IP Library Granted Patent US 11,674,379
Granted Patent B2
US 11,674,379 · App. 17/198,845 · Granted Jun 13, 2023

Method and system for managing gas supplies

Inventors: Mohammed S. Al Saad (AlKawthar, SA); Adel Al-Qahtani (Al Khubar, SA)
Assignee: SAUDI ARABIAN OIL COMPANY
E21B47/047E21B47/06E21B47/10E21B2200/20
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Quick Facts
Patent No.
US 11,674,379
App. No.
17/198,845
Granted
Jun 13, 2023
Kind
B2
Abstract

A method may include obtaining gas well data regarding various gas wells. The method may further include determining various well potential values for the gas wells based on the gas well data and a predetermined production period. The method may further include determining, based on the well potential values, a reservoir pressure criterion, and a water risk criterion, an available supply rate for a respective gas well among the gas wells. The method may further apply wells congestion cycling coupled to producing reservoirs to allow for uniform depletion across gas wells. The method may further include determining a production scenario based on the available supply rate and a supply target. The method may further include transmitting a command that implements a gas supply adjustment at a gas plant based on the production scenario.

Claims (82)

1. A method, comprising:

obtaining, by a computer processor, first gas well data regarding a first plurality of gas wells;

determining, by the computer processor, a first plurality of well potential values for the first plurality of gas wells based on the first gas well data and a first predetermined production period;

determining, by the computer processor and based on the first plurality of well potential values, a reservoir pressure criterion, and a water risk criterion, an available supply rate for a respective gas well among the first plurality of gas wells;

determining, by the computer processor, a first production scenario based on the available supply rate and a first supply target; and

transmitting, by the computer processor, a command that implements a gas supply adjustment at one or more gas plants based on the production scenario,

wherein the first gas well data comprises flowing wellhead pressure (FWHP) data that is acquired using at least one pressure sensor in at least one well-surface system, and

wherein the reservoir pressure criterion is determined using the FWHP data and a plurality of predetermined reservoir pressure tiers that describe different pressure conditions of a reservoir.

2. The method of claim 1 ,

wherein the command is transmitted to a gathering system, and

wherein the command adjusts a plurality of gas supply rates associated with a plurality of remote headers at the gathering system.

3. The method of claim 1 ,

wherein the first gas well data comprises tested gas rate data and productivity index values for one or more geological regions coupled to the first plurality of gas wells,

wherein the tested gas rate data corresponds to a maximum gas supply rate at the respective gas well, and

wherein the first plurality of well potential values are a function of the tested gas rate data, the FWHP data, and the productivity index values.

4. The method of claim 1 ,

wherein the first gas well data comprises water sampling data that is acquired at the respective gas well,

wherein the water risk criterion is determined using the water sampling data and a plurality of water assessment levels that describe an amount of risk to a predetermined water supply by produced water from a gas plant, and

wherein the plurality of water assessment levels are based on one or more thresholds of predetermined chemical concentrations.

5. The method of claim 1 ,

wherein the plurality of predetermined reservoir pressure tiers comprise a first reservoir pressure tier, a second reservoir pressure tier, and a third reservoir pressure tier, and

wherein the first reservoir pressure tier corresponds to a shut-in well where the shut-in well increases reservoir pressure during the first predetermined production period,

wherein the second reservoir pressure tier corresponds to a first gas well that produces a maximum gas supply rate for the first gas well, and

wherein the third reservoir pressure tier corresponds to a second gas well that produces a gas supply rate that is less than a maximum gas supply rate for the second gas well.

6. The method of claim 1 , further comprising:

obtaining congestion cycling data regarding a second plurality of gas wells within a predetermined proximity and coupled to a reservoir; and

determining, using a congestion cycling criterion and the congestion cycling data, a first subset of gas wells and a second subset of gas wells among the second plurality of gas wells,

wherein the first subset of gas wells produces a restricted gas rate based on the congestion cycling criterion, and

wherein the second subset of gas wells produces an unrestricted gas rate based on the congestion cycling criterion.

7. The method of claim 1 , further comprising:

determining, using a surface facility criterion and second gas well data, a minimum gas supply rate for a gas well,

wherein the minimum gas supply rate corresponds to a minimum stream velocity from the gas well that prevents corrosion at the gas well.

8. The method of claim 1 , further comprising:

obtaining, in response to a user selection within a graphical user interface in a user device, a request to determine a second production scenario for a second predetermined production period and the first plurality of gas wells;

obtaining, in real-time, second gas well data regarding the first plurality of gas wells; and

determining, in real-time, the second production scenario using the second gas well data, a second plurality of well potential values, a second reservoir pressure criterion, and a second water risk criterion, and a second supply target,

wherein the second predetermined production period, the second reservoir pressure criterion, the second water risk criterion, and the second supply target correspond to the user selection.

