IP Library Granted Patent US 11,988,656
Granted Patent B2
US 11,988,656 · App. 17/012,625 · Granted May 21, 2024

Remote monitoring of water distribution system

Inventors: Brian Morrow (Carrollton, TX); Mike Vore (Oskaloosa, IA); Charles Kitowski (Colleyville, TX); Daniel Copeland (Bessemer, AL); Leon G. McCullough (West Des Moines, IA); John Thomas Bohrer (Akron, OH)
Assignee: McWane, Inc.
G01N33/18G01L19/086H04W4/021H04W4/14
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Quick Facts
Patent No.
US 11,988,656
App. No.
17/012,625
Granted
May 21, 2024
Kind
B2
Abstract

A liquid monitoring system includes a remote measurement device located at a location of the fire hydrant that is in contact with water provided by a water main. The remote measurement device has sensors that measure characteristics of the water and/or acoustic vibrations in the water and a communication interface that transmits measured information to a communication network device that may be located elsewhere on the fire hydrant. The communication network device communicates with a communication network.

Claims (36)

1. A system to monitor water of a water distribution system at a valve of a fire hydrant, the system comprising:

a valve plate having a sealing surface and an exposed surface in contact with the water;

a remote measurement system, wherein the remote measurement system comprises:

at least one acoustic hydrophone located at the exposed surface of the valve plate and configured to measure for acoustic disturbances in the water and provide an electrical signal representative of leak induced vibration or sound; and

a communication interface coupled to the at least one acoustic hydrophone to receive the electrical signal from the at least one acoustic hydrophone, the communication interface configured to transmit leak induced vibration or sound information based on the received electrical signal from the at least one acoustic hydrophone to a monitoring system, wherein the monitoring system is configured to determine a leak based on the leak induced vibration or sound information.

2. The system of claim 1 , wherein the acoustic hydrophone continuously measures for acoustic disturbances in the water.

3. The system of claim 1 , wherein the acoustic hydrophone intermittently measures for acoustic disturbances in the water.

4. The system of claim 3 , wherein the intermittent measurements of acoustic disturbances occur either randomly or at a predetermined interval.

5. The system of claim 1 , wherein the remote monitoring system further comprises a pressure sensor located at the exposed surface of the valve plate and configured to measure a pressure of the water and provide an electrical signal representative of the measured pressure to the communication interface.

6. The system of claim 5 , wherein the communication interface is configured to transmit pressure information based on the received electrical signal from the pressure sensor to the monitoring system, wherein the monitoring system is configured to determine a leak based on the pressure information.

7. The system of claim 5 , wherein the remote monitoring system further comprises a temperature sensor located at the exposed surface of the valve plate and configured to measure a temperature of the water and provide an electrical signal representative of the measured temperature to the communication interface.

8. A monitoring system for a water distribution system, the monitoring system comprising:

a plurality of remote monitoring systems, wherein each remote monitoring system of the plurality of remote monitoring systems is located at a corresponding fire hydrant of a water distribution system, each remote monitoring system comprising:

at least one acoustic hydrophone positioned in contact with water of the water distribution system, the at least one acoustic hydrophone configured to collect acoustic information; and

a communication interface coupled to the at least one acoustic hydrophone to receive the collected acoustic information from the at least one acoustic hydrophone; and

a central monitoring system in communication with the plurality of remote monitoring systems, the central monitoring system configured to receive collected acoustic information transmitted by the communication interface of each remote monitoring system of the plurality of remote monitoring systems, wherein the central monitoring system is configured to analyze the collected acoustic information received from the plurality of remote monitoring systems and determine whether a leak is present in the water distribution system based on the analyzed acoustic information.

9. The monitoring system of claim 8 , wherein the collected acoustic information from each acoustic hydrophone is time synchronized using a time sync signal received by each remote monitoring system.

10. The monitoring system of claim 8 , wherein the central monitoring system is configured to determine a size of the leak in the water distribution system based on the analyzed acoustic information.

11. The monitoring system of claim 8 , wherein the central monitoring system is configured to determine a location of the leak in the water distribution system based on the analyzed acoustic information.

12. The monitoring system of claim 11 , wherein the location of the leak is provided relative to a location of a fire hydrant.

13. The monitoring system of claim 8 , wherein each remote monitoring system further comprises a pressure sensor positioned in contact with water of the water distribution system, the pressure sensor configured to collect water pressure information and provide the collected water pressure information to the communication interface.

14. The monitoring system of claim 13 , wherein the central monitoring system is configured to receive collected water pressure information transmitted by each remote monitoring system of the plurality of remote monitoring system, wherein the central monitoring system is configured to analyze the collected water pressure information received from the plurality of remote monitoring systems and determine if a leak is present in the water distribution system based on the analyzed water pressure information.

15. The monitoring system of claim 13 , wherein each remote monitoring system further comprises a temperature sensor positioned in contact with water of the water distribution system, the temperature sensor configured to collect water temperature information.

16. A method for detecting leaks in a water distribution system, the method comprising:

collecting acoustic information from a plurality of acoustic hydrophones, each acoustic hydrophone of the plurality of acoustic hydrophones positioned in contact with water of a water distribution system and associated with a fire hydrant of the water distribution system;

transmitting the collected acoustic information from each acoustic hydrophone of the plurality of acoustic hydrophones to a central monitoring system;

analyzing, by the central monitoring system, the collected acoustic information transmitted by each acoustic hydrophone; and

determining whether a leak is present in the water distribution system based on the analyzed acoustic information.

17. The method of claim 16 , further comprising time synchronizing the collected acoustic information from each acoustic hydrophone with a time sync signal received by the fire hydrant.

18. The method of claim 16 , wherein the collecting acoustic information from a plurality of acoustic hydrophones occurs one of intermittently or continuously.

19. The method of claim 16 , further comprising determining a location of the leak in the water distribution system based on the analyzed acoustic information.

20. The method of claim 16 , further comprising:

collecting water pressure information from a plurality of pressure sensors, each pressure sensor of the plurality of pressure sensors positioned in contact with water of the water distribution system and associated with a fire hydrant of the water distribution system;

transmitting the collected water pressure information from each pressure sensor of the plurality of pressure sensors to the central monitoring system;

analyzing, by the central monitoring system, the collected water pressure information received from the plurality of pressure sensors; and

determining whether a leak is present in the water distribution system based on the analyzed water pressure information.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2023
From: AMI INVESTMENTS, LLC
To: MCWANE, INC.
Reel/Frame 063671/0690 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2022
From: BOHRER, JOHN THOMAS; COPELAND, DANIEL; KITOWSKI, CHARLES; VORE, MIKE; MORROW, BRIAN; MCCULLOUGH, LEON G.
To: AMI INVESTMENTS, LLC
Reel/Frame 060861/0566 →
Continuity (5)
Continuation In Part 16428585 · May 31, 2019
Continuation 15271597 · Sep 21, 2016
Provisional Application 62895670 · Sep 4, 2019
Provisional Application 62221479 · Sep 21, 2015
Related Publication 20200400643A1 · Dec 24, 2020