Flow Guide Body For An Aircraft
20200102066 ยท 2020-04-02
Assignee
Inventors
Cpc classification
Y02T50/10
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
B64C23/069
PERFORMING OPERATIONS; TRANSPORTING
B64C2230/06
PERFORMING OPERATIONS; TRANSPORTING
B64C2230/22
PERFORMING OPERATIONS; TRANSPORTING
F15B21/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15C1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64C9/00
PERFORMING OPERATIONS; TRANSPORTING
B64C2230/04
PERFORMING OPERATIONS; TRANSPORTING
F15D1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15C1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15D1/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64C9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A flow guide body for an aircraft includes a main body having an outer aerodynamic surface having a plurality of outlet openings, and flow control devices, each having an inlet, an interaction chamber, a first outlet and a second outlet. A first control inlet is connected to the interaction chamber at the first side of the chamber axis. The outlets are each connected to outlet openings in the aerodynamic surface. Each outlet has a control outlet. A second flow control device is arranged such that one outlet is connected with the inlet of the first flow control device. One of the control outlets of the first flow control device is connected to the first control inlet of the first flow control device, and the other of the control outlets of the first flow control device is connected to the first control inlet of the second flow control device.
Claims
1. A flow guide body for an aircraft, comprising: a main body having an outer aerodynamic surface, the aerodynamic surface having a plurality of outlet openings; and a plurality of flow control devices, each of the plurality of flow control devices comprising: an inlet; an interaction chamber having a first end and a second end and extending from the first end to the second end along a chamber axis; a first outlet; and a second outlet, wherein the inlet is connected with the interaction chamber at the first end, wherein the first outlet is connected with the interaction chamber at the second end such that the first outlet projects towards a first side of the chamber axis, wherein the second outlet is connected with the interaction chamber at the second end such that the second outlet projects towards a second side of the chamber axis opposite the first side, and wherein the interaction chamber is provided with a first control inlet connected to the interaction chamber at the first side of the chamber axis, wherein at least one first flow control device of the plurality of flow control devices is arranged such that the first and second outlets of the first flow control device are each connected to an outlet opening in the aerodynamic surface, wherein the first outlet of the at least one first flow control device is provided with a first control outlet and the second outlet of the at least one first flow control device is provided with a second control outlet, wherein at least one second flow control device of the plurality of flow control devices is arranged such that the first or second outlet of the at least one second flow control device is connected with the inlet of the at least one first flow control device, wherein one of the first and second control outlets of the at least one first flow control device is connected to the first control inlet of the at least one first flow control device, and wherein the other of the first and second control outlets of the at least one first flow control device is connected to the first or second control inlet of the at least one second flow control device or of a third or further flow control device.
2. The flow guide body according to claim 1, wherein the at least one first flow control device comprises at least two first flow control devices, wherein the first outlet of the at least one second flow control device is connected with the inlet of one of the at least two first flow control devices, wherein the second outlet of the at least one second flow control device is connected with the inlet of the other of the at least two first flow control devices, wherein in each of the at least two first flow control devices the first control outlet is connected with the first control inlet, and wherein the second control outlet of that first flow control device the inlet of which is connected to the first outlet of the at least one second flow control device, is connected to the first control inlet of the at least one second flow control device.
3. The flow guide body according to claim 2, wherein the interaction chamber of the at least one second flow control device comprises a second control inlet connected to the interaction chamber at the second side of the chamber axis, and wherein the second control outlet of that first flow control device the inlet of which is connected to the second outlet of the at least one second flow control device, is connected to the second control inlet of the at least one second flow control device.
4. The flow guide body according to claim 1, wherein the inlet of the at least one second flow control device is connected to a feed line connected to a supply of compressed air.
5. The flow guide body according to claim 2, wherein at least one third flow control device of the plurality of air flow control devices is arranged such that one of the first and second outlet of the at least one third flow control device is connected with the inlet of the at least one second flow control device.
6. The flow guide body according to claim 5, wherein the second control outlet of that first flow control device the inlet of which is connected to the second outlet of the at least one second flow control device, is connected to the first control inlet of the at least one third flow control device.
7. The flow guide body according to claim 6, wherein the at least one second flow control devices comprises at least two second flow control devices and the at least one first control devices comprises at least four first flow control devices, wherein the first outlet of a second one of the at least two second flow control devices is connected with the inlet of a third one of the four first flow control devices, wherein the second outlet of the second one of the at least two second flow control devices is connected with the inlet of a fourth one of the four first flow control devices, wherein the other of the first or second outlet of the at least one third flow control device is connected with the inlet of the second one of at least one second flow control device, wherein in each of the first flow control devices the first control outlet is connected with the first control inlet, wherein the second control outlet of that first flow control device the inlet of which is connected to the first outlet of the second one of the at least two second flow control devices, is connected to the first control inlet of the second one of the at least two second flow control devices, wherein the interaction chamber of the at least one third flow control device is provided with a second control inlet connected to the interaction chamber at the second side of the chamber axis, and wherein the second control outlet of that first flow control device the inlet of which is connected to the second outlet of the second one of the at least two second flow control devices, is connected to the second control inlet of the at least one third flow control device.