9. The method of claim 1 ,

wherein the first supply target corresponds to a predicted amount of gas supply demand at the one or more gas plants.

10. A system, comprising:

a first plurality of gas wells comprising a plurality of pressure sensors configured to detect flowing wellhead pressure (FWHP) data;

a gathering system coupled to the first plurality of gas wells, the gathering system comprising a plurality of remote headers that are configured for controlling streams from the first plurality of gas wells;

a gas supply manager comprising a computer processor and coupled to the first plurality of gas wells and the gathering system, wherein the gas supply manager comprises functionality for:

obtaining first gas well data regarding the first plurality of gas wells;

determining a plurality of well potential values for the first plurality of gas wells based on the first gas well data and a predetermined production period;

determining, based on the plurality of well potential values, a reservoir pressure criterion, and a water risk criterion, an available supply rate for a respective gas well among the first plurality of gas wells;

determining a first production scenario based on the available supply rate and a first supply target; and

transmitting a command that implements a gas supply adjustment at one or more gas plants based on the first production scenario; and

a gas processing plant coupled to the gas supply manager and the gathering system,

wherein the gas processing plant is configured to transmit gas plant data to the gas supply manager, and

wherein the gas plant data comprises supply demand data regarding demand for condensate or liquid natural gas at the gas processing plant.

11. The system of claim 10 , further comprising:

a user device coupled to the gas supply manager,

wherein the user device is configured to obtain a user selection within a graphical user interface regarding the reservoir pressure criterion and the water risk criterion to produce an adjusted reservoir pressure criterion and an adjusted water risk criterion, and

wherein the gas supply manager determines a second production scenario based on the adjusted reservoir pressure criterion and the adjusted water risk criterion.

12. The system of claim 10 ,

wherein the command is transmitted to a gathering system, and

wherein the command adjusts a plurality of gas supply rates associated with the plurality of remote headers.

13. The system of claim 10 , wherein the gas supply manager further comprises functionality for:

obtaining congestion cycling data regarding a second plurality of gas wells within a predetermined proximity and coupled to a reservoir; and

determining, using a congestion cycling criterion and the congestion cycling data, a first subset of gas wells and a second subset of gas wells among the second plurality of gas wells,

wherein the first subset of gas wells produces a restricted gas rate based on the congestion cycling criterion, and

wherein the second subset of gas wells produces an unrestricted gas rate based on the congestion cycling criterion.

14. The system of claim 10 , wherein the gas supply manager further comprises functionality for:

determining, using a surface facility criterion and second gas well data, a minimum gas supply rate for a gas well,

wherein the minimum gas supply rate corresponds to a minimum stream velocity from the gas well that prevents corrosion at the gas well.

15. A non-transitory computer readable medium storing instructions executable by a computer processor, the instructions comprising functionality for:

obtaining gas well data regarding a plurality of gas wells;

determining a plurality of well potential values for the plurality of gas wells based on the gas well data and a predetermined production period;

determining, based on the plurality of well potential values, a reservoir pressure criterion and a water risk criterion, an available supply rate for a respective gas well among the plurality of gas wells;

determining a production scenario based on the available supply rate and a first supply target; and

transmitting a command that implements a gas supply adjustment at one or more gas plants based on the production scenario,

wherein the first gas well data comprises tested gas rate data, flowing wellhead pressure (FWHP) data, and productivity index values for one or more geological regions coupled to the plurality of gas wells,

wherein the tested gas rate data corresponds to a maximum gas supply rate at the respective gas well, and

wherein the plurality of well potential values are a function of the tested gas rate data, the FWHP data, and the productivity index values.

16. The non-transitory computer readable medium of claim 15 ,

wherein the first gas well data comprises water sampling data that is acquired at the respective gas well,

wherein the water risk criterion is determined using the water sampling data and a plurality of water assessment values that describe an amount of risk to a predetermined water supply by produced water from a gas plant, and

wherein the plurality of water assessment levels are based on one or more thresholds of predetermined chemical concentrations.

17. The non-transitory computer readable medium of claim 15 ,

wherein the FWHP data is acquired using at least one pressure sensor in at least one well-surface system, and

wherein the reservoir pressure criterion is determined using the FWHP data and a plurality of predetermined reservoir pressure tiers that describe different pressure conditions of a reservoir.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2021
From: AL SAAD, MOHAMMED S.; AL-QAHTANI, ADEL
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 057102/0076 →
Continuity (1)
Related Publication 20220290554A1 · Sep 15, 2022
Cited By (1)
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