Next Generation Engines
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Next Generation Engines
Rolls-Royce Proprietary information Next Generation Engines Mark Thomas CEng FRAeS Chief Engineer – Technology and Future Programmes © 2014 Rolls-Royce plc The information in this document is the property of Rolls-Royce plc and may not be copied or communicated to a third party, or used for any purpose other than that for which it is supplied without the express written consent of Rolls-Royce plc. This information is given in good faith based upon the latest information available to Rolls-Royce plc, no warranty or representation is given concerning such information, which must not be taken as establishing any contractual or other commitment binding upon Rolls-Royce plc or any of its subsidiary or associated companies. Trusted to deliver excellence Rolls-Royce Proprietary Information information World air traffic growth Rolls-Royce Proprietary proprietary information Information 3 2050 environmental goals 007204 Rolls-Royce Proprietary Information information A successful journey Trent engine family Rolls-Royce Proprietary proprietary information Information Relentless pursuit of improvements Rolls-Royce Proprietary Information information Efficiency improvements - cycle potential 0.7 0.700 Specific Fuel Consumption lb/hr / lbf @ 0.8Mn 0.65 Current High Bypass ratio Engines 0.6 Higher Pressures, Temperatures, Efficiencies 0.55 0.5 Novel Core Systems 0.45 Higher bypass ratios Novel LP Systems Approaching Theoretical Limit of Propulsive Efficiency 0.4 0.35 0.3 Propulsive Efficiency Approaching Theoretical Limit of Thermal Efficiency Rolls-Royce Proprietary Information information Thermal “Cycle” Efficiency Rolls-Royce Proprietary information Driving for higher efficiency Can we align the video and the next slide Rolls-Royce Proprietary Information information Rolls-Royce Proprietary information UltraFanTM – further technology advances Rolls-Royce Proprietary Information information Variable pitch UltraFanTM Variable Pitch Fan Advantages Nacelle and Fan Case Slimline Nacelle Thinner, Shorter Outer Cowls • Facilitates low pressure ratio fan operability • Eliminates requirement for VAN • Enables deletion of thrust reverser • Facilitates slimline nacelle Very High Bypass Ratio Pitch Change Mechanism Variable Pitch Fan Challenges • Fan aerodynamics • Complex rotating pitch change mechanism • Challenging reverse thrust Reduction Gearbox Reverse thrust mode requires flow to turn sharp lips of cold nozzle & core splitter Rolls-Royce Proprietary Information information EXPORT CONTROLLED – NLR per EAR99 Next generation product evolution Advance UltraFan™ / Open Rotor Technology EIS Readiness 2020+ 2025+ Bypass Ratio 11+ 15+ Overall Pressure Ratio 60+ 70+ Efficiency relative to Trent 700 20%+ 25%+ Trent XWB World’s most efficient engine Rolls-Royce Proprietary Information information 007638 Leading technologies and capabilities Lightweight CTi Fan System & Externals Advanced Materials (CMCs, Ni Alloys) Lean Burn Combustion VHBR Enablers Electrical, Controls, EHM & Systems Integration Advance Core Architecture Key Benefits Fuel Burn Advanced Manufacturing Research Centres Virtual Engine (Design & Validation in the Computer) Environment Maintenance Lifecycle Cost Additive Layer Manufacturing Rolls-Royce Proprietary proprietary information Information Aerothermal Excellence Comprehensive full scale demonstration ALPS Advance EFE Rolls-Royce Proprietary proprietary information Information ALECSYS UltraFan Novel propulsion concepts Image courtesy of NEWAC Rolls-Royce Proprietary Information information Integration challenges and opportunities Trent XWB Advance UltraFan™ Source: Boeing/NASA Rolls-Royce Proprietary Information information Open Rotor Source: Airbus Hybrid turbo-electric propulsion Gas turbine & generator Electrical energy storage system Electrically driven Propulsive fans E-Thrust Concept Rolls-Royce Proprietary Information information Rolls-Royce Proprietary Information information Better Power for a Changing World Rolls-Royce proprietary information
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