The Water-Enhanced Turbofan as Enabler for Climate-Neutral Aviation

Author:

Kaiser Sascha,Schmitz Oliver,Ziegler PaulORCID,Klingels Hermann

Abstract

A significant part of the current aviation climate impact is caused by non-carbon-dioxide emissions, mainly nitrogen oxides (NOx) and contrails. It is, therefore, important to have a holistic view on climate metrics. Today’s conventional, but already well-developed, aero-engines are based on the Joule–Brayton cycle, and leave only limited room for improvement in climate impact. The revolutionary Water-Enhanced Turbofan (WET) concept represents a technical step change addressing all relevant emissions by implementing the Cheng cycle, which combines the gas turbine cycle with a Clausius–Rankine steam cycle. This paper builds upon previous publications regarding the WET concept, and outlines the evolution since then. Promising WET configurations are evaluated according to their ability to reduce global warming potential compared to an evolutionarily advanced turbofan engine. A quantitative approach to estimate reduction of NOx emissions through steam injection is presented. The impact on the creation of contrails is considered using the Schmidt-Appleman criterion. In conclusion, all three climate-relevant emissions can be reduced with the WET concept compared to a technologically similar turbofan in terms of CO2 (up to 10%), NOx (more than 90%), and contrails (more than 50%). The resulting in-flight climate impact can be reduced by more than 40% when using fossil kerosene, paving the way to climate-neutral aviation.

Funder

German Federal Ministry for Economic Affairs and Climate Action

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference53 articles.

1. Lee, D.S., Fahey, D.W., Skowron, A., Allen, M.R., Burkhardt, U., Chen, Q., Doherty, S.J., Freeman, S., Forster, P.M., and Fuglestvedt, J. (2021). The Contribution of Global Aviation to Anthropogenic Climate Forcing for 2000 to 2018. Atmos. Environ., 244.

2. (2022, November 15). Pratt & Whitney–PurePower–Family of Engines. Brochure. East Hartford, Connecticut: Pratt & Whitney. Available online: http://newsroom.pw.utc.com/download/PurePowerFamily-S16154.pdf.

3. Chen, S. (2022). Effects of Novel Coronavirus (COVID-19) on Civil Aviation: Economic Impact Analysis, International Civil Aviation Organization (ICAO), Economic Development—Air Transport Bureau.

4. (2011). The Right Flightpath to Reduce Aviation Emissions, Air Transport Action Group (ATAG). Brochure.

5. United Nations Framework Convention on Climate Change (UNFCCC) (December, January 30). The Paris Agreement. Proceedings of the Paris Climate Change Conference (COP 21), Paris, France.

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