IP Library Granted Patent US 8,464,590
Granted Patent B2
US 8,464,590 · App. 12/884,757 · Granted Jun 18, 2013

Pressure sensor configuration for pressurized tank

Inventors: Mark Stanley Waldrop (Mt. Baldy, CA); James Lee Geer (Gavilan Hills, CA)
Assignee: Cameron International Corporation
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Quick Facts
Patent No.
US 8,464,590
App. No.
12/884,757
Granted
Jun 18, 2013
Kind
B2
Abstract

In at least some embodiments, a pressure sensor configuration includes a pressure sensor and a switchable valve coupled to the pressure sensor. The switchable valve enables the pressure sensor to measure pressure at multiple ports of a pressurized tank.

Claims (29)

1. A pressure sensor configuration, comprising:

a pressure sensor; and

a switchable valve coupled to the pressure sensor, the switchable valve enabling the pressure sensor to measure pressure at multiple ports of a pressurized tank.

2. The pressure sensor configuration of claim 1 wherein the switchable valve comprises a solenoid valve.

3. The pressure sensor configuration of claim 1 further comprising a controller in communication with the pressure sensor, wherein the controller receives pressure measurements from the pressure sensor and stores the pressure measurements.

4. The pressure sensor configuration of claim 1 further comprising a controller in communication with the pressure sensor, wherein the controller receives pressure measurements from the pressure sensor and calculates a differential pressure for the pressurized tank.

5. The pressure sensor configuration of claim 1 further comprising a controller in communication with the pressure sensor, wherein the controller receives pressure measurements from the pressure sensor and calculates a volume of liquid for the pressurized tank.

6. The pressure sensor configuration of claim 1 further comprising a controller in communication with the switchable valve, wherein the controller selectively directs the switchable valve to switch between a first pressure piping connection and a second pressure piping connection.

7. The pressure sensor configuration of claim 1 further comprising a controller in communication with the pressure sensor, wherein the controller calculates a differential pressure between HI and LO ports of the pressurized tank based on measurements from the pressure sensor and transmits the calculated differential pressure to a remote computing system.

8. The pressure sensor configuration of claim 7 wherein the controller calculates at a volume of liquid stored by the pressurized tank based on the differential pressure calculation and transmits the calculated volume to a remote computing system.

9. The pressure sensor configuration of claim 1 wherein the pressure sensor configuration is part of a switchable pressure sensor (SPS) unit with electronics to control the switchable valve and determine a differential pressure for the pressurized tank.

10. The pressure sensor configuration of claim 1 wherein the pressure sensor configuration is part of a remote telemetry unit (RTU) with electronics to control the switchable valve and determine a differential pressure for the pressurized tank.

11. A remote telemetry unit (RTU), comprising:

a pressure sensor; and

a solenoid valve coupled to the pressure sensor, wherein the RTU operates the solenoid valve in conjunction with measurements of the pressure sensor to determine a differential pressure of a pressurized tank.

12. The RTU of claim 11 further comprising a controller in communication with the pressure sensor, wherein the controller receives pressure measurements from the pressure sensor and calculates the differential pressure.

13. The RTU of claim 12 wherein the controller calculates a volume of liquid in the pressurized tank based on the calculated differential pressure.

14. The RTU of claim 13 further comprising a display coupled to the controller, wherein the controller causes the calculated volume to be displayed on the display.

15. The RTU of claim 12 further comprising a first pressure piping connection and a second pressure piping connection, wherein the controller selectively directs the solenoid valve to switch between the first and second pressure piping connections.

16. The RTU of claim 12 wherein the controller calculates the differential pressure between HI and LO ports of the pressurized tank based on measurements from the pressure sensor and transmits the calculated differential pressure to a remote computing system.

17. The RTU of claim 11 wherein RTU features are configurable from a remote computing system.

18. The RTU of claim 17 wherein the RTU features comprise an alarm activated if a parameter monitored by the RTU falls below a user-specified threshold.

19. A method, comprising:

receiving, by a switchable pressure sensor (SPS) unit, a first measurement from a pressure sensor while connected to a first pressure pipe connection;

receiving, by the SPS unit, a second measurement from the pressure sensor while connected to a second pressure pipe connection; and

calculating a differential pressure based on the first and second measurements.

20. The method of claim 19 wherein said calculating is preformed by the SPS unit.

21. The method of claim 19 wherein said calculating is performed by a remote telemetry unit (RTU) in communication with the SPS unit.

22. The method of claim 19 wherein switching the pressure sensor connection comprises operating a solenoid valve after the first measurement and before the second measurement.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2019
From: CAMERON INTERNATIONAL CORPORATION
To: SENSIA LLC
Reel/Frame 051420/0912 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2010
From: WALDROP, MARK STANLEY; GEER, JAMES LEE
To: CAMERON INTERNATIONAL CORPORATION
Reel/Frame 025108/0178 →
Continuity (1)
Related Publication 20120067133A1 · Mar 22, 2012