IP Library Granted Patent US 10,684,154
Granted Patent B2
US 10,684,154 · App. 15/839,255 · Granted Jun 16, 2020

Gas meter and associated methods

Inventors: Robert Wayne Layher (Airdrie, CA); Deanne Rose Layher (Airdrie, CA); Scott Robert Layher (Calgary, CA)
Assignee: Ventbuster Holdings Inc.
G01F1/86G01F1/684G01F1/6842G01F1/6884G01F1/6965G01F1/7086G01F15/04G01F25/0053G01N21/3504G01N2201/0221
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Quick Facts
Patent No.
US 10,684,154
App. No.
15/839,255
Granted
Jun 16, 2020
Kind
B2
Abstract

A device which: optically detects the presence of, measures the flow rate of, and identifies the characteristics of venting fugitive gas emissions. Specifically the device provides a spectral analysis of emission gas constituents; selective detection of the presence of venting hydrocarbons; measurement of venting emissions flow rates, the measurement of shut-in and flowing venting system pressures and the venting system temperatures. The flow rates are corrected, relative to the detection of the gas constituents and standard temperature and pressure (STP). These devices are configured to collect such data electronically and transmit via various telemetry systems, to a secure remote data network for reporting, access, evaluation, real-time monitoring and archiving as required.

Claims (21)

1. A gas meter comprising:

a channel comprising a plunger or piston, the plunger or piston being configured to provide a modifiable channel portion with a modifiable cross-sectional area, wherein the cross-sectional area of the channel portion is modifiable to control and to change the velocity through the modifiable channel portion for a given flow rate; and

a thermal mass flow meter positioned within the modifiable channel and which measures the mass flow rate by heating a portion of the flowing fluid and then recording how that heat is dispersed by the flow,

wherein the piston or plunger comprises an alternative flow path through the piston or plunger which is connected to the channel when the piston or plunger is in a closed configuration, the alternative flow path being configured to direct flow such that it can be detected by the thermal mass flow meter.

2. The gas meter of claim 1 wherein the channel comprises a replaceable channel module portion, wherein the replaceable channel module portion is configured to provide the modifiable channel portion with a predetermined and fixed cross-sectional area such that the cross-sectional area of the channel can be modified by replacing the replaceable channel module portion with another the replaceable channel module portion corresponding to a different predetermined and fixed cross-sectional area.

3. The gas meter according to claim 1 wherein the gas meter is configured to control the cross-sectional area of the modifiable channel portion based on the gas flow rate such that at high flow rate the cross-sectional area of the modifiable channel portion is larger than at low flow rate.

4. The gas meter according to claim 1 wherein the dynamic range of the gas meter is greater than 20,000,000, wherein the dynamic range is defined as the ratio of the highest measureable flow rate to the lowest measureable flow rate.

5. The gas meter according to claim 1 wherein the modifiable channel portion is streamlined to promote laminar flow across the flow meter.

6. The gas meter according to claim 1 , wherein the gas meter is configured to control the cross-sectional area of the adjustable channel based on the measured mass flow rate.

7. The gas meter according to claim 1 wherein the adjustable obstruction is be greater than 3 cm in length along the axis of the channel.

8. The gas meter according to claim 1 wherein the channel comprises a particle filter positioned upstream from the adjustable obstruction.

9. The gas meter according to claim 1 wherein the channel comprises a low-pressure sensor.

10. The gas meter according to claim 1 wherein the thermal mass flow meter is configured to operate in calorimetry mode.

11. The gas meter according to claim 1 wherein the thermal mass flow meter is configured to operate in anemometer mode.

12. The gas meter according to claim 1 wherein, in a fully open configuration, the piston or plunger is configured to abut one or more stops.

13. The gas meter according to claim 1 wherein, in a fully closed configuration, the plunger is configured to abut an opposing surface of the channel, wherein in the fully closed position a flow path is available through the modifiable channel portion.

14. The gas meter according to claim 1 wherein the thermal mass flow meter comprises multiple sensing elements, each sensing element being reconfigurable to operate as a heater or as a temperature sensor.

15. The gas meter according to claim 1 wherein the thermal mass flow meter comprises a heater configured to be heated with between 5-10 mW of power.

16. The gas meter according to claim 1 wherein the plunger or piston is configured to be replaceable to provide different cross-sectional areas.

17. The gas meter according to claim 1 wherein the gas meter is portable.

18. The gas meter according to claim 1 wherein the gas meter is battery powered.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2019
From: VENTBUSTERS INC.
To: VENTBUSTER HOLDINGS INC.
Reel/Frame 050877/0483 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2017
From: LAYHER, ROBERT WAYNE; LAYHER, DEANNE ROSE; LAYHER, SCOTT ROBERT
To: VENTBUSTERS INC.
Reel/Frame 044372/0214 →
Continuity (2)
Provisional Application 62433112 · Dec 12, 2016
Related Publication 20180164137A1 · Jun 14, 2018
Cited By (1)
US 12,607,099