IP Library › Granted Patent US 10,597,962
Granted Patent B2
US 10,597,962 · App. 15/718,942 · Granted Mar 24, 2020

Drilling with a whipstock system

Inventors: Victor Carlos Costa de Oliveira (Dhahran, SA); Ossama Sehsah (Dhahran, SA); Mario Augusto Rivas Martinez (Dhahran, SA)
Assignee: Saudi Arabian Oil Company
E21B23/04E21B7/061E21B23/01E21B47/12E21B29/06
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Quick Facts
Patent No.
US 10,597,962
App. No.
15/718,942
Granted
Mar 24, 2020
Kind
B2
Abstract

A whipstock system and methods are disclosed, including a whipstock body, a control unit mounted on or in the whipstock body, the control unit comprising transmitters and receivers operable to receive commands from an external source, activatable components mounted on or in the whipstock body, and a hydraulic system in the whipstock body, the hydraulic system in communication with the control unit, the hydraulic system including at last one hydraulic power unit operable to repeatedly activate and de-activate the activatable components.

Claims (43)

1. A whipstock system comprising:

a whipstock body;

a control unit mounted on or in the whipstock body, the control unit comprising transmitters and receivers operable to receive commands from an external source;

multiple upper slips mounted on or in the whipstock body,

multiple lower slips mounted on or in the whipstock body and

a hydraulic system in the whipstock body, the hydraulic system in communication with the control unit, the hydraulic system including at last one hydraulic power unit operable to repeatedly activate and de-activate the activatable components

wherein the hydraulic system comprises: a reservoir and an expansion chamber in the whipstock body; and a pump in the whipstock body in fluid communication with the reservoir and the expansion chamber;

wherein transfer of fluid from the reservoir to the expansion chamber activates the multiple upper slips and the multiple lower slips;

wherein transfer of fluid from the expansion chamber to the reservoir returns the multiple upper slips and the multiple lower slips to a retracted position; and

wherein the control unit comprises: one or more processors; and a computer-readable medium storing instructions executable by the one or more processors to perform operations comprising: receiving, from the external source, instructions to perform whipstock operations within the wellbore; and transmitting, to the hydraulic system, at least a portion of the instructions.

2. The whipstock system of claim 1 , further comprising at least one seal assembly.

3. The whipstock system of claim 2 , wherein the pump is hydraulically connected to the at least one seal assembly.

4. The whipstock system of claim 1 , wherein the hydraulic power unit is operatively coupled to the one or more processors and the hydraulic power unit configured to receive at least the portion of the instructions from the one or more processors.

5. The whipstock system of claim 1 , wherein the external source comprises:

one or more transmitters at the surface, the one or more transmitters configured to transmit the instructions to the one or more processors; and

one or more receivers at the surface, the one or more receivers configured to receive the status signals from the one or more processors.

6. The whipstock system of claim 5 , wherein the one or more transmitters and the one or more receivers are configured to communicate wirelessly with the one or more processors.

7. The whipstock system of claim 1 , wherein the control unit further comprises a power source mounted on or in the whipstock body, the power source electrically coupled to the one or more processors.

8. The whipstock system of claim 7 , wherein the power source is a wireless, stand-alone power source.

9. The whipstock system of claim 8 , wherein the wireless, stand-alone power source is a lithium battery.

10. The whipstock system of claim 8 , wherein the hydraulic system comprises a check valve.

11. A whipstock system comprising:

a whipstock body;

a control unit mounted on or in the whipstock body, the control unit comprising transmitters and receivers operable to receive commands from an external source;

multiple upper slips mounted on or in the whipstock body,

multiple lower slips mounted on or in the whipstock body, and

a hydraulic system in the whipstock body, the hydraulic system in communication with the control unit, the hydraulic system including at last one hydraulic power unit operable to repeatedly activate and de-activate the activatable components

wherein the hydraulic system comprises: a reservoir and an expansion chamber in the whipstock body; and a pump in the whipstock body in fluid communication with the reservoir and the expansion chamber;

wherein transfer of fluid from the reservoir to the expansion chamber activates the multiple upper slips and the multiple lower slips;

wherein transfer of fluid from the expansion chamber to the reservoir returns the multiple upper slips and the multiple lower slips to a retracted position; and

wherein the external source comprises: one or more transmitters at the surface, the one or more transmitters configured to transmit the instructions to the one or more processors; and one or more receivers at the surface, the one or more receivers configured to receive the status signals from the one or more processors.

12. The whipstock system of claim 11 , further comprising at least one seal assembly.

13. The whipstock system of claim 11 , wherein the control unit comprises: one or more processors; and a computer-readable medium storing instructions executable by the one or more processors to perform operations comprising: receiving, from the external source, instructions to perform whipstock operations within the wellbore; and transmitting, to the hydraulic system, at least a portion of the instructions.

14. The whipstock of claim 13 , wherein the hydraulic power unit is operatively coupled to the one or more processors and the hydraulic power unit configured to receive at least the portion of the instructions from the one or more proessors.

15. The whipstock system of claim 13 , wherein the hydraulic pump is hydraulically connected to the at least one seal assembly.

16. The whipstock system of claim 11 , wherein the operations further comprise:

receiving, from the whipstock assembly, status signals representing a whipstock status of the at least one of the plurality of whipstock assembly; and

transmitting, to the surface of the wellbore, the status signals.

17. The whipstock system of claim 11 , wherein the one or more transmitters and the one or more receivers are configured to communicate wirelessly with the one or more processors.

18. The whipstock system of claim 13 , wherein the control assembly further comprises a power source mounted on or in the whipstock body, the power source electrically coupled to the one or more processors.

19. The whipstock system of claim 18 , wherein the power source is a wireless, stand-alone power source.

20. The whipstock system of claim 19 , wherein the wireless, stand-alone power source is a lithium battery.

21. The whipstock system of claim 19 , wherein the hydraulic system comprises a check valve.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2018
From: COSTA DE OLIVEIRA, VICTOR CARLOS; SEHSAH, OSSAMA; RIVAS MARTINEZ, MARIO AUGUSTO
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 046036/0336 →
Continuity (1)
Related Publication 20190093436A1 · Mar 28, 2019
Cited By (1)
US 12,312,948