IP Library Granted Patent US 11,639,863
Granted Patent B2
US 11,639,863 · App. 16/894,250 · Granted May 2, 2023

Flow sensor devices and systems

Inventors: John T. Nguyen (Fountain Valley, CA); Patrick M. Murphy (Irvine, CA); Robert E. Gledhill, III (Huntington Beach, CA)
Assignee: Blue-White Industries, Ltd.
G01F1/662G01F1/66G01F1/667G01F15/00G01F15/125
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Quick Facts
Patent No.
US 11,639,863
App. No.
16/894,250
Granted
May 2, 2023
Kind
B2
Abstract

A flow rate assembly can include a housing having a measurement channel extending along the housing axis and through a portion of the housing between the first and second ends of the housing, an outer cup portion positioned at least partly within the housing, and a transducer positioned within the outer cup portion and sealed from fluid flow past the outer cup portion, the transducer having a width perpendicular to the housing axis and greater than the width of the measurement channel, the transducer configured to generate an ultrasonic signal and to direct the ultrasonic signal through the measurement channel.

Claims (28)

1. A flow rate assembly comprising:

a housing having:

a housing axis;

a first end having an inlet positioned along the housing axis;

a second end having an outlet positioned along the housing axis; and

a measurement channel extending along the housing axis and through a portion of the housing between the first and second ends of the housing, the measurement channel having a width perpendicular to the housing axis;

an outer cup portion positioned at least partly within the housing, the outer cup portion comprising:

a head portion connected to a wall of the housing;

an elongate portion connected to the head portion, the elongate portion having a first face facing the measurement channel; and

at least one flow channel through the head portion configured to permit fluid to flow past the outer cup portion through the at least one flow channel;

a first transducer positioned within the elongate portion and sealed from fluid flow past the outer cup portion, the first transducer having a width perpendicular to the housing axis and greater than the width of the measurement channel, the first transducer configured to generate an ultrasonic signal and to direct the ultrasonic signal through the measurement channel;

an inlet pipe connected to the first end of the housing in an in-line manner; and

a strainer extending into the inlet pipe upstream of the housing and extending across at least the majority of the inlet pipe, wherein the strainer has a porosity from 600 μm to 1000 μm, and wherein the presence of the strainer increases the flow resistance through the flow meter assembly by less than 20%.

2. The flow rate assembly of claim 1 , wherein the strainer extends at an angle of between 20 degrees and 70 degrees from the longitudinal axis of the inlet pipe.

3. The flow rate assembly of claim 2 , wherein the strainer comprises a mesh-like structure defining a hollow cylindrical body.

4. The flow rate assembly of claim 1 , wherein the strainer comprises a mesh-like structure defining a hollow cylindrical body.

5. The flow rate assembly of claim 1 , comprising:

a second outer cup portion positioned at least partially within the housing, the second outer cup portion comprising:

a head portion connected to a wall of the housing;

an elongate portion connected to the head portion; and

at least one flow channel through the head portion configured to permit fluid to flow past the second outer cup portion through the at least one flow channel; and

a second transducer positioned within the elongate portion of the second outer cup portion and sealed from fluid flow past the second outer cup portion, the second transducer having a width perpendicular to the housing axis and greater than the width of the measurement channel;

wherein the second transducer is configured generate an ultrasonic signal and to direct the ultrasonic signal through the measurement channel toward the first transducer.

6. The flow rate assembly of claim 1 , wherein the outer cup portion comprises at least one boundary wall extending between the head portion and the elongate portion and forming a boundary of the at least one flow channel, wherein the at least one boundary wall is configured to straighten flow through the at least one flow channel.

7. The flow rate assembly of claim 6 , wherein the outer cup portion includes an outlet channel extending between an interior of the elongate portion and an exterior of the elongate portion.

8. The flow rate assembly of claim 7 , wherein the outlet channel extends through the at least one boundary wall.

9. The flow rate assembly of claim 1 , wherein the housing comprises a first housing portion, a second housing portion, and third housing portion positioned between the first and second housing portions, wherein the measurement channel extends through the third housing portion.

10. The flow rate assembly of claim 9 , wherein one or more electrical components are positioned within a space between the third housing portion and the first housing portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2022
From: NGUYEN, JOHN T.; MURPHY, PATRICK M.; GLEDHILL, ROBERT E., III
To: BLUE-WHITE INDUSTRIES, LTD.
Reel/Frame 061956/0810 →
Continuity (3)
Provisional Application 62858801 · Jun 7, 2019
Provisional Application 62859655 · Jun 10, 2019
Related Publication 20200386593A1 · Dec 10, 2020
Cited By (12)
US 12,264,663 US 12,281,922 US 12,298,161 US 12,339,145 US 12,353,539 US 12,486,841 US 12,510,065 US 12,529,368 US 12,560,158 US 12,612,905 US 12,650,200 US 12,662,998