IP Library › Granted Patent US 11,472,536
Granted Patent B1
US 11,472,536 · App. 15/425,943 · Granted Oct 18, 2022

System to control flow separation over an airfoil

Inventor: Khaled Abdullah Alhussan (Riyadh, SA)
B64C21/08B64C3/00F01D5/147F01D5/18F04D29/324F04D29/684F05D2270/17
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Quick Facts
Patent No.
US 11,472,536
App. No.
15/425,943
Granted
Oct 18, 2022
Kind
B1
Abstract

A combination of an airfoil, turbine blade, or compressor blade with a flow separation control device includes an airfoil and a flow separation control device. The airfoil includes a body with an upper surface and a lower surface that extend from a leading edge to a trailing edge. The flow separation control device includes a plurality of openings on the upper surface of the body.

Claims (26)

1. A combination of an airfoil and a flow separation control device, comprising:

the airfoil, having:

a body with an upper surface and a lower surface that extend from a leading edge to a trailing edge, the lower surface being positioned below the upper surface; and

the flow separation control device, having:

a plurality of capillary tubes extending from within the body to the upper surface of the body;

a plurality of openings on the upper surface of the body and leading into the plurality of capillary tubes;

a common reservoir positioned within the body and in gaseous communication with the plurality of capillary tubes, the plurality of capillary tubes extending from the plurality of openings and into the reservoir;

an inlet tube extending from the lower surface of the body and into the common reservoir;

a sensor to detect flow separation above the upper surface;

a pump in communication with the one of the plurality of capillary tubes;

a flow regulator positioned along the one of the plurality of capillary tubes between the pump and an opening of the one of the plurality of capillary tubes; and

a control system to operate the pump, the sensor, and the flow regulator;

wherein a portion of the airstream passing over the upper surface of the body is affected by an injection of gas or air via the plurality of capillary tubes and the plurality of openings; and

wherein the plurality of openings reduces a flow separation in the portion of the airstream passing over the upper surface of the body; and

wherein the pump directs the gas from the inlet tube to the one of the plurality of capillary tubes; and

wherein the flow regulator regulates the flow rate of gas passing through the capillary tube.

2. The combination of claim 1 , wherein the airfoil is a wing.

3. The combination of claim 2 , wherein the flow separation device extends along the longitudinal length of the wing.

4. The combination of claim 3 , wherein the plurality of openings extend from a ⅓ chord length to a ⅔ chord length of the airfoil.

5. The combination of claim 1 , wherein the plurality of openings having a circular shaped dimension.

6. The combination of claim 1 , wherein the plurality of openings extend from a ⅓ chord length to a ⅔ chord length of the airfoil.

7. The combination of claim 1 , wherein gas is channeled through the plurality of capillary tubes and passes through the plurality of openings into the airstream.

8. The combination of claim 1 , wherein the plurality of capillary tubes are oriented at an angle relative to the upper surface of the body.

9. The combination of claim 8 , wherein the gas exits at an angle relative to the upper surface of the body.

10. The combination of claim 1 , wherein the inlet tube is in fluid communication with a portion of the airstream passing over the lower surface of the airfoil.

11. The combination of claim 1 , wherein the plurality of capillary tubes extend from a ⅓ chord length to a ⅔ chord length of the airfoil.

Cited By (2)
US 12,208,884 US 12,497,161