IP Library Granted Patent US 10,393,561
Granted Patent B2
US 10,393,561 · App. 15/514,322 · Granted Aug 27, 2019

Production of hydrocarbons with metric counter

Inventors: Cécile Coudroy (Orthez, FR); Jean Paul Couput (Pau, FR); Renaud Caulier (Pau, FR); Vincent Arendo (Pau, FR)
Assignee: Total S.A.
G01F7/005C10G1/00E21B34/06E21B43/00E21B47/06E21B47/10G01F1/34G01F1/74G01F25/0007
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Quick Facts
Patent No.
US 10,393,561
App. No.
15/514,322
Granted
Aug 27, 2019
Kind
B2
Abstract

An improved solution for estimating the flow rate of a fluid in a line of a hydrocarbon production installation, during production. Systems and methods for producing hydrocarbons on a line of a hydrocarbon production installation can include at least two devices adapted each for providing an estimate of the flow rate of a fluid in the line based on respective data. The devices include at least one metric counter, and the data relative to the provision of an estimate of the flow rate by the metric counter include a measurement done by at least one sensor of the metric counter on the fluid. Further, data can be determined relative to the provision of an estimate of the flow rate by the devices, and a DVR process involving the determined data, the reconciliation being conditioned by at least a substantial equality between the estimates of the flow rate of the fluid.

Claims (39)

1. A method for producing hydrocarbons on a line of a hydrocarbon production installation comprising at least two devices adapted each for providing an estimate of the flow rate of a fluid in the line based on respective data, the devices including at least one metric counter and at least one other device, and the data respective to the provision of an estimate of the flow rate by the metric counter including a physical measurement done by at least one sensor of the metric counter on the fluid, wherein the method comprises, during the production:

acquiring, by the at least one sensor of the metric counter on the fluid, a value of the physical measurement;

providing to a processor a value of the data respective to the provision of an estimate of the flow rate by the metric counter, including the value of the physical measurement;

providing to the processor a value of the data respective to the provision of an estimate of the flow rate by the other device;

performing, by the processor, a data reconciliation and validation process involving the provided data, the reconciliation being conditioned by an equality between the estimates of the flow rate of the fluid to provide by each of the devices,

the data reconciliation and validation process minimizing a cost function penalizing, for each reconciled datum, the difference between its value before reconciliation and its reconciled value;

providing to a memory coupled to the processor an information based on the data reconciliation and validation process; and

performing an action relative to the production based on the information.

2. The method according to claim 1 , wherein the difference is weighted in the cost function by an uncertainty relative to said reconciled datum.

3. The method according to claim 1 , wherein the information comprises the reconciled value of the fluid flow rate in the line.

4. The method according to claim 1 , wherein aside from the metric counter, the devices comprise at least one choke, a device associated with an inflow module, and/or a pipe.

5. The method according to claim 1 , wherein the information includes identification of a faulty sensor.

6. The method according to claim 2 , further comprising a detection of any reconciled datum for which the difference between its value before reconciliation and its reconciled value is above a threshold depending on the uncertainty relative to the reconciled datum.

7. The method according to claim 2 , comprising reiterating the data reconciliation and validation process, removing the reconciled datum having a weight greater than all other reconciled data in the value of the cost function, as long as the value of the cost function is above a predetermined threshold.

8. The method according to claim 3 , wherein the information further comprises an uncertainty relative to the reconciled value of the fluid flow rate in the line depending on the difference between its value before reconciliation and its reconciled value.

9. The method according to claim 3 , wherein the action is reallocation of production by lines.

10. The method according to claim 4 , wherein:

the physical measurement done by the sensor of the metric counter on the fluid is an electric, nuclear and/or optical measurement,

the choke is adapted for providing an estimate of the flow rate of the fluid in the line based on a valve opening and a measurement done by at least one sensor on the fluid supplying the pressure losses associated with the valve opening,

the device associated with the inflow module is adapted for providing an estimate of the flow rate of the fluid in the line based on a pressure measurement done by at least one sensor on the fluid and physicochemical properties of the fluid, and/or

the pipe is adapted for providing an estimate of the flow rate of the fluid in the line based on geometric and/or mechanical properties of the pipe and a measurement done by at least one sensor on the fluid supplying the pressure and/or temperature losses associated with the geometric and/or mechanical properties of the pipe.

11. The method according to claim 5 , wherein the action comprises computing replacement values corresponding to the faulty sensor.

12. A non-transitory data storage memory having recorded thereon a computer program comprising instructions for carrying out a method for producing hydrocarbons on a line of a hydrocarbon production installation comprising at least two devices adapted each for providing an estimate of the flow rate of a fluid in the line based on respective data, the devices including at least one metric counter and at least one other device, and the data respective to the provision of an estimate of the flow rate by the metric counter including a physical measurement done by at least one sensor of the metric counter on the fluid, wherein the method comprises, during the production, by a processor:

receiving a value of the data respective to the provision of an estimate of the flow rate by the metric counter, including a value of the physical measurement acquired by the at least one sensor of the metric counter on the fluid;

receiving a value of the data respective to the provision of an estimate of the flow rate by the other device;

performing a data reconciliation and validation process involving the received values, the reconciliation being conditioned by an equality between the estimates of the flow rate of the fluid to provide by each of the devices, the data reconciliation and validation process minimizing a cost function penalizing, for each reconciled datum, the difference between its value before reconciliation and its reconciled value;

generating and sending to a memory coupled to the processor an information based on the data reconciliation and validation process, an action relative to the production being performable based on the generated information.

13. The non-transitory data storage memory of claim 12 , wherein the information includes identification of a faulty sensor.

14. The non-transitory data storage memory of claim 12 , wherein the information comprises the reconciled value of the fluid flow rate in the line.

15. The non-transitory data storage memory of claim 13 , wherein the action is reallocation of production by lines.

16. A system adapted for communicating with at least two devices adapted each for providing an estimate of the flow rate of a fluid in a hydrocarbon production line based on respective data, the devices including at least one metric counter and at least one other device, and the data respective to the provision of an estimate of the flow rate via the metric counter including a physical measurement done by at least one sensor of the metric counter on the fluid, the system comprising a processor coupled to a memory having recorded thereon a computer program comprising instructions for carrying out a method for producing hydrocarbons on the hydrocarbon production line, wherein the method comprises, during the production, by the processor:

receiving a value of the data respective to the provision of an estimate of the flow rate by the metric counter, including a value of the physical measurement acquired by the at least one sensor of the metric counter on the fluid;

receiving a value of the data respective to the provision of an estimate of the flow rate by the other device, and

performing a data reconciliation and validation process involving the received values, the reconciliation being conditioned by an equality between the estimates of the flow rate of the fluid to provide by each of the devices, the data reconciliation and validation process minimizing a cost function penalizing, for each reconciled datum, the difference between its value before reconciliation and its reconciled value;

generating and sending to the memory an information based on the data reconciliation and validation process, an action relative to the production being performable based on the generated information.

17. The system of claim 16 , wherein the information includes identification of a faulty sensor.

18. The system of claim 16 , wherein the information comprises the reconciled value of the fluid flow rate in the line.

19. The system of claim 17 , wherein the action comprises computing replacement values corresponding to the faulty sensor.

20. The system of claim 18 , wherein the action is reallocation of production by lines.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 67096 FRAME: 87. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 26, 2024
From: TOTALENERGIES SE (PREVIOUSLY TOTAL SA THEN TOTAL SE)
To: TOTALENERGIES ONETECH
Reel/Frame 068051/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2024
From: TOTALENERGIES SE (PREVIOUSLY TOTAL SA THEN TOTAL SE)
To: TOTALENERGIES ONETECH (PREVIOUSLY TOTALENERGIES ONE TECH)
Reel/Frame 067096/0087 →
CHANGE OF NAME Recorded Mar 16, 2021
From: TOTAL SA
To: TOTAL SE
Reel/Frame 055614/0318 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2017
From: COUDROY, CÉCILE; COUPUT, JEAN PAUL; CAULIER, RENAUD; ARENDO, VINCENT
To: TOTAL S.A.
Reel/Frame 043201/0483 →
Continuity (1)
Related Publication 20170276529A1 · Sep 28, 2017