At a Glance
- Tasks: Join us to develop innovative models and conduct wind tunnel testing in nonlinear aeroelasticity.
- Company: Be part of the University of Bristol, a leading institution in engineering research.
- Benefits: Enjoy a collaborative environment with opportunities for professional growth and impactful research.
- Why this job: Contribute to cutting-edge research with real-world applications and work alongside industry partners.
- Qualifications: Ideal candidates have experience in dynamic analysis, mathematical modelling, and excellent communication skills.
- Other info: This is a full-time role with fixed funding until August 2026, promoting diversity and inclusion.
The predicted salary is between 36000 - 60000 £ per year.
Research Associate/Senior Research Associate in Nonlinear Aeroelasticity
2 days ago Be among the first 25 applicants
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The role
We are seeking a motivated interdisciplinary researcher to join the University of Bristol, as part of an industrially funded project in the field of Nonlinear Aeroelasticity. This exciting role offers the opportunity to contribute to cutting-edge research to obtain methodologies, tools and processes for nonlinear aeroelastic stability analysis used for novel design and certification purposes.
The research aims at developing experimentally validated models for nonlinear aeroelastic systems in the presence of freeplay. The work will involve developing mathematical models to describe the nonlinear dynamics of two experimental aeroelastic rigs and conducting numerical and experimental bifurcation analysis to explore their nonlinear behaviour.
The research will also involve conducting wind tunnel testing at the University of Bristol wind tunnel laboratory.
The successful candidate will work closely with the industrial partner and with another researcher working on the experimental side of the project. This position is ideal for researchers with a passion for innovation and an interest in developing and leading novel numerical and experimental test campaigns within an academic or industrial setting.
What will you be doing?
- Developing nonlinear mathematical models for nonlinear systems (e.g. incorporating freeplay) and conducting experimental validations through a range of parameters.
- Supporting the development of the experimental aeroelastic systems and wind tunnel testing to experimentally examine their nonlinear behaviour, to establish their describing experimental bifurcation diagrams.
- Development of validated representative numerical models of the aeroelastic systems and conducting bifurcation analysis using continuation techniques.
- Undertaking technical discussions with industrial partners in the project and researchers across the University of Bristol and presenting results from this work at regular progress meetings.
- Producing technical reports to meet the required deliverables of the project.
- Disseminating the results through conference and journal papers arising from this work as appropriate.
You should apply if
- You are interested in developing a research portfolio in numerical and experimental aeroelasticity and nonlinear dynamics
- You are interested joining a world leading team in aeroelasticity and nonlinear dynamics in a project with high industrial impact.
- You have good experience in dynamic analysis of nonlinear structures and mathematical modelling.
- You have experience in the analysis and interpretation of experimental and numerical data sets.
- You have excellent oral and written communication skills.
- Are a self-starter and proactive; able to define and produce new processes and procedures.
- Inquisitive nature with an interest and skills in problem-solving.
- You have experience in publishing research papers and presenting at conferences/workshops.
Additional information
To find out more about what it\’s like to work in the Faculty of Engineering, and how the Faculty supports people to achieve their potential, please see our staff blog:
Contract type: Open ended with fixed funding until 15/8/2026
Work pattern: Full time/1 FTE
Grade: I / J
The grade of the role offered will be determined based on the skills, qualifications, and experience you bring to the position.
School/Unit: School of Civil, Aerospace and Design Engineering
This advert will close at 23:59 UK time on Wednesday 16th July.
Interviews are expected to take place on Monday 21st July.
The University of Bristol aims to be a place where everyone feels able to be themselves and do their best in an inclusive working environment where all colleagues can thrive and reach their full potential. We want to attract, develop, and retain individuals with different experiences, backgrounds and perspectives – particularly people of colour, LGBT+ and disabled people – because diversity of people and ideas remains integral to our excellence as a global civic institution.
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Research Associate/Senior Research Associate in Nonlinear Aeroelasticity employer: University of Bristol
Contact Detail:
University of Bristol Recruiting Team
StudySmarter Expert Advice 🤫
We think this is how you could land Research Associate/Senior Research Associate in Nonlinear Aeroelasticity
✨Tip Number 1
Network with professionals in the field of nonlinear aeroelasticity. Attend relevant conferences or workshops where you can meet researchers and industry experts. This will not only help you gain insights into the latest developments but also increase your chances of being referred for the position.
✨Tip Number 2
Familiarise yourself with the University of Bristol's research outputs in nonlinear aeroelasticity. Understanding their current projects and methodologies will allow you to tailor your discussions during interviews, showcasing your genuine interest and knowledge about their work.
✨Tip Number 3
Prepare to discuss your previous research experiences in detail, especially those related to dynamic analysis and mathematical modelling. Be ready to explain how your skills can contribute to the specific goals of the project at the University of Bristol.
✨Tip Number 4
Practice your presentation skills, as you'll need to communicate complex ideas clearly. Consider simulating a technical discussion or presentation with a friend or mentor to refine your ability to convey your research effectively, which is crucial for this role.
We think you need these skills to ace Research Associate/Senior Research Associate in Nonlinear Aeroelasticity
Some tips for your application 🫡
Tailor Your CV: Make sure your CV highlights relevant experience in nonlinear dynamics, mathematical modelling, and experimental validation. Use specific examples from your past work that align with the responsibilities outlined in the job description.
Craft a Strong Cover Letter: In your cover letter, express your passion for research in aeroelasticity and your interest in the specific project at the University of Bristol. Mention any previous experience with wind tunnel testing or bifurcation analysis to demonstrate your suitability for the role.
Highlight Communication Skills: Since excellent oral and written communication skills are essential for this position, provide examples of how you've effectively communicated complex research findings in the past, whether through reports, presentations, or publications.
Showcase Problem-Solving Abilities: Include instances where you've successfully tackled challenges in research or project work. This could involve developing new processes or methodologies, which is particularly relevant to the innovative nature of the role.
How to prepare for a job interview at University of Bristol
✨Showcase Your Research Passion
Make sure to express your enthusiasm for nonlinear aeroelasticity and how it aligns with your career goals. Discuss any relevant projects or research you've undertaken that demonstrate your commitment to this field.
✨Prepare for Technical Questions
Expect to be asked about mathematical modelling, bifurcation analysis, and experimental validation techniques. Brush up on these topics and be ready to discuss your previous experiences in detail.
✨Highlight Collaboration Skills
Since the role involves working closely with industrial partners and other researchers, emphasise your teamwork and communication skills. Share examples of successful collaborations from your past experiences.
✨Demonstrate Problem-Solving Abilities
Be prepared to discuss how you approach complex problems in research. Provide specific examples of challenges you've faced and how you overcame them, particularly in experimental or numerical contexts.