Senior Aeroacoustics Engineer - Next-Gen Motor Design

Dyson GmbH

Malmesbury

On-site

GBP 90,000 - 130,000

Full time

14 days+
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Job summary

Dyson is seeking a Senior Aeroacoustics Engineer to lead aeroacoustics development for next-generation Dyson Digital Motors. You will use high-fidelity CFD and advanced modelling to drive performance from concept to product, shaping both aerodynamic and acoustic outcomes.

You will own simulation-led design workflows, collaborate with top academic partners, and mentor engineers while developing experimental techniques for ultra-small scale measurements.

Qualifications

  • Degree in Aerospace or Mechanical Engineering or closely related field.
  • Strong grounding in aerodynamics, aeroacoustics and thermodynamics.
  • Proven experience with high-fidelity CFD and aeroacoustic design.

Responsibilities

  • Lead aeroacoustic design and analysis of next-generation Dyson Digital Motors using CFD and advanced modelling.
  • Design and optimise motor aeroacoustic systems across early concept to detailed development stages.
  • Identify and advance innovative aerodynamic and aeroacoustic solutions with first-principles thinking.
  • Translate research into practical engineering solutions bridging discovery to product delivery.
  • Own simulation-led design workflows ensuring robust, accurate analysis to reduce risk and timelines.
  • Develop and champion advanced experimental techniques for flow and acoustic measurements.
  • Mentor junior engineers and contribute to aeroacoustic capability growth within the team.
  • Support technology transfer into product development with delivery teams.

Skills

Aeroacoustics
CFD
Turbomachinery design
Experimentation
collaboration

Education

Aerospace/Mechanical Engineering degree

Tools

Concepts NREC
ADT
NUMECA
ANSYS CFX/Fluent
PowerFLOW

Job description

Dyson is seeking a Senior Aeroacoustics Engineer to lead aeroacoustics development for next-generation Dyson Digital Motors. You will use high-fidelity CFD and advanced modelling to drive performance from concept to product, shaping both aerodynamic and acoustic outcomes.

You will own simulation-led design workflows, collaborate with top academic partners, and mentor engineers while developing experimental techniques for ultra-small scale measurements.

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