IP Library Granted Patent US 9,021,855
Granted Patent B2
US 9,021,855 · App. 13/694,268 · Granted May 5, 2015

Torsional flow sensor

Inventor: Leroy C. Delatorre (Sugar Land, TX)
G01F1/28G01F25/0007G01F1/82G01F1/206
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Quick Facts
Patent No.
US 9,021,855
App. No.
13/694,268
Granted
May 5, 2015
Kind
B2
Abstract

A flow sensor with h no moving parts and which is suitable for miniaturization into a probe for fluid measurements in remote, hostile environments. It comprises an isolation torque tube to isolate a high pressure media from an instrument environment. and a highly sensitive disc torque sensor to measure the values of torque generated by flow across a static impeller. A proportionalized electric property signal is transmitted to a value reading station.

Claims (28)

1. A fluid parameter measuring device comprising:

first and second coaxial torque transfer elements, each having first and second ends, said first end of said first element secured to sensor means, said second end of said first element secured to torque generation means responsive to fluid flow, said first end of said second element secured to housing means, said second end of said second element secured to said first element between said first and second ends;

said sensor means comprising first and second concentric discs separated predominately by space, said first disc having a smaller outside diameter than said second disc, said first element first end secured coaxially to said first disc at a circular interface having a diameter less than said first disc, said second disc secured about the perimeter thereof to said housing, said first and second discs linked by a pair of parallel spokes bridging said space tangentially from said interface circle perimeter on diametrically opposite sides of said interface circle;

strain gage means secured to said spokes for detecting strain on said spokes induced by fluid flow over said torque generation means; and,

instrument means for correlating said detected strain to a property of fluid flow over said torque generation means.

2. A fluid parameter measuring device as described by claim 1 wherein said housing means encloses said sensor means.

3. A fluid parameter measuring device as described by claim 1 wherein said housing means environmentally isolates said sensor means from said torque generation means.

4. A fluid parameter measuring device as described by claim 1 having a pair of centering spokes linking said first and second discs in a disposition substantially normal to said pairs of parallel spokes.

5. A fluid parameter measuring device as described by claim 4 wherein said pair of centering spokes are longer than said parallel spokes.

6. A fluid parameter measuring device as described by claim 1 wherein said torque generation means is a static impeller.

7. A method of measuring a fluid parameter comprising the steps of:

providing first and second concentric torque transfer elements;

securing a first end of said first torque element to a housing;

securing a second end of said first torque element to said second element between first and second ends of said second torque element;

securing said first end of said second torque element to a torque generation element responsive to fluid flow across said torque generation element;

securing said second end of said second torque element to a disc torque sensor means;

connecting said disc torque sensor means to instrumentation; and

calibrating said instrumentation to a property of fluid flow over said torque generation element.

8. A method of measuring a fluid parameter as described by claim 7 wherein a static impeller is provided for said torque generation element.

9. A method of measuring a fluid parameter as described by claim 7 wherein said instrumentation is calibrated for fluid flow over a static impeller.

10. A method of measuring a fluid parameter as described by claim 7 wherein an environment surrounding said sensor is isolated from the environment surrounding said torque generation element.

11. A method of measuring a fluid parameter as described by claim 7 wherein said disc torque sensor is provided with a pair of thin, concentric discs, a first of said discs being provided with an outer diameter greater than an outer diameter of a second of said discs.

12. A method of measuring a fluid parameter as described by claim 11 wherein said second end of said second torque element is secured to said second disc within an interface circle have a diameter less than said second disc.

13. A method of measuring a fluid parameter as described by claim 12 wherein said second disc is linked to said first disc by a pair of parallel spokes positioned on diametrically opposite sides of said second disc.

14. A method of measuring a fluid parameter as described by claim 13 wherein said pairs of parallel spokes are aligned with tangential extensions from said interface circle.

15. A method of measuring a fluid parameter as described by claim 14 wherein said second disc is linked to said first disc by centering spokes positioned on diametrically opposite sides of said second disc and aligned substantially normal to said parallel pairs.

16. A method of measuring a fluid parameter as described by claim 13 wherein strain gages are provided on each of said parallel spokes to measure torque induced strain on said spokes.

17. A method of measuring a fluid parameter as described by claim 16 wherein fluid flow over a static impeller secured to a first end of said second torque element is a source of said strain on said spokes.

Assignments (3)
SECURITY INTEREST Recorded Feb 20, 2019
From: SAGERIDER, INC.
To: COMERICA BANK
Reel/Frame 048386/0178 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2015
From: DELATORRE, LEROY C.
To: PANEX CORPORATION
Reel/Frame 034654/0382 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2015
From: PANEX CORPORATION
To: SAGERIDER, INCORPORATED
Reel/Frame 034654/0710 →
Continuity (2)
Provisional Application 61629119 · Nov 14, 2011
Related Publication 20130145817A1 · Jun 13, 2013