IP Library › Granted Patent US 12,392,225
Granted Patent B2
US 12,392,225 · App. 17/218,762 · Granted Aug 19, 2025

Power management at a wellsite

Inventors: Nick Paul Krippner (Houston, TX); James Arthur Zapico (Houston, TX); Mateo Garcia (Houston, TX); Carlos White (Katy, TX)
Assignee: Schlumberger Technology Corporation
E21B41/0085H02J3/003H02J3/32E21B19/14E21B19/16E21B21/08
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Quick Facts
Patent No.
US 12,392,225
App. No.
17/218,762
Granted
Aug 19, 2025
Kind
B2
Abstract

An example well construction system includes well construction equipment, a power supply system, and a control system. The well construction equipment performs well construction operations. The power supply system outputs electrical power to the well construction equipment. The power supply system includes an electrical generator unit and a control system including a processor and a memory storing a computer program code. The computer program code causes the control system to control an electrical power output level of the power supply system during the well construction operations. The computer program code also causes the control system to control operation of the well construction equipment during the well construction operations based on the electrical power output level during the well construction operations and an electrical power demand level of the well construction equipment during the well construction operations.

Claims (116)

1. A well construction system comprising:

well construction equipment operable to perform well construction operations;

a power supply system operable to output electrical power to the well construction equipment, wherein the power supply system comprises: an electrical power generator unit installed at a wellsite surface; and an electrical energy storage unit operable to store the electrical power output by the electrical power generator unit,

wherein the electrical energy storage unit is electrically connected to the electrical power generator unit in parallel, such that the electrical energy storage unit operates as a load to the electrical power generator unit when the electrical energy storage unit stores the electrical power output by the electrical power generator unit; and

a control system comprising a processor and a memory storing a computer program code that, when executed by the processor, causes the control system to:

control an electrical power output level of the power supply system during the well construction operations;

control operation of the well construction equipment during the well construction operations based on:

the electrical power output level during the well construction operations; and

an electrical power demand level of the well construction equipment during the well construction operations; and

control operation of the electrical power generator unit based on measured load demand by the well construction equipment and the electrical power available from the power supply system during the well construction operations.

2. The well construction system of claim 1 wherein:

the memory further stores a well construction plan that is indicative of a plurality of planned tasks to be performed by the well construction equipment as part of the well construction operations to construct a planned well; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power output level during the well construction operations based on the well construction plan.

3. The well construction system of claim 2 wherein:

the well construction plan is further indicative of a planned electrical power demand of the well construction equipment for performing each of the planned tasks; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power output level during performance of the planned tasks based on the planned electrical power demand.

4. The well construction system of claim 2 wherein the well construction plan comprises at least one of:

properties of a subterranean formation through which the planned well is to be constructed;

a path along which the planned well is to be constructed through the subterranean formation;

a depth of the planned well;

specifications of the well construction equipment to be used to perform the well construction operations; and

specifications of tubulars to be used to perform the well construction operations.

5. The well construction system of claim 1 wherein:

the computer program code, when executed by the processor, also causes the control system to control operation of the electrical energy storage unit to alternatingly, during the well construction operations:

store the electrical power output by the electrical power generator unit; and

output the stored electrical power to the well construction equipment.

6. The well construction system of claim 5 wherein:

the well construction system is connectable with an electrical power grid such that:

the well construction equipment can receive electrical power from the electrical power grid; and

the electrical energy storage unit can store the electrical power from the electrical power grid; and

the computer program code, when executed by the processor, also causes the control system to control operation of the electrical energy storage unit to store the electrical power from the electrical power grid.

7. A well construction system comprising:

well construction equipment operable to perform well construction operations;

a power supply system operable to output electrical power to the well construction equipment,

wherein the power supply system comprises: an electrical power generator unit installed at a wellsite surface; and an electrical energy storage unit operable to store the electrical power output by the electrical power generator unit,

wherein the electrical energy storage unit is electrically connected to the electrical power generator unit in parallel, such that the electrical energy storage unit operates as a load to the electrical power generator unit when the electrical energy storage unit stores electrical power output by the electrical power generator unit; and

a control system comprising a processor and a memory storing a computer program code and a well construction plan, wherein:

the well construction plan is indicative of a plurality of planned tasks to be performed by the well construction equipment as part of the well construction operations to construct a planned well; and

the computer program code, when executed by the processor, causes the control system to:

control an electrical power output level of the power supply system based on:

the well construction plan,

measured load demand by the well construction equipment; and

electrical power available from the power supply system during the well construction operations; and

control operation of the well construction equipment during the well construction operations based on:

the electrical power output level during the well construction operations; and

an electrical power demand level of the well construction equipment during the well construction operations.

8. The well construction system of claim 7 wherein:

the well construction plan is further indicative of a planned electrical power demand of the well construction equipment for performing each of the planned tasks; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power output level during performance of the planned tasks based on the planned electrical power demand.

9. The well construction system of claim 7 wherein:

the computer program code, when executed by the processor, also causes the control system to control operation of the electrical energy storage unit to alternatingly, during the well construction operations:

store the electrical power output by the electrical power generator unit; and

output the stored electrical power to the well construction equipment.

