Gas turbine engine
10801363 ยท 2020-10-13
Assignee
Inventors
Cpc classification
F05D2260/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D21/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/606
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T50/60
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01D17/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C3/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02C7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pressure relief arrangement for a gas turbine engine comprises a hinged door and a mount spaced from the door. An expandable structure is connected to the door and to the mount such that when the door hinges open the expandable structure expands.
Claims
1. A pressure relief arrangement for a gas turbine engine, the pressure relief arrangement comprising: a hinged door; a mount spaced from the hinged door; and an expandable structure connected to the hinged door and to the mount such that when the hinged door hinges open the expandable structure expands, wherein the expandable structure comprises an expander configured such that the expander can move between a first configuration and a second configuration, the second configuration having a greater volume than the first configuration, and the expander is configured to undergo plastic deformation to transform into and remain in the second configuration.
2. The pressure relief arrangement according to claim 1, wherein the expander comprises slots, holes and/or folds configured such that the expander can move between the first configuration and the second configuration.
3. The pressure relief arrangement according to claim 1, wherein the expander comprises a pop-up structure configured to expand from the first configuration to the second configuration.
4. The pressure relief arrangement according to claim 1, comprising a cable that connects to the mount and to the expander.
5. The pressure relief arrangement according to claim 4, wherein the expander connects to the cable at a single connection point.
6. The pressure relief arrangement according to claim 1, wherein the expander connects directly to the hinged door.
7. The pressure relief arrangement according to claim 1, wherein the expander connects to the hinged door at a plurality of points, or along a perimeter of an area defined by the expander.
8. The pressure relief arrangement according to claim 7, wherein at the location of connection to the hinged door, the area of the expander is greater than 40% of the area of a surface of the hinged door to which the expander is connected.
9. The pressure relief arrangement according to of claim 1, wherein the expander, once in the second configuration, holds the hinged door open.
10. The pressure relief arrangement according to claim 1, wherein the expander is made from a metallic or a metallic composite material.
11. The pressure relief arrangement according to claim 1, comprising a latch configured to align one end of the hinged door with an adjacent component, wherein the latch is configured to open when a pressure above a predetermined level is applied to the hinged door.
12. A gas turbine engine comprising a pressure relief arrangement, the pressure relief arrangement comprising: a hinged door; a mount spaced from the hinged door; and an expandable structure connected to the hinged door and to the mount such that when the hinged door hinges open the expandable structure expands, wherein the expandable structure comprises an expander configured such that the expander can move between a first configuration and a second configuration, the second configuration having a greater volume than the first configuration, and the expander is configured to undergo plastic deformation to transform into and remain in the second configuration.
13. The gas turbine engine according to claim 12, comprising an engine core, and a casing member surrounding the engine core, and wherein the mount is provided radially internally of the casing member and the hinged door is arranged to pivot outwardly away from the core.
14. A pressure relief arrangement for a gas turbine engine, the pressure relief arrangement comprising: a hinged door; a mount spaced from the hinged door; and an expandable structure connected to the hinged door and to the mount such that when the hinged door hinges open the expandable structure expands, wherein the expandable structure comprises an expander with a mesh configured such that the expander can move between a first configuration and a second configuration, the second configuration having a greater volume than the first configuration.
15. The pressure relief arrangement according to claim 14, comprising a cable that connects to the mount and to the expander.
16. The pressure relief arrangement according to claim 15, wherein the expander connects to the cable at a single connection point.
17. The pressure relief arrangement according to claim 14, wherein the expander connects directly to the hinged door.
18. The pressure relief arrangement according to claim 14, wherein the expander connects to the hinged door at a plurality of points, or along a perimeter of an area defined by the expander.
19. The pressure relief arrangement according to claim 18, wherein at the location of connection to the hinged door, the area of the expander is greater than 40% of the area of a surface of the hinged door to which the expander is connected.
20. The pressure relief arrangement according to of claim 14, wherein the expander, once in the second configuration, holds the hinged door open and retains the second configuration.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments will now be described by way of example only, with reference to the Figures, in which:
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE DISCLOSURE
(5) With reference to
(6) The gas turbine engine 10 works in the conventional manner so that air entering the intake 12 is accelerated by the fan 13 to produce two air flows: a first air flow into the intermediate pressure compressor 14 and a second air flow which passes through a bypass duct 22 to provide propulsive thrust. The intermediate pressure compressor 14 compresses the air flow directed into it before delivering that air to the high pressure compressor 15 where further compression takes place.
(7) The compressed air exhausted from the high-pressure compressor 15 is directed into the combustion equipment 16 where it is mixed with fuel and the mixture combusted. The resultant hot combustion products then expand through, and thereby drive the high, intermediate and low-pressure turbines 17, 18, 19 before being exhausted through the nozzle 20 to provide additional propulsive thrust. The high 17, intermediate 18 and low 19 pressure turbines drive respectively the high pressure compressor 15, intermediate pressure compressor 14 and fan 13, each by suitable interconnecting shaft.
(8) Other gas turbine engines to which the present disclosure may be applied may have alternative configurations. By way of example such engines may have an alternative number of interconnecting shafts (e.g. two) and/or an alternative number of compressors and/or turbines. Further the engine may comprise a gearbox provided in the drive train from a turbine to a compressor and/or fan.
(9) A pressure relief arrangement may be provided at location between the core and the bypass duct, the location of the pressure relief arrangement is indicated generally at 24 in
(10) Referring to
(11) The expandable structure 38 includes an expander 40 and a cable 42. The cable 42 is non-expandable and connects directly between the mount and the expander 40. In the present example, the expander 40 connects at a single point to the cable 42 and at multiple points or along a perimeter to the door 30. In the present example, the expander is connected over an area of the door that is approximately greater than 40% of the area of a surface of the door to which the expander is connected, for example greater than 50%, or greater than 60%.
(12) The expander 40 in the present example is made from a metallic material. However, in alternative embodiments the expander may be made from a metallic composite material. Depending on where the expander is to be used, the type of metal will be selected accordingly. However, in many cases, the metallic material will be selected so as to be capable of operation over a range of 30 C. to over +300 C. The expander is formed using holes, slots and/or folds so that it can move between a compact state (illustrated in
(13) The door 30 is latched to the casing 32 by a latch 44 provided at an opposite end of the door to the hinge 34. In the present example, the latch 44 is configured such that when the pressure differential across the door reaches a certain level, the latch fails so the door can open. However, in alternative examples, a pressure sensor and control assembly may be provided to unlatch the door when a given pressure is detected.
(14) Referring to
(15) Referring to
(16) As the door 30 hinges open, the expander 40 may undergo a plastic deformation, such as to maintain the expanded state. In other words, once deployed, the expander 40 will hold the door open and retain the expanded state.
(17) The arrangement described above can have one or more of the following advantages compared to arrangements of the prior art: Reduction in part count because there is no need to have an articulated mechanism, such as a piston and cylinder arrangement Simplified manufacture Reduced possible failures in service Weight reduction Lower capital cost Increased control of door opening
(18) It will be understood that the invention is not limited to the embodiments above-described and various modifications and improvements can be made without departing from the concepts described herein. Except where mutually exclusive, any of the features may be employed separately or in combination with any other features and the disclosure extends to and includes all combinations and sub-combinations of one or more features described herein.