Turbine Aerodynamics Engineer
About the Role
As a Turbine Aerodynamics Engineer, you’ll work shoulder to shoulder with aircraft designers, systems leads, and test engineers to architect the hot section of Symphony—from concept through certification. You’ll design, optimize, and build high-performance turbine systems that make supersonic travel possible. You’ll be part of the Turbomachinery Team and lead the development of the Symphony turbine system (High Pressure and Low Pressure), including performance and aerodynamic design.
Responsibilities
- Design airfoils and flowpath via CFD analysis
- Develop 1D meanline models, design blading for airfoils, develop performance maps
- Spec out and participate in rig tests, assess as-built hardware, and influence how these things affect the overall Overture aircraft and Symphony integrated propulsion system
- Advocate for component rigs when deemed necessary, analyze rig and engine test data, recommend courses of action
- Develop and integrate toolchains and processes, including multi-disciplinary workflows and automation that fully integrate engine and propulsion analyses with airframe development
- Coordinate with leadership, team members, and suppliers to ensure the designs can support the manufacturing metrics
- Engage in all aspects of Symphony engine development and Overture propulsion system integration, including fabrication and testing
Requirements
- Bachelor’s or Master’s in Mechanical or Aerospace Engineering or related field
- Design experience in axial turbomachinery leading various different phases of the design process using different fidelity tools such as meanline, 2D analyses, and 3D analyses (e.g., geometry creation, mesh, and execute CFD)
- Proficiency in CAD to support module integration efforts in the engine
- Proficiency in Python or similar programming languages
- Experience working with engine cycle analysis tools such as NPSS or PyCycle
- Strong interpersonal skills, self-motivation, and problem-solving ability
- Willingness to both speak and listen, give and receive opinions, consider all data, and help build team consensus
What Will Set You Apart
- Component or module ownership experience in a turbomachinery program or product
- Supersonic jet engine design experience
- Part 33 commercial certification experience
- Experience in life assessments of turbine systems driven by thermal and structure failures
- Experience analyzing secondary flow systems inside engines
- Background in developing design tools, methods, and processes
- Testing and data-reduction experience
- Experience with Axstream or ADS turbomachinery software
- A strong desire to avoid bureaucracy and move fast in a dynamic environment
Pay
- P3 Level - Typically 5 - 10 years of experience - Base salary range: $125,000 – $167,500
- P4 Level - Typically 10 - 15 years of experience - Base salary range: $139,000 – $187,000
- P5 Level - Typically 15+ years of experience - Base salary range: $152,500 – $205,000
Actual compensation will vary based on factors including, but not limited to, location, experience, and performance. The range listed is just one component of Boom’s total rewards package. Other elements may include long-term incentives/equity, flexible PTO, and a suite of progressive benefits designed to support employees’ well-being and growth.
Requirements
To conform to U.S. Government aerospace technology export regulations (ITAR and EAR), applicant 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.