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Integrated design and operation assessment of a preheating system for liquid hydrogen fueled engines

dc.contributor.authorRompokos, Pavlos
dc.contributor.authorKang, Sangkeun
dc.contributor.authorRoumeliotis, Ioannis
dc.date.accessioned2026-05-07T08:56:59Z
dc.date.available2026-05-07T08:56:59Z
dc.date.freetoread2026-05-07
dc.date.issued2026-08
dc.date.pubOnline2026-04-24
dc.description.abstractCryogenic liquid hydrogen (LH2) is highly considered as a potential long-term solution toward emissions reduction in the aviation sector. However, one of the major challenges that the handling and integration of the cryogenic fuel introduces is thermal management. In this paper, the design space exploration of an LH2 conditioning is presented to identify potential feasible solutions and limitations for its implementation. The preheating system comprises of secondary combustor that feeds a heat exchanger with hot gases to adequately supply the main engine with gaseous hydrogen at a constant temperature. The design space exploration addresses the heat exchanger design as well as the effect of retrofitting the system on kerosene-designed engines with different specific thrust. For performing the analysis, four baseline engine models and their equivalent integrated versions with the fuel preheating system have been created. Additionally, a framework for the sizing and off-design performance characterization of the heat exchanger is introduced. The integrated system performance across the design space is analyzed and a novel control strategy of the preheating system is proposed with the view of avoiding water vapor condensation of the hot gases of the preheating module. By applying this control, it was found that heat exchanger designs with lower effectiveness are less likely to lead to water condensation conditions and can adequately be supported with air sourced from the bypass duct without significant penalty in the overall energy efficiency of the engine.
dc.description.journalNameJournal of Engineering for Gas Turbines and Power
dc.description.sponsorshipInnovate UK (Project Reference No. 10039770 (LH2GT)
dc.identifier.citationRompokos P, Kang S, Roumeliotis I. (2026) Integrated design and operation assessment of a preheating system for liquid hydrogen fueled engines. Journal of Engineering for Gas Turbines and Power, Volume 148, Issue 8, August 2026, Article number 081015en_UK
dc.identifier.eissn1528-8919
dc.identifier.elementsID869511
dc.identifier.issn0742-4795
dc.identifier.issueNo8
dc.identifier.paperNo081015
dc.identifier.urihttps://doi.org/10.1115/1.4071241
dc.identifier.urihttps://dspace.lib.cranfield.ac.uk/handle/1826/25216
dc.identifier.volumeNo148
dc.languageEnglish
dc.language.isoen
dc.publisherAmerican Society of Mechanical Engineers (ASME)en_UK
dc.publisher.urihttps://asmedigitalcollection.asme.org/gasturbinespower/article/148/8/081015/1231640/Integrated-Design-and-Operation-Assessment-of-a
dc.rightsAttribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject40 Engineeringen_UK
dc.subject7 Affordable and Clean Energyen_UK
dc.subjectEnergyen_UK
dc.subject4001 Aerospace engineeringen_UK
dc.subject4004 Chemical engineeringen_UK
dc.subjectDesignen_UK
dc.subjectEnginesen_UK
dc.subjectFlow (Dynamics)en_UK
dc.subjectHeat exchangersen_UK
dc.subjectHydrogenen_UK
dc.subjectTemperatureen_UK
dc.subjectFuelsen_UK
dc.titleIntegrated design and operation assessment of a preheating system for liquid hydrogen fueled enginesen_UK
dc.typeArticle

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