IP Library Granted Patent US 9,211,839
Granted Patent B2
US 9,211,839 · App. 14/180,406 · Granted Dec 15, 2015

Low drag low noise devices using jet flow control

Inventor: Gecheng Zha (Cutler Bay, FL)
Assignee: Dialectic Flow Technologies, LLC
B60R1/06B62D35/008
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Quick Facts
Patent No.
US 9,211,839
App. No.
14/180,406
Granted
Dec 15, 2015
Kind
B2
Abstract

Low drag low noise devices are described herein that use passive jet flow control to reduce the drag and noise created by devices (e.g., motor vehicle side view mirrors) while the devices travel through fluid. The low drag low noise devices described herein comprise a lengthwise axis, an outer body, and an inner body. The outer body and the inner body cooperatively define a channel through which fluid can pass during use.

Claims (34)

1. A low drag low noise device having a lengthwise axis, the low drag low noise device comprising:

an outer body having a first end, and a second end, the outer body defining a first opening, a second opening, and an inner surface, the inner surface extending from the first opening to the second opening and defining a passageway; and

an inner body attached to the outer body and at least partially disposed within the passageway defined by the outer body, the inner body having a first end, a second end, and an outer surface;

wherein the inner surface of the outer body and the outer surface of the inner body define a channel within the passageway of the outer body, the inner surface of the outer body and the outer surface of the inner body configured to allow a fluid to pass through the channel from the first end of the outer body to the second end of the outer body such that the fluid exits the channel at the second end of the outer body at an angle that is directed toward said lengthwise axis of said low drag low noise device and away from the second end of the inner body.

2. The low drag low noise device of claim 1 , wherein the outer surface of the inner body has a circumference; and

wherein the inner surface of the outer body and the outer surface of the inner body define the channel within the passageway of the outer body about the entire circumference of the outer surface of the inner body.

3. The low drag low noise device of claim 1 , wherein the inner surface of the outer body has an inner surface section that extends from a first end to a second end, the first end of the inner surface section is disposed between the first end and the second end of the outer body, the second end of the inner surface section is disposed between the first end of the inner surface section and the second end of the outer body, the inner surface section extending toward said lengthwise axis of said low drag low noise device from the first end of the inner surface section to the second end of the inner surface section at angle between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

4. The low drag low noise device of claim 1 , wherein the outer surface of the inner body has an outer surface section that extends from a first end to a second end, the first end of the outer surface section is disposed between the first end and the second end of the inner body, the second end of the outer surface section is disposed between the first end of the outer surface section and the second end of the inner body, the outer surface section extending toward said lengthwise axis of said low drag low noise device from the first end of the outer surface section to the second end of the outer surface section at angle between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

5. The low drag low noise device of claim 1 , wherein the outer body has a first thickness and a second thickness, the first thickness disposed between the first end and the second end of the outer body, the second thickness disposed between the first thickness and the second end of the outer body, the first thickness being greater than the second thickness.

6. The low drag low noise device of claim 1 , wherein the outer body has a length that extends from the first end of the outer body to the second end of the outer body;

wherein the inner body has a length that extends from the first end of the inner body to the second end of the inner body; and

wherein the length of the inner body is different than the length of the outer body.

7. The low drag low noise device of claim 6 , wherein the length of the inner body is greater than the length of the outer body; and

wherein the first end of the inner body is disposed outside of the passageway defined by the outer body.

8. The low drag low noise device of claim 1 , wherein the inner body defines a passageway that extends from the first end of the inner body to the second end of the inner body.

9. The low drag low noise device of claim 1 , wherein the second end of the outer body defines a sinusoidal edge.

10. A low drag low noise device having a lengthwise axis, the low drag low noise device comprising:

an outer body having a first end, and a second end, the outer body defining a first opening, a second opening, and an inner surface, the inner surface extending from the first opening to the second opening and defining a passageway; and

an inner body attached to the outer body and at least partially disposed within the passageway defined by the outer body, the inner body having a first end, a second end, and an outer surface;

wherein the inner surface of the outer body and the outer surface of the inner body define a channel within the passageway of the outer body, the inner surface of the outer body and the outer surface of the inner body configured to allow a fluid to pass through the channel from the first end of the outer body to the second end of the outer body such that the fluid exits the channel at the second end of the outer body at an angle that is directed toward said lengthwise axis of said low drag low noise device and away from the second end of the inner body, the angle being between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

11. The low drag low noise device of claim 10 , wherein the inner surface of the outer body has an inner surface section that extends from a first end to a second end, the first end of the inner surface section is disposed between the first end and the second end of the outer body, the second end of the inner surface section is disposed between the first end of the inner surface section and the second end of the outer body, the inner surface section extending toward said lengthwise axis of said low drag low noise device from the first end of the inner surface section to the second end of the inner surface section at angle between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

12. The low drag low noise device of claim 10 , wherein the outer surface of the inner body has an outer surface section that extends from a first end to a second end, the first end of the outer surface section is disposed between the first end and the second end of the inner body, the second end of the outer surface section is disposed between the first end of the outer surface section and the second end of the inner body, the outer surface section extending toward said lengthwise axis of said low drag low noise device from the first end of the outer surface section to the second end of the outer surface section at angle between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

13. The low drag low noise device of claim 10 , wherein the outer body has a first thickness and a second thickness, the first thickness disposed between the first end and the second end of the outer body, the second thickness disposed between the first thickness and the second end of the outer body, the first thickness being greater than the second thickness.

14. The low drag low noise device of claim 10 , wherein the outer body has a length that extends from the first end of the outer body to the second end of the outer body;

wherein the inner body has a length that extends from the first end of the inner body to the second end of the inner body; and

wherein the length of the inner body is different than the length of the outer body.

15. The low drag low noise device of claim 14 , wherein the length of the inner body is greater than the length of the outer body; and

wherein the first end of the inner body is disposed outside of the passageway defined by the outer body.

16. The low drag low noise device of claim 10 , wherein the inner body defines a passageway that extends from the first end of the inner body to the second end of the inner body.

17. The low drag low noise device of claim 10 , wherein the second end of the outer body defines a sinusoidal edge.

18. A low drag low noise device having a lengthwise axis, the low drag low noise device comprising:

an outer body having a first end, and a second end, the outer body defining a first opening, a second opening, and an inner surface, the inner surface extending from the first opening to the second opening and defining a passageway; and

an inner body attached to the outer body and at least partially disposed within the passageway defined by the outer body, the inner body having a first end, a second end, and an outer surface, the outer surface having a circumference;

wherein the inner surface of the outer body and the outer surface of the inner body define a channel within the passageway of the outer body, the inner surface of the outer body and the outer surface of the inner body defining the channel about the entire circumference of the outer surface of the inner body, the inner surface of the outer body and the outer surface of the inner body configured to allow a fluid to pass through the channel from the first end of the outer body to the second end of the outer body such that the fluid exits the channel at the second end of the outer body at an angle that is directed toward said lengthwise axis of said low drag low noise device and away from the second end of the inner body, the angle being between about 0 degrees and about 50 degrees relative to an axis that contains the second end of the outer body and that is parallel to said lengthwise axis of said low drag low noise device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2015
From: ZHA, GECHENG
To: DIALECTIC FLOW TECHNOLOGIES, LLC
Reel/Frame 034733/0165 →
Continuity (3)
Continuation In Part PCTUS2013053191 · Aug 1, 2013
Provisional Application 61765219 · Feb 15, 2013
Related Publication 20140233123A1 · Aug 21, 2014