10. The well construction system of claim 9 wherein:

the well construction plan is further indicative of a planned electrical power demand of the well construction equipment for performing each of the planned tasks; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power output level during performance of the planned tasks based on the planned electrical power demand.

11. The well construction system of claim 7 wherein the well construction plan comprises at least one of:

properties of a subterranean formation through which the planned well is to be constructed;

a path along which the planned well is to be constructed through the subterranean formation;

a depth of the planned well;

specifications of the well construction equipment to be used to perform the well construction operations; and

specifications of tubulars to be used to perform the well construction operations.

12. An apparatus comprising:

a control system installable in association with a well construction rig, wherein:

the well construction rig comprises:

well construction equipment operable to perform well construction operations to construct a planned well at a wellsite; and

a power supply system operable to output electrical power to the well construction equipment, the power supply system comprising:

electrical power generator units installed at a wellsite surface operable to output electrical power to the well construction equipment; and

an electrical energy storage unit operable to store the electrical power output by the electrical power generation units, wherein the electrical energy storage unit is electrically connected to the electrical power generator units in parallel, such that the electrical energy storage unit operates as a load to the electrical power generator units when the electrical energy storage unit stores electrical power output by the electrical power generator units, and wherein the electrical energy storage unit is communicatively connected with the control system via a communication network of the well construction rig;

the control system is communicatively connectable with the electrical power generator units via the communication network; and

the control system comprises a processor and a memory storing a computer program code,

wherein the computer program code, when executed by the processor, causes the control system to:

control an electrical power output level of the power supply system during well construction operations;

control operation of the well construction equipment during the well construction operations based on:

the electrical power output level during the well construction operations; and

an electrical power demand level of the well construction equipment during the well construction operations; and

control operation of the electrical power generator units based on measured load demand by the well construction equipment and electrical power available from the power supply system during the well construction operations; and

control the electrical energy storage unit to cause the electrical energy storage unit to alternatingly:

store the electrical power output by the electrical power generator units; and

output the stored electrical power to the well construction equipment during the well construction operations.

13. The apparatus of claim 12 wherein:

the memory further stores a well construction plan;

the well construction plan is indicative of a plurality of planned tasks to be performed by the well construction equipment as part of the well construction operations; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power generator units and the electrical energy storage unit based on the well construction plan.

14. The apparatus of claim 13 wherein:

the well construction plan is further indicative of a planned electrical power demand of the well construction equipment for performing each of the planned tasks; and

the computer program code, when executed by the processor, also causes the control system to control the electrical power output of the electrical power generator units and the electrical energy storage unit based on the planned electrical power demand.

15. The apparatus of claim 13 wherein the well construction plan comprises at least one of:

properties of a subterranean formation through which the planned well is to be constructed;

a path along which the planned well is to be constructed through the subterranean formation;

a depth of the planned well;

specifications of the well construction equipment to be used to perform the well construction operations; and

specifications of tubulars to be used to perform the well construction operations.

16. An apparatus comprising:

a control system installable in association with a well construction rig, wherein:

the well construction rig comprises:

well construction equipment operable to perform well construction operations to construct a planned well at a wellsite; and

electrical power generator units operable to output electrical power to the well construction equipment, wherein the electrical power generator units are installed at a wellsite surface;

the control system is communicatively connectable with the electrical power generator units via a communication network of the well construction rig; and

the control system comprises a processor and a memory storing a computer program code; and

an electrical energy storage unit installable in association with the well construction rig, electrically connectable with the electrical power generator units, and communicatively connectable with the control system via the communication network,

wherein the electrical energy storage unit is electrically connected to the electrical power generator units in parallel, such that the electrical energy storage unit operates as a load to the electrical power generator units when the electrical energy storage unit stores the electrical power output by the electrical power generator units; and

a hydrogen gas source installable in association with the well construction rig, fluidly connectable with each engine of the electrical power generator units, and communicatively connectable with the control system via the communication network, wherein the hydrogen gas source is operable to output hydrogen gas into each engine;

wherein the computer program code, when executed by the processor, causes the control system to:

control the electrical power generator units; and

control the hydrogen gas source to cause the hydrogen gas source to output the hydrogen gas into one or more of the engines.

17. The apparatus of claim 16 wherein the computer program code, when executed by the processor, also causes the control system to control operation of the well construction equipment based on:

an electrical power output level of the electrical power generator units; and

an electrical power demand level of the well construction equipment.

18. The apparatus of claim 16 , wherein the computer program code, when executed by the processor, also causes the control system to control the electrical energy storage unit to cause the electrical energy storage unit to alternatingly:

store electrical power output by the electrical power generator units; and

output the stored electrical power to the well construction equipment.

19. The apparatus of claim 18 wherein the computer program code, when executed by the processor, also causes the control system to control operation of the well construction equipment based on:

an electrical power output level of the electrical power generator units;

a stored electrical power level of the electrical energy storage units; and

an electrical power demand level of the well construction equipment.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2024
From: KRIPPNER, NICK PAUL; ZAPICO, JAMES ARTHUR; GARCIA, MATEO; WHITE, CARLOS
To: SCHLUMBERGER TECHNOLOGY CORPORATION
Reel/Frame 067227/0176 →
Continuity (2)
Provisional Application 63002574 · Mar 31, 2020
Related Publication 20210301630A1 · Sep 30, 2021
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