Completed Materials & Manufacturing Clean Energy

Integrated Flywheel KERS – A low cost, lightweight hybrid solution

In plain English

AI plain-English summary

A Lotus Evora will soon carry a spinning flywheel in its gearbox, capturing energy normally lost during braking and reusing it for acceleration. This project tackles a stubborn problem in low-carbon transport: hybrid systems are effective but expensive and heavy. Current battery hybrids add cost, weight, and complexity that limit their adoption, especially in smaller or performance-oriented cars. Mechanical flywheels—already proven in Formula One—store energy as rotational motion rather than chemical charge, offering a lighter, cheaper alternative. The consortium aims to integrate Flybrid’s race-proven flywheel directly into a manual gearbox, adding an electronic clutch and control software to manage energy capture and release. If successful, the technology could cut CO₂ emissions from a production road car while boosting power and torque—without the weight penalty of a battery pack. The project uses matched funding from the Technology Strategy Board to push the system to production-ready status. Beyond the car itself, this UK-led innovation could generate future revenue and strengthen the domestic supply chain for low-carbon drivetrain components, making hybrid technology more accessible across vehicle classes.

View original technical description
The Integrated Mechanical Flywheel KERS Low cost, Lightweight hybrid drive project is an Industrial Research initiative designed to accelerate the maturation of the race proven mechanical flywheel energy storage system from Flybrid for use in a Lotus Evora road car. The integration of the flywheel into the manual gearbox will deliver a CO2 reduction while increasing available power and torque. The project will use matched funding through the Technology Strategy Board IDP 10 competition to accelerate the development of the Flywheel, electronic clutch, vehicle integration and control software by the consortium members to a production intent status. This UK led low carbon technology will generate a positive future revenue stream and support the growth of the UK supply chain.

View the original record at the funder ↗

Related Research

Grants with similar aims, by meaning.

Flybrid Ultra Low Cost KERS
Low Cost Laminated Electric Flywheel
KinerStor-Kinetic Energy Recovery and storage System
FLYBUS -Flywheel Based Mechanical Hybrid System for Bus & Commercial Vehicle Applications including Retrofit Programme
Ultra Cost Efficient Hybrid Powertrain

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.