IP Library Granted Patent US 12,077,312
Granted Patent B2
US 12,077,312 · App. 17/948,518 · Granted Sep 3, 2024

Aircraft having a dihydrogen transport pipe and an embedding channel for said transport pipe

Inventors: Jérôme Milliere (Toulouse, FR); Romain Joubert (Toulouse, FR); Lionel Teyssedre (Blagnac, FR); Alistair Forbes (Toulouse, FR)
Assignees: Airbus SAS; Airbus Operations SAS
B64D37/32A62C3/08A62C35/68B64D37/30
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Quick Facts
Patent No.
US 12,077,312
App. No.
17/948,518
Granted
Sep 3, 2024
Kind
B2
Abstract

An aircraft having at least one transport pipe in which dihydrogen flows and, for each transport pipe, an embedding channel in which the transport pipe is housed. The embedding channel has a gutter that has a bottom and an opening opposite the bottom and a cover that covers the opening of the gutter. The cover constitutes an outer wall of the aircraft in direct contact with external air surrounding the aircraft. The cover has ventilation windows passing through it that allow the passage of the dihydrogen towards the outside. With such an arrangement, even in the event of dihydrogen leaking into the embedding channel, the dihydrogen is automatically evacuated towards the outside of the aircraft.

Claims (28)

1. An aircraft comprising:

at least one transport pipe in which dihydrogen flows and, for each transport pipe,

an embedding channel in which said transport pipe is housed,

wherein the embedding channel has a gutter that has a bottom and an opening opposite the bottom and a cover that covers the opening of the gutter,

wherein the cover constitutes an outer wall of the aircraft in direct contact with external air surrounding the aircraft, and

wherein the cover has ventilation windows passing therethrough configured to allow passage of any dihydrogen present in said embedding channel towards an outside of the aircraft.

2. The aircraft according to claim 1 , wherein each ventilation window is closed by a stopper made from a breathable material that is impermeable to external water and permeable to dihydrogen present in the embedding channel.

3. The aircraft according to claim 1 ,

wherein each gutter has at least one low point at the bottom,

wherein the aircraft has, for each low point, an evacuation pipe, of which a first end is fluidically connected to the gutter at the low point and of which a second end opens towards the outside of the aircraft, and

wherein the evacuation pipe has a descending slope between the first end and the second end.

4. The aircraft according to claim 1 , wherein the aircraft has a ventilation system that is arranged to heat external air and to send this air thus heated into each embedding channel.

5. The aircraft according to claim 4 , wherein the ventilation system comprises:

an air inlet that is open towards a front of the aircraft,

an aeration channel fluidically connected between the inlet and each embedding channel, and

at least one heating means housed in the aeration channel.

6. The aircraft according to claim 5 ,

wherein the aeration channel has a port-side sub-channel extending on a first side of the aeration channel and supplying first embedding channels and a starboard-side sub-channel extending on a second side of the aeration channel and supplying second embedding channels,

wherein there is an auxiliary heating means in each sub-channel,

wherein the air inlet has a central aperture equipped with a fan, a port-side lateral aperture associated with the port-side sub-channel and a starboard-side lateral aperture associated with the starboard-side sub-channel, a selection system that is arranged to ensure that the port-side sub-channel and the first embedding channels are supplied alternately via the port-side lateral aperture or via the central aperture and that the starboard-side sub-channel and the second embedding channels are supplied alternately via the starboard-side lateral aperture or via the central aperture.

7. The aircraft according to claim 6 ,

wherein the selection system has a port-side door and a starboard-side door, and

wherein each door is configured to move between

a first position in which the door shuts off a part of the central aperture that supplies the side that said door is on and does not shut off the lateral aperture corresponding to the side that said door is on, and

a second position in which the door shuts off the lateral aperture corresponding to the side that said door is on and does not shut off the part of the central aperture that supplies the side that said door is on.

8. The aircraft according to claim 4 ,

wherein the gutter has an intermediate floor that separates the gutter into an upper gutter in which the transport pipe is fastened and a lower gutter in which the heated air coming from the ventilation system circulates, and

wherein the intermediate floor has holes passing therethrough.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2022
From: MILLIERE, JÉRÔME; JOUBERT, ROMAIN; TEYSSEDRE, LIONEL; FORBES, ALISTAIR
To: AIRBUS SAS; AIRBUS OPERATIONS SAS
Reel/Frame 062057/0350 →
Priority Claims (1)
FR 2109990 · Sep 22, 2021 · national
Continuity (1)
Related Publication 20230086167A1 · Mar 23, 2023