IP Library › Granted Patent US 12,002,120
Granted Patent B2
US 12,002,120 · App. 17/418,170 · Granted Jun 4, 2024

Method for determining and monitoring gas consumption in a gas network under pressure or under vacuum and gas network

Inventors: Philippe Geuens (Wilrijk, BE); Ebrahim Louarroudi (Wilrijk, BE)
Assignee: ATLAS COPCO AIRPOWER, NAAMLOZE VENNOOTSCHAP
G06Q50/06G01M3/2807
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Quick Facts
Patent No.
US 12,002,120
App. No.
17/418,170
Granted
Jun 4, 2024
Kind
B2
Abstract

A method is provided for determining and monitoring gas consumption in a gas network under pressure or under vacuum. The gas network may include a sensor(s) capable of recording the state or status of a source(s), consumers, consumer areas or applications. The method includes: a start-up phase, during which the aforementioned sensors are calibrated before use; an optional leak quantification phase, in which unrecorded consumers or leaks are quantified on the basis of measurements from the aforementioned sensors; an operational phase, in which the flow and/or gas volume consumed by each consumer, consumer areas, application or possibly the leak/non-registered consumer is calculated or determined using a cumulative algorithm and a predefined, adjustable time horizon; an output phase, in which the calculated or determined flow and/or gas volume consumed by each consumer, consumer area, application or possibly the leak/non-registered consumer is displayed.

Claims (36)

1. A method for determining and monitoring gas consumption in a gas network under pressure or under vacuum, the gas network comprising:

one or more sources of compressed gas or vacuum;

one or more consumers, consumer areas of compressed gas or vacuum applications;

pipelines or a network of pipelines to transport the compressed gas or vacuum from the sources to the consumers, consumer areas or applications;

a plurality of sensors, which determine one or more physical parameters of the gas at different times and locations in the gas network, wherein the plurality of sensors comprises

at least a number of flow sensors which measure the flow of the gas taken by the consumers, consumer areas or applications,

or

at least a number of flow sensors which measure the flow of the gas taken by the consumers, consumer areas or applications and one or a plurality of sensors configured to record a state or status of one or a plurality of sources, consumers, consumer areas, and/or applications;

wherein the method comprises the following steps:

a start-up phase, during which the plurality of sensors are calibrated before use;

an optional leak quantification phase, in which non-registered consumers or one or more leaks are quantified on the basis of measurements from the aforementioned sensors;

an operational phase, in which the flow and/or gas volume consumed by each consumer, consumer areas, application, the non-registered consumer, and/or one or more leaks is calculated or determined using a cumulative algorithm and a predefined, adjustable time horizon; and

an output phase, in which the calculated or determined flow and/or gas volume consumed by each consumer, consumer area, application, the non-registered, and/or one or more leaks consumer is displayed,

wherein the flow sensors are calibrated by means of an in-situ self-calibration,

wherein during the output phase, information related to the one or more leaks, as determined during the leak quantification phase, is displayed, and

wherein the leak quantification phase, the operational phase and the output phase are repeated sequentially.

2. The method according to claim 1 , wherein one or more of the plurality of sensors the sensors are configured to measure one or more of the following physical parameters of the gas:

flow, pressure, differential pressure, temperature, humidity, and/or gas velocity.

3. A gas network under pressure or under vacuum, the gas network comprising:

one or more sources of compressed gas or vacuum;

one or more consumers, consumer areas of compressed gas or vacuum applications;

pipelines or a network of pipelines to transport the gas or vacuum from the one or more sources to the one or more consumers or consumer areas;

a plurality of sensors, which determine one or more physical parameters of the gas at different times and locations in the gas network, wherein the plurality of sensors comprises

at least a number of flow sensors, which measure the flow of the gas taken by the consumers, consumer areas or applications,

or

at least a number of flow sensors, which measure the flow of the gas taken by the consumers, consumer areas or applications and one or a plurality of sensors which can register the state of one or a plurality of sources, consumers, consumer areas or applications;

a data acquisition control unit for the collection of data from the sensors; and

a computing unit configured to carry out the method according to claim 1 .

4. The gas network according to claim 3 , wherein the gas network further comprises a monitor that displays the calculated or determined flow and gas volume that is consumed by each consumer.

5. The gas network according to claim 3 , wherein the gas network further comprises a monitor that displays a message when the consumption of a given consumer or one or more leaks or non-registered consumers has reached a set, maximum value.

6. The gas network according to claim 3 , wherein the plurality of sensors, which can record the status or state of a consumer, are part of the consumers themselves.

7. The gas network according to claim 3 , wherein the computing unit is a cloud-based computing unit, which may or may not be connected wireles sly to the gas network.

8. The gas network according to claim 3 , wherein the plurality of sensors comprises at least a number of flow sensors, which measure the flow of the gas taken by the consumers, consumer areas or applications and one or a plurality of sensors which can register the state of one or a plurality of sources, consumers, consumer areas or applications.

9. The method according to claim 1 , wherein the plurality of sensors comprises at least a number of flow sensors which measure the flow of the gas taken by the consumers, consumer areas or applications and one or a plurality of sensors configured to record a state or status of one or a plurality of sources, consumers, consumer areas, and/or applications.

10. The method according to claim 1 , wherein the method comprises

the leak quantification phase, in which unrecorded consumers or leaks are quantified on the basis of measurements from the aforementioned sensors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2021
From: GEUENS, PHILIPPE; LOUARROUDI, EBRAHIM
To: ATLAS COPCO AIRPOWER, NAAMLOZE VENNOOTSCHAP
Reel/Frame 056661/0670 →
Priority Claims (1)
BE 2019/5841 · Nov 26, 2019 · national
Continuity (2)
Provisional Application 62785251 · Dec 27, 2018
Related Publication 20220108408A1 · Apr 7, 2022