Hybrid Propulsion Systems: Real-world, megawatt-class testing
Our Hybrid Propulsion Systems capability supports the development, integration and validation of future propulsion systems where performance, operating environment and system integration are critical. By bringing together thermal, cryogenic, electrical, environmental and altitude testing capability under one roof, Nottingham can help partners test advanced propulsion systems in representative conditions – from hybrid and ammonia-based systems through to cryogenic, superconducting, hyperconducting and high-power electric propulsion technologies. The Hybrid Propulsion Systems Building supports work from component-level development through to integrated system testing, helping partners reduce technical risk before committing to full demonstrator or field trials.
- 300mm thick reinforced concrete floors (15 kPa) supported by 15-metre deep foundations to handle heavy multi-megawatt machinery
- Direct 5MW electrical supply integrated with the PEMC, providing the overhead required for next-generation system loads and high-power electrical machines and drives
- Cryogenic integration through specialised systems cooling devices to -253°C, facilitating the development of hyperconducting and superconducting motor drives
- Thermal and acoustical insulation in the facility
The facility is divided into specialised cells designed to support industries operating in the most demanding environments, from high-altitude aerospace to commercial marine propulsion.