Completed Clean Energy Engineering

Kinetic energy recovery for urban logistics applications (KERS-URBAN)

In plain English

AI plain-English summary

Delivery vans in UK cities will soon test a mechanical flywheel system that captures braking energy to cut fuel use and tailpipe emissions. This matters because urban delivery fleets—from supermarket trucks to builders’ merchant lorries—run stop-start routes that waste large amounts of energy as heat during braking. Current hybrid systems rely on heavy batteries, which add weight and cost. The kinetic energy recovery system (KERS) from Alternatech stores braking energy in a spinning flywheel and releases it during acceleration, reducing the load on the diesel engine without adding battery mass. If the trial succeeds, the technology could lower fuel consumption and CO₂ emissions across thousands of urban delivery vehicles. Noise measurements will also assess whether quieter engine operation reduces disturbance for residents on delivery routes. The project will further optimise route planning to match the KERS system’s performance characteristics, maximising savings. The partners—Howdens, Sainsbury’s, Alternatech, and Imperial College London—will retrofit 10 vehicles and compare them against conventional fleet vehicles using telematics data and emissions modelling. This is an applied engineering trial, not fundamental science; its direct aim is a commercially viable retrofit that improves urban air quality and cuts operating costs for logistics companies.

View original technical description
This collaborative project aims to evaluate the energy and emissions benefits of a kinetic energy recovery system (KERS) supplied by Alternatech for urban delivery vehicles, including both articulated and rigid vehicles. The partners include Howdens, Sainsbury’s, Alternatech and Imperial College London. During the trial period, Howdens and Sainsbury’s will introduce 10 vehicles modified by Alternatech into their fleet alongside conventional vehicles. Vehicle telematics data will be collected by Imperial College to quantify the reduction in fuel consumption, CO2 emissions. Emissions testing and advanced vehicle emissions modelling will enable the team to evaluate the benefit of this technology to urban air quality. Furthermore, as the KERS technology reduces the load on the diesel engine, noise measurements will be used to evaluate the potential benefits to residents. This project will also evaluate the opportunity to optimise delivery routes and schedules to best-match the performance characteristics of the KERS system to give the greatest emissions and fuel consumption reductions.

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Original classification

Collaborative R&D

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