IP Library Granted Patent US 10,443,328
Granted Patent B2
US 10,443,328 · App. 15/259,792 · Granted Oct 15, 2019

Managed pressure drilling system with influx control

Inventor: Martin Culen (Dubai, AE)
E21B21/08E21B21/106E21B44/00E21B47/042E21B2021/006
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Quick Facts
Patent No.
US 10,443,328
App. No.
15/259,792
Granted
Oct 15, 2019
Kind
B2
Abstract

A method of controlling an influx in a petroleum well with a managed pressure drilling system can include directing mud into the well; regulating a pressure of the mud proximate to a surface of the well with a choke valve; detecting, with a computing device having one or more processors, an intrusion of the influx in the well; increasing, in response to the detecting, the pressure of the mud proximate to the surface to a first level of surface back pressure by controlling the choke valve; determining, with the computing device, a volume of the influx; ascertaining an intrusion depth substantially concurrent with the detecting; and evacuating the influx in response to a correlation between both of the first level of surface back pressure and the volume of the influx relative to the intrusion depth.

Claims (72)

1. A method of controlling an influx in a petroleum well with a managed pressure drilling system comprising:

directing mud having a predetermined mud weight into the petroleum well with a mud pump;

regulating a pressure of the mud proximate to a surface of the petroleum well with a choke valve that is a component of the managed pressure drilling system;

detecting, with a computing device having one or more processors, an intrusion of the influx in the petroleum well;

increasing, in response to said detecting, the pressure of the mud proximate to the surface of the petroleum well to a first level of surface back pressure by controlling the choke valve whereby an input flow rate of the mud to the managed pressure drilling system is equalized to an output flow rate of the mud from the managed pressure drilling system;

determining, with the computing device, a volume of the influx;

ascertaining an intrusion depth of the petroleum well substantially concurrent with said detecting; and

evacuating the influx from the petroleum well through the managed pressure drilling system in response to a correlation between both of the first level of surface back pressure and the volume of the influx relative to the intrusion depth; and

wherein said evacuating further comprises:

determining, with the computing device, a volume of the influx if both (a) the influx were to reach the surface and (b) equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface;

determining, with the computing device, a second level of surface back pressure that correspond to the equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface; and

comparing, with the second level of surface back pressure against a maximum level of surface back pressure of the managed pressure drilling system.

2. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to the intrusion depth.

3. The method of claim 1 further comprising:

maintaining drilling operations between said detecting and said evacuating in response at least partially to both of the volume of the influx as well as the intrusion depth.

4. The method of claim 1 wherein said evacuating further comprises:

bypassing a secondary barrier equipment of the managed pressure drilling system in said evacuating of the influx in response at least partially to both of the first level of surface back pressure as well as the intrusion depth.

5. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to a height of the influx in the petroleum well when the influx reaches the surface.

6. The method of claim 1 further comprising:

determining a height of the influx in the petroleum well when the influx reaches the surface.

7. The method of claim 1 further comprising:

circulating the influx through the petroleum well with the managed pressure drilling system; and

maintaining a circulating pressure at a bottom of the well at a substantially constant level during said circulating.

8. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to the intrusion depth.

9. The method of claim 1 further comprising:

increasing the pressure of the mud proximate to the surface of the petroleum well to a second level of surface back pressure greater than the first level of surface back pressure by controlling the choke valve in response to the influx reaching the surface.

10. The method of claim 9 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to the second level of surface back pressure.

11. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to an open hole diameter of the petroleum well.

12. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to a temperature of the mud at the surface of the petroleum well.

13. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to a temperature of the mud at a bottom of the petroleum well.

14. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to the predetermined mud weight of the mud.

15. The method of claim 1 wherein said evacuating further comprises:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to an inclination of a wellbore of the petroleum well.

16. A managed pressure drilling system configured to control an influx in a petroleum well and comprising:

a computing device having one or more processors and a non-transitory, computer readable medium storing instructions that, when executed by the one or more processors, cause the computing device to perform operations comprising:

directing mud having a predetermined mud weight into the petroleum well with a mud pump;

regulating a pressure of the mud proximate to a surface of the petroleum well with a choke valve that is a component of the managed pressure drilling system;

detecting, with a computing device having one or more processors, an intrusion of the influx in the petroleum well;

increasing, in response to said detecting, the pressure of the mud proximate to the surface of the petroleum well to a first level of surface back pressure by controlling the choke valve whereby an input flow rate of the mud to the managed pressure drilling system is equalized to an output flow rate of the mud from the managed pressure drilling system;

determining, with the computing device, a volume of the influx;

ascertaining an intrusion depth of the petroleum well substantially concurrent with said detecting;

evacuating the influx from the petroleum well through the managed pressure drilling system in response to a correlation between both of the first level of surface back pressure and the volume of the influx relative to the intrusion depth; and

wherein the evacuating further comprises:

determining, with the computing device, a volume of the influx if both (a) the influx were to reach the surface and (b) equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface;

determining, with the computing device, a second level of surface back pressure that correspond to the equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface; and

comparing, with the second level of surface back pressure against a maximum level of surface back pressure of the managed pressure drilling system.

17. The managed pressure drilling system of claim 16 wherein said non-transitory, computer readable medium stores instructions that, when executed by the one or more processors, cause the computing device to perform said evacuating to further comprise:

directing the influx through a primary barrier equipment of the managed pressure drilling system in response at least partially to the intrusion depth.

18. The managed pressure drilling system of claim 16 wherein said non-transitory, computer readable medium stores further instructions that, when executed by the one or more processors, cause the computing device to perform the operation comprising:

maintaining drilling operations between said detecting and said evacuating in response at least partially to both of the volume of the influx as well as the intrusion depth.

19. The managed pressure drilling system of claim 16 wherein said non-transitory, computer readable medium stores instructions that, when executed by the one or more processors, cause the computing device to perform said evacuating to further comprise:

bypassing a secondary barrier equipment of the managed pressure drilling system in said evacuating of the influx in response at least partially to both of the first level of surface back pressure as well as the intrusion depth.

20. One or more non-transitory computer-readable media having instructions stored thereon, wherein the instructions, in response to execution by a device, cause the device to:

direct mud having a predetermined mud weight into a petroleum well with a mud pump;

regulate a pressure of the mud proximate to a surface of the petroleum well with a choke valve that is a component of a managed pressure drilling system;

detect, with a computing device having one or more processors, intrusion of an influx in the petroleum well;

increase, in response to detection of the influx, the pressure of the mud proximate to the surface of the petroleum well to a first level of surface back pressure by controlling the choke valve whereby an input flow rate of the mud to the managed pressure drilling system is equalized to an output flow rate of the mud from the managed pressure drilling system;

determine, with the computing device, a volume of the influx;

ascertain an intrusion depth of the petroleum well substantially concurrent with detection of the influx;

evacuate the influx from the petroleum well through the managed pressure drilling system in response to a correlation between both of the first level of surface back pressure and the volume of the influx relative to the intrusion depth; and

wherein the evacuation further comprises:

determining, with the computing device, a volume of the influx if both (a) the influx were to reach the surface and (b) equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface;

determining, with the computing device, a second level of surface back pressure that correspond to the equalization of the input flow rate of the mud and output flow rate of the mud was maintained when the influx reaches the surface; and

comparing, with the second level of surface back pressure against a maximum level of surface back pressure of the managed pressure drilling system.

Continuity (2)
Provisional Application 62349194 · Jun 13, 2016
Related Publication 20170356259A1 · Dec 14, 2017
Cited By (2)
US 12,326,085 US 12,662,926