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Propulsion Aerodynamicist

Job in Milton Keynes, Buckinghamshire, MK1, England, UK
Listing for: Greenjets Limited
Full Time position
Listed on 2026-02-28
Job specializations:
  • Engineering
    Aerospace / Aviation / Avionics, Mechanical Engineer, Systems Engineer
Salary/Wage Range or Industry Benchmark: 80000 - 100000 GBP Yearly GBP 80000.00 100000.00 YEAR
Job Description & How to Apply Below

About Us

Greenjets is an innovative engineering company developing high-performance propulsion systems for the aviation market. Our work spans research and development, engine production, aircraft systems, technical integration and flight testing. We are committed to delivering high-grade engineering and best-in-class propulsion for unmanned aircraft.

We do things differently. We move fast, we experiment and we adopt technologies that push beyond the current state of the art. Our aim is to go further, faster and more efficiently, while keeping costs competitive.

All our propulsion systems are designed, developed and manufactured in the UK. We focus on high quality, reliable and cost effective products supported by a robust, secure and ethical supply chain.

About the Job

We are seeking a Propulsion Aerodynamicist to lead aerodynamic design, analysis, and performance optimisation of small gas turbines, electric ducted fans, and integrated propulsion architectures.

This role requires strong turbo machinery aerodynamic expertise combined with practical, multidisciplinary problem-solving. You will contribute across concept design, CFD modelling, rig testing, system integration, and performance validation in a highly collaborative SME environment.

What You'll Do Aerodynamic Design & Analysis
  • Develop aerodynamic concepts for fans, compressors, turbines, exhausts, and flowpath components.
  • Conduct CFD studies covering:
    • Blade design and optimisation
    • Flowpath shaping
    • Boundary layer behaviour
    • Stall and surge margins
    • Cooling flow (where applicable)
  • Optimise EDF rotor–stator systems for thrust, efficiency, noise, and manufacturability.
  • Provide aero loads, pressure distributions, and flow intent to mechanical and thermal teams.
Performance Prediction & Modelling
  • Develop 0D/1D cycle models for gas turbines and EDF propulsion units.
  • Generate performance maps for fans, compressors, micro-turbines, and free-power turbines.
  • Characterise system behaviour across mission profiles (static thrust, climb, loiter, high-speed flight).
Test Support & Data Reduction
  • Support commissioning of:
    • Bench tests
    • Fan rig tests
    • Gas turbine core tests
    • Full propulsion system tests
  • Define instrumentation requirements and test matrices.
  • Analyse test data, correlate CFD and performance models, and refine designs accordingly.
Integration & Installation Aerodynamics
  • Assess installation effects including:
    • Inlet distortion
    • Jet plume interaction
    • Embedded vs podded installations
    • Aero-structural and aero-thermal trade-offs
  • Collaborate with airframe partners to optimise propulsor–vehicle integration across the flight envelope.
Multidisciplinary Collaboration
  • Work closely with mechanical, thermal, electrical, and systems engineers.
  • Provide aerodynamic input to trade-offs involving:
    • Efficiency
    • Mass
    • Noise
    • Thermal signatures
    • Manufacturability
R&D & Innovation
  • Drive innovation in:
    • High-performance EDF aerodynamics
    • Additive-manufacturable blade geometries
    • Tip treatments and shroud strategies
    • Cooling flow optimisation
  • Explore novel concepts for compact, high-efficiency turbo machinery.
Documentation & Certification Support
  • Produce CFD reports, performance summaries, and design documentation.
  • Support structured design reviews (SRR / PDR / CDR).
  • Contribute to safety assessments and requirements decomposition.
Desirable Qualifications, Experience & Attributes
  • Degree (MEng / PhD preferred) in Aerodynamics, Aerospace Engineering, Turbo machinery, or related field.
  • Strong proficiency in CFD tools (ANSYS CFX / Fluent, Star-CCM+, OpenFOAM or equivalent).
  • Experience in turbo machinery aerodynamics, including:
    • Blade loss mechanisms
    • Rotor–stator interactions
    • Tip leakage
    • Stall/surge behaviour
  • Experience with electric propulsion, micro-gas turbines, or hybrid systems.
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