Deepwater drill string shut-off

6401823
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Inventors

Gonzalez, Romulo
Smits, Frans Sippo Wiegand

Application #

779758

Filed

Feb-8-2001

Published

Jun-11-2002

Current US Class

166/319
166/321

International Classes

E21B 021/10

Field of Search

166/373 166/336 166/316 166/319 166/321 166/324 166/363

Assignee

Shell Oil Company (Houston, TX)

Examiners

Tsay; Frank

US Patent References

3964556   Downhole signalin...
4291772   Drilling fluid bypa...
4461316   Drilling choke
4619335   Enhanced circulati...
4694903   Flapper type annul...
4779688   Mud saver valve
5205325   Flow control valve
5310012   Actuating device as...
5417291   Drilling connector
5628375   Thrust face lubricat...
6216799   Subsea pumping s...

Referenced by:

View Backward References

Other References

"Riserless Drilling/Deepwater Technology Symposium", by Allen D. Gault, World Oil, pp. 1-11. "Riserless Drilling: Circumventing the size/cost cycle in deepwater", by Allen Gault, Drilling Technology, pps. 1-4. "Subsea Mudlift Drilling JIP: Achieving dual gradient technology", by K. L. Smith et al., Deepwater Technology, pps. 21-28. "`Riserless` rivals rally to the cause", Offshore Engineer, Apr. 2000, pps. 20-23. "Shell moves forward with dual gradient deepwater drilling solution", Willaim Furlow, Offshore, Mar. 2000, pps. 95-96. "Riserless Drilling JIP/Conceptual Engineering" Jul. 30, 1997, Deepwater Drilling Workshop, MMS-LSU (Baton Rouge).

Citation

Cite This Patent

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Abstract
A drill string shut-off valve system for controlling the mud circulation system for deepwater marine drilling operations is disclosed, the drill string shut-off valve having a valve body having a cylinder, a main flow path, and a drilling mud flow channel, an upper and a lower connector on the valve body for installing the drill string shut-off valve into a drill string, and a valve positioned to selectively interrupt in the main flow path through the valve body or to complete the main flow path through the drilling mud flow channel. A piston in the cylinder is operably connected to the valve to drive it from an open to closed position. The piston has a first pressure face, a port presenting pressure from the upstream side of the valve to the first pressure face, and a second pressure face on the back of the piston. Exhaust ports present pressure from the annulus to the second pressure face and a spring biases the drill string shut-of valve to a closed position, but balanced with the area of the first pressure face to ensure valve opening at normal pump operation pressures. A spring adjustment assembly whereby the tension of the spring can be readily adjusted to allow for different drilling conditions is also disclosed.
 
Claims
What is claimed is:

1. A drill string