8. The flow guide body according to claim 7, wherein the inlet of the at least one third flow control device is connected to a feed line connected to a supply of compressed air.
9. The flow guide body according to claim 1, wherein each of the plurality of flow control devices are configured such that when the inlet is initially supplied with compressed air, an airflow is guided from the inlet to the first outlet.
10. The flow guide body according to claim 1, wherein the connections between the first and second control outlets and the first and second control inlets are formed by feedback channels.
11. The flow guide body according to claim 1, wherein the flow guide body is formed by a wing section with the outlet openings adjacent to a flap and/or a slat.
12. The flow guide body according to claim 1, wherein the flow guide body is formed by a vertical stabilizer with the outlet openings arranged adjacent to a rudder.
13. The flow guide body according to claim 1, wherein the flow guide body is formed by a horizontal stabilizer with the outlet openings arranged adjacent to an elevator.
14. The flow guide body according to claim 1, wherein the flow guide body is formed by a wing having winglets at the distal end wherein the outlet openings are arranged at the leading edge of the winglet.
15. An aircraft comprising the flow guide body according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Preferred embodiments of the present invention are described hereinafter in more detail by means of a drawing. The drawing shows in
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026] In
[0027] One of the flow guide bodies 19 is shown in more detail in
[0028] As shown in
[0029] By such a two-stage flow guide body 19, pulsed blowing in the form of a wave can be generated, as shown in
[0030] As the flow guide body is initially preset to the first side 49, the air flow 69 initially exits the flow guide body 19 at the first outlet 39 of the first one of the first flow control devices 31a, see
[0031] The partial air flow 71 through the first control inlet 53 of the first one of the first flow control devices 31a actuates the airflow 69 through the interaction chamber 37 to exit the flow guide body 19 through the second outlet 41 of the first one of the first flow control devices 31a, see
[0032] The partial air flow 71 through the first control inlet 53 of the second flow control device 31b actuates the airflow 69 through the interaction chamber 37 of the second flow control device 31b to exit the second flow control device 31b through its second outlet 41 and enter the inlet 35 of the second one of the first flow control devices 31a, where the airflow 69 exits the flow guide body 19 through the first outlet 39 due to the presetting to the first side 49, see
[0033] The partial air flow 71 through the first control inlet 53 of the second one of the first flow control devices 31a actuates the airflow 69 through the interaction chamber 37 to exit the flow guide body 19 through the second outlet 41 of the second one of the first flow control devices 31a, see
[0034] Finally, the partial air flow 71 through the second control inlet 59 of the second flow control device 31b actuates the airflow 69 through the interaction chamber 37 of the second flow control device 31b to switch to its initial path and exit the second flow control device 31b through its first outlet 39 and enter the inlet 35 of the first one of the first flow control devices 31a, so that a new wave begins.
[0035]
[0036] The third flow control device 31c is arranged such that the first outlet 39 of the third flow control device 31c is connected with the inlet 35 of the first one of the second flow control devices 31b. The second control outlet 57 of that first flow control device 31a the inlet 35 of which is connected to the second outlet 41 of the first one of the second flow control devices 31b, instead of being connected to the second control inlet 59 of the first one of the second flow control devices 31b, is connected to the first control inlet 53 of the third flow control device 31c. The first outlet 39 of a second one of the two second flow control devices 31b is connected with the inlet 35 of a third one of the four first flow control devices 31a. The second outlet 41 of the second one of the two second flow control devices 31b is connected with the inlet 35 of a fourth one of the four first flow control devices 31a. The second outlet 41 of the third flow control device 31c is connected with the inlet 35 of the second one of the two second flow control devices 31b. In each of the first flow control devices 31a the first control outlet 55 is connected with the first control inlet 53. The second control outlet 57 of that first flow control device 31a the inlet 35 of which is connected to the first outlet 39 of the second one of the two second flow control devices 31b, is connected to the first control inlet 53 of the second one of the two second flow control devices 31b. Instead of the interaction chamber 37 of the second flow control device 31b, the interaction chamber 37 of the third flow control device 31c is provided with a second control inlet 59 connected to the interaction chamber 37 at the second side 51 of the chamber axis 47. The second control outlet 57 of that first flow control device 31a the inlet 35 of which is connected to the second outlet 41 of the second one of the two second flow control devices 31b, is connected to the second control inlet 59 of the third flow control device 31c. The inlet 35 of the third flow control device 31c is connected to a feed line 61 connected to a supply 63 of compressed air, such as an engine bleed air system.
[0037] While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms comprise or comprising do not exclude other elements or steps, the terms a or one do not exclude a plural number, and the term or means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.