IP Library › Granted Patent US 12,269,605
Granted Patent B2
US 12,269,605 · App. 17/794,005 · Granted Apr 8, 2025

Propulsion system thermal management with propulsor fluid flow inlet port and ram fluid flow inlet port

Inventors: James Sheppard (Bristol, GB); Andrea De Matteis (Bristol, GB)
Assignee: VERTICAL AEROSPACE GROUP LIMITED
B64D33/10B64C29/0025B64D27/355
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Quick Facts
Patent No.
US 12,269,605
App. No.
17/794,005
Granted
Apr 8, 2025
Kind
B2
Abstract

A flying vehicle propulsion system including a propulsor, a drive system and a heat exchanger. The drive system is arranged to drive the propulsor and the heat exchanger is arranged to thermally regulate at least part of the drive system. The propulsor is arranged to move fluid, thereby producing a propulsor fluid flow having a main direction. The system is arranged such that in a first operation configuration, at least part of the propulsor fluid flow is incident on the heat exchanger, thereby thermally regulating the at least part of the drive system.

Claims (20)

1. A flying vehicle propulsion system comprising:

a propulsor, a drive system and a heat exchanger, wherein the drive system is arranged to drive the propulsor and the heat exchanger is arranged to thermally regulate at least part of the drive system, the propulsor being arranged to move fluid, thereby producing a propulsor fluid flow having a main direction, and wherein;

the flying vehicle propulsion system is arranged such that in a first operation configuration, at least part of the propulsor fluid flow is incident on the heat exchanger, thereby thermally regulating the at least part of the drive system;

in a second operation configuration, the flying vehicle propulsion system is arranged such that a ram fluid flow produced by forward flight of the vehicle equipped with the flying vehicle propulsion system, is incident on the heat exchanger, thereby thermally regulating the at least part of the drive system;

the flying vehicle propulsion system further comprises a housing in which the heat exchanger is provided;

the housing comprises a propulsor fluid flow inlet port in fluid communication with a first chamber of the housing on an inlet side of the heat exchanger, the propulsor fluid flow inlet port being arranged to receive the propulsor fluid flow for ingestion into the first chamber and heat exchanger; and

the housing further comprises a ram fluid flow inlet port in fluid communication with the first chamber of the housing on the inlet side of the heat exchanger, the ram fluid flow inlet port being arranged to receive the ram fluid flow for ingestion into the first chamber and the heat exchanger.

2. The flying vehicle propulsion system according to claim 1 , wherein the main direction of the propulsor fluid flow is different from a main direction of the ram fluid flow.

3. The flying vehicle propulsion system according to claim 2 , wherein the main direction of the propulsor fluid flow is different from a main direction of the ram fluid flow.

4. The flying vehicle propulsion system according to claim 1 , wherein the propulsor fluid flow inlet port comprises a valve arranged to close the propulsor fluid flow inlet port when the valve is closed and open the propulsor fluid flow inlet port when the valve is open.

5. The flying vehicle propulsion system according to claim 4 , wherein the valve, the propulsor fluid flow inlet port and the ram fluid flow inlet port are arranged such that the propulsor fluid flow provides a force tending to open the valve and the ram fluid flow provides a force tending to close the valve.

6. The flying vehicle propulsion system according to claim 1 , wherein the housing comprises an exit port in fluid communication with a second chamber of the housing on a discharge side of the heat exchanger, the exit port being arranged to exhaust fluid that has passed from the first chamber, through the heat exchanger to the second chamber, out of the housing.

7. The flying vehicle propulsion system according to claim 6 , wherein the exit port is provided on a side wall of the housing.

8. The flying vehicle propulsion system according to claim 1 , wherein the heat exchanger is arranged obliquely within the housing.

9. The flying vehicle propulsion system according to claim 1 , wherein at least part of the drive system is provided within the housing.

10. The flying vehicle propulsion system according to claim 1 , wherein the flying vehicle propulsion system comprises a pylon arranged to mount the propulsor to a flying vehicle.

11. The flying vehicle propulsion system according to claim 1 , wherein the drive system comprises a fuel cell which is at least partially thermally regulated by the heat exchanger.

12. A flying vehicle comprising the flying vehicle propulsion system of claim 1 .

13. The flying vehicle according to claim 12 , wherein the flying vehicle is arranged for vertical take-off and/or landing and/or short take-off and/or rolling vertical landing with the propulsor providing at least part of a vertical lift force required.

14. The flying vehicle according to claim 12 , wherein the flying vehicle comprises a forward thrust system arranged to provide forward thrust for at least one of taxiing, conventional take-off, short take-off or forward flight.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2022
From: SHEPPARD, JAMES; DE MATTEIS, ANDREA
To: VERTICAL AEROSPACE GROUP LIMITED
Reel/Frame 060564/0136 →
Priority Claims (1)
GB 2001220 · Jan 29, 2020 · national
Continuity (1)
Related Publication 20230050892A1 · Feb 16, 2023
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