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Senior Aerodynamics Engineer

Actively Reviewing the Applications

HyPrix

4–8 years
Posted 2 days ago Apply by June 11, 2026

Job Description

Who Are We?

At HyPrix, we're building attritable payload delivery systems for autonomy. Things that fly fast — we’re enabling them with conscious software. Replicating the capabilities of expensive conventional frontline systems — we’re building the cheapest micro and cruise missile systems on the planet. Built for a war of attrition, built for the era of software-defined warfare, built to cater to the front lines of battlefields — where no man should stand in the future. Learn more about us: https://hyprix.in


About the role

The Senior Aerodynamics Engineer will be responsible for aerodynamic design, analysis, and validation of high-speed configurations, with a strong focus on steady and unsteady compressible flow simulations. The role includes aerial system design and sizing, aerodynamic database generation, and close collaboration with GNC, propulsion, and structures teams across all phases of the development cycle.


Required Qualifications: 3-5 years of experience in a relevant role


Core Responsibilities:

1) Aerodynamic Design & Performance

  • Design and analyze aero configurations including body shaping, wings, fins, and control surfaces.
  • Drive aerodynamic performance improvements: lift/drag, wave drag, stability margins, and control effectiveness across the flight envelope.
  • Execute drag build-up and component/interference assessments; perform wave-drag and L/D optimization trade studies.
  • Generate and maintain aerodynamic coefficients and stability/control derivatives for flight mechanics and GNC integration.
  • Support preliminary design activities including sizing studies and configuration studies using empirical and lower-order methods.

  • 2) CFD & High-Speed Flow Analysis

    • Perform steady and unsteady compressible-flow CFD (RANS/URANS; exposure to DES/LES preferred).
    • Capture and interpret shock formation/motion, shock–boundary layer interactions, separation, buffet, and control-surface unsteadiness.
    • Select appropriate models and numerics (turbulence models, solvers, schemes) for high-speed applications.
    • Build high-quality meshes (structured/unstructured/hybrid), conduct grid convergence studies, and ensure solution verification/validation.
    • Correlate CFD results with wind tunnel, empirical methods, and/or flight data; document discrepancies and drive closure plans.
    • Ability to prepare and execute CFD runs on HPC’s, including exporting ANSYS Fluent case/data files and creating Fluent journal files.

  • 3) Wing, Fin & Control Surface Aerodynamics

    • Design and evaluate wings, fins and control configurations.
    • Assess hinge moments, control effectiveness degradation at high Mach, and aerodynamic non-linearities affecting controllability.
    • Analyze wing–body and fin–body interference effects; recommend geometry refinements and layout improvements.
    • Identify aeroelastic/aerothermal sensitivities and interface with structures/thermal teams to ensure design compatibility.

  • 4) Testing, Integration & Technical Leadership

    • Support wind tunnel test planning, instrumentation/conditions definition, and data reduction/correlation.
    • Provide aerodynamic inputs to cross-functional design reviews and program trade studies.
    • Partner with GNC, propulsion, thermal, and structures teams to ensure integrated performance and robust margins.
    • Mentor junior engineers and provide technical guidance on methods, verification discipline, and best practices.

  • Required Abilities

    • Experience contributing to aerodynamic databases and flight performance models.
    • Strong fundamentals in compressible aerodynamics and high-speed flow physics.
    • Hands-on experience in steady and unsteady CFD simulations.
    • Proficiency with CFD tools such as ANSYS Fluent/CFX, STAR-CCM+, SU2, OpenFOAM, or equivalent.
    • Solid understanding of:
    • Shock–boundary layer interactions
    • High speed compressible aerodynamics
    • Stability and control principles


    Should you really join us?

    If you like learning, if you like figuring things out by yourself without others telling you how to do it - and thrive under work pressure to ship missiles - then this is for you. Join us to take ownership of your work. We are a lean team - there is no rule book to what we're doing. You have an end goal - which is based on a real product - and you need to get it done your own way. It's hard, and we all love it here.


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