Wasserstoffbrennstoffsystemarchitektur mit Sauerstofftrennung und Überhitzung
Anmelder: Hamilton Sundstrand Corporation 🇺🇸
Details
- Veröffentlichungs-Nr.
- EP4467789
- Aktenzeichen
- EP23461595
- Anmeldetag
- 23. Mai 2023
- Veröffentlichung
- 8. Oktober 2025
- Erteilung
- 8. Oktober 2025
- Rechtsraum
- EP
- IPC
- F02C3/22F02C7/224F02C6/00
Abstract
A system 100 comprising: a gas turbine having a combustion chamber 114 and a turbine 116; a first heat exchanger HX1 configured to receive a first stream of compressed air CA1 and a stream of liquid hydrogen LH, wherein the first heat exchanger HX1 is configured to transfer heat between the first stream of compressed air CA1 and the stream of liquid hydrogen LH to yield a stream of liquid oxygen LO and a stream of gaseous hydrogen GH; a second heat exchanger HX2 configured to heat the stream of liquid oxygen LO to yield a stream of gaseous oxygen GO; and a third heat exchanger HX3 configured to receive a stream of flue gas FG from the turbine 116 and at least one of the stream of gaseous hydrogen GH and the stream of gaseous oxygen GO, wherein the third heat exchanger HX3 is configured to transfer heat between the stream of flue gas FG and the stream of gaseous hydrogen GH and/or the stream of gaseous oxygen GO to superheat the stream of hydrogen and/or the stream of oxygen; wherein the system is configured to direct the stream of hydrogen and the stream of oxygen to the combustion chamber, wherein at least one of the stream of hydrogen and the stream of oxygen is superheated.
Anmelder
- Firma
- Hamilton Sundstrand Corporation
- Land
- 🇺🇸 USA
US-amerikanisches Unternehmen der Luft- und Raumfahrtindustrie, das Flugzeugsysteme wie Umweltkontroll-, Energie- und Antriebssysteme entwickelt; heute Teil von Collins Aerospace innerhalb von RTX.
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