketry aerothermodynamic analysis Experience running high-enthalpy flow solvers (US3D, DPLR, LAURA, Loci-CHEM, or similar) Experience with handbook and engineering-level heating estimation methods (e.g., Fay-Riddell, Tauber, MINIVER-class tools, or similar correlations) Strong fundamentals in hypersonic aerodynamics, boundary layer physics, and convective and radiative heat transfer Proficiency in programming languages like Python, Fortran, C++, or MATLAB for analysis tooling and automation Proven ability to work effectively in a fast-paced environment, including prototyping and rapid iteration of new products Must have the ability to obtain and maintain a U.S. government Secret/Top Secret security clearance.

Desired Qualifications: Master's or PhD in Aerospace or Mechanical Engineering, or an equivalent field Experience assembling heating estimates from data sources of varying fidelity into an overall database product used to drive vehicle design Experience with uncertainty quantification and the definition of design margins for aerothermal environments Experience integrating ground and flight test data into aerothermal vehicle models Experience with boundary layer transition prediction and its treatment in heating environments Familiarity with Fidelity Pointwise, Link3D, or equivalent meshing software for generating high-quality meshes Experience with modeling radiative heating using radiation transport tools Familiarity with TPS sizing and material response tools (e.g., FIAT, CHAR) as downstream consumers of environments Experience with high-performance computing environments and large-scale CFD campaign automation Experience contributing to an aerothermal database effort from a vehicle's early design stages through first flight Involvement in planning, leading, and/or post-processing wind tunnel or arc-jet test campaigns Prior experience working in startups and/or small independent teams Our office headquarters is located in Playa Vista, CA. This position requires in-office presence. The California annual base salary for this role is currently $137,000-$193,000.

Pay Grades are determined by role, level, location, and alignment with market data. Individual pay will be determined on a case-by-case basis and may vary based on the following considerations: interviews and an assessment of several factors that are unique to each candidate, job-related skills, relevant education and experience, certifications, abilities of the candidate and internal equity. ITAR Compliance: To conform to U.S.

Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR) you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State.

Learn more about the ITAR here . Equal Employment Opportunity: Inversion provides equal employment opportunities to all employees and applicants without regard to race, color, religion, age, sex, gender identity, sexual orientation, national origin, veteran status, or disability. Inversion collects and processes personal data in accordance with applicable data protection laws.

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