Senior Aerodynamics Engineer

DYSON

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 employ high-fidelity CFD and detailed flow-field analysis to drive simulation-led design from concept to product, shaping aerodynamic and acoustic performance from the outset.

In a small, specialised aero-acoustic-thermal team, you will own opportunities, partner with academia, and push the limits of virtual analysis and experimental validation to ensure Dyson’s

Qualifications

  • Degree (or higher) in Aerospace or Mechanical Engineering or closely related field.
  • Strong grounding in aerodynamics, aeroacoustics, and thermodynamics; applies first-principles thinking to multi-physics problems.
  • Proven experience in turbomachinery design/analysis using industry-standard tools.
  • Experience with high-fidelity CFD and simulation-led design.
  • Strong experimental capabilities for flow, pressure, and temperature measurements.
  • Ability to correlate simulation with experimental data and drive modelling improvements.
  • Excellent communication and collaboration skills, with ability to mentor junior engineers.

Responsibilities

  • Lead aeroacoustic design and analysis of next-generation Dyson Digital Motors using high-fidelity CFD and advanced modelling.
  • Design and optimise motor aeroacoustic systems with emphasis on system integration and performance.
  • Identify and develop innovative aerodynamic/aeroacoustic solutions using first-principles analysis and experiments.
  • Translate research into practical engineering solutions bridging early-stage discovery and product delivery.
  • Own simulation-led design workflows to inform decisions and reduce risk.
  • Advance modelling capabilities including new tools and automation to improve accuracy and speed.
  • Develop and champion advanced experimental techniques for ultra-small-scale measurements.
  • Analyze data and provide actionable insights to engineering teams and stakeholders.
  • Support technology transfer into product development with delivery teams.
  • Mentor and develop junior engineers in best practices for simulation and experimentation.

Skills

Aeroacoustics
CFD
Multiphysics
Turbomachinery
Experimental methods
Data analysis
Communication
Mentoring

Education

Degree in Aerospace or Mechanical Engineering

Tools

Concepts NREC
ADT
NUMECA
ANSYS CFX/Fluent
PowerFLOW

Job description

Summary

Salary : Competitive

Job Family : Engineering Science and Research

Location : United Kingdom - Malmesbury Office

About us

Dyson is a global technology company driven by engineering, innovation and a passion for solving problems others ignore. We challenge convention to create market‑leading products that are different and better, continuously refining ideas from concept through to mass production. Within our world‑class Research, Design and Development (RDD) department, we identify and develop new technologies, working closely with NPI teams and technical specialists to integrate them into future products for global markets. We foster a culture of creativity, collaboration and bold thinking, where individuals are encouraged to challenge ideas, learn from mistakes and pursue better solutions.

About the role

We are seeking a Senior Aeroacoustics Engineer to lead the aeroacoustics development of next‑generation Dyson Digital Motors. In this role, high‑fidelity simulation and detailed flow‑field analysis (CFD) are your primary tools to drive innovative, simulation‑led design from concept to real product. You will shape aerodynamic and acoustic performance from the very first stages, ensuring we make fast, confident, and informed design decisions.

You’ll take ownership of identifying, evaluating, and advancing new aerodynamic and aeroacoustics opportunities, both through internal research and by partnering with top academic institutions. As part of a small, highly specialised aero‑acoustic‑thermal team, deep technical expertise, technical curiosity, and a proactive, solution‑focused mindset are essential.

You’ll push the limits of virtual analysis and compressor design, reducing development risk and timeline by ensuring early‑stage simulation is robust, accurate, and actionable. Then, as designs mature, you will champion experimental validation, applying and developing advanced measurement techniques at ultra‑small scales. Ensuring close alignment between simulation and real‑world physics is critical to achieving Dyson’s uncompromising performance standards.

This role is made for someone who thrives on engineering depth, enjoys solving complex, multi‑physics problems, and is determined to set new standards in aeroacoustics performance and motor design.

Key responsibilities
  • Lead aeroacoustic design and analysis of next‑generation Dyson Digital Motors, using high‑fidelity CFD and advanced modelling techniques to drive performance improvements from concept through to development.
  • Design and optimise motor aeroacoustic systems across both early concept and detailed development stages, with a strong focus on system integration and overall product performance.
  • Identify and develop innovative aerodynamic and aeroacoustic solutions, applying first‑principles thinking and advanced analytical (Ansys CFD, PowerFlow, DNS, etc) and experimental methods to solve complex, multi‑physics challenges.
  • Translate research into practical engineering solutions, bridging the gap between early‑stage discovery and product delivery to enable robust and scalable motor technologies.
  • Own simulation‑led design workflows, ensuring robust, accurate, and efficient virtual analysis that informs early‑stage decision‑making and reduces development risk and timelines.
  • Advance modelling capability and methodologies, including evaluation and adoption of new tools, approaches, and automation/AI to continuously improve simulation accuracy and speed.
  • Develop, refine, and champion advanced experimental techniques, ensuring accurate capture of flow physics and acoustic behaviour at ultra‑small scales.
  • Analyse and interpret experimental and simulation data, translating findings into clear insights and actionable recommendations for engineering teams and senior stakeholders.
  • Support technology transfer into product development, working closely with delivery teams to ensure robust, scalable implementation of research outcomes.
  • Mentor and support junior engineers, sharing expertise, promoting best practices, and contributing to the growth of aeroacoustic capability within the team.
About you
  • A degree (or higher) in Aerospace, Mechanical Engineering, or a closely related discipline.
  • Strong grounding in aerodynamics, aeroacoustics, and thermodynamics, with the ability to apply first‑principles thinking to complex, multi‑physics engineering problems.
  • Proven experience in turbomachinery design and analysis, using industry‑standard tools (e.g. Concepts NREC, ADT, NUMECA, ANSYS CFX/Fluent, PowerFLOW or equivalent).
  • Demonstrated expertise in simulation‑led design, including the application of high‑fidelity CFD to inform early‑stage decision‑making and design optimisation.
  • Strong capability in experimental methods, including pressure, temperature, and flow measurements, with experience in designing, executing, and leading rigorous experimental investigations.
  • Ability to correlate simulation and experimental data, ensuring accurate representation of physical behaviour and driving continuous improvement in modelling approaches.
  • Strong analytical and problem‑solving skills, with high attention to detail and the ability to navigate complex engineering challenges.
  • Effective collaborator, able to work seamlessly within multidisciplinary teams to deliver integrated engineering solutions.
  • Clear and confident communicator, capable of conveying complex technical information in a concise and structured manner to both technical peers and senior stakeholders.
  • Proactive and innovation‑driven mindset, with the ability to generate and implement creative solutions aligned with Dyson’s engineering principles.
  • Adaptable and resilient, comfortable operating in a fast‑paced, dynamic environment with evolving priorities.
  • Strong planning and organisational skills, with the ability to manage multiple workstreams and deliver high‑quality outputs under pressure.
  • Demonstrated initiative and ownership, with a willingness to contribute to new technology areas or product categories when required.
  • Experience in mentoring and developing engineers, particularly in best practices for simulation, experimentation, and turbomachinery design, is highly desirable.
Benefits

At Dyson, Reward goes beyond just salary and bonuses. Through a comprehensive package of Financial, Lifestyle, and Health Benefits, we provide support tailored to every stage of life and the moments that matter most.

Working policy

At Dyson, our vibrant campus culture is built on in‑person collaboration, creativity, and shared learning. Working side by side not only fuels our innovation, but also creates a strong sense of belonging. To nurture this dynamic and inclusive environment, we do not offer a regular hybrid working arrangement.

Dyson is an equal opportunity employer. We know that great minds don’t think alike, and it takes all kinds of minds to make our technology so unique. We welcome applications from all backgrounds and employment decisions are made without regard to race, colour, religion, national or ethnic origin, sex, sexual orientation, gender identity or expression, age, disability, protected veteran status or other any other dimension of diversity.

Posted: 24 July 2026

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