Rolls-Royce Low-Emission Combustion System Takes Off Into Fl
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Rolls-Royce Low-Emission Combustion System Takes Off Into Flight Test Phase

Rolls-Royce has successfully entered the final phase of testing it’s ALECSys (Advanced Low Emissions Combustion System) demonstrator engine, this time at altitude. The demonstrator took to the skies attached to the Rolls-Royce Boeing 747 Flying Test Bed in Tucson, Arizona, USA. The test programme has included flights up to 40,000 feet as well as a number of engine relights at different conditions, all of which have been successful.

The innovative lean-burn combustion system improves the pre-mixing of fuel and air prior to ignition, enabling cleaner combustion of the fuel, which results in lower NOX and particulate emissions.

The ALECSys engine demonstrator has previously completed a comprehensive set of ground tests, including icing, water ingestion, ground operability, emissions and running on 100% Sustainable Aviation Fuel (SAF).

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Simon Burr, Director of Product Development and Technology, Civil Aerospace, Rolls-Royce, said: “We are very pleased to see the ALECSys engine now flying. This flight testing is a key part of our drive to not only improve engine efficiency but all aspects of environmental performance. It is part of the wider Rolls Royce sustainability strategy, which also includes support for the increased use of sustainable aviation fuels (SAF) and intensive research into alternative propulsion architectures and technologies.”

The ability to test ALECSys low-emissions technology in flight will allow the verification of altitude operability performance and provides experience of operating a lean-burn system to maximise maturity ahead of a future entry into service.

ALECSys is part of the UltraFan® engine demonstrator programme, which offers a 25% fuel saving over the first generation of Trent engines. The ALECSys programme is supported by the EU’s Clean Sky programme, and in the UK by the Aerospace Technology Institute and Innovate UK.


Publishdate:
Nov 17, 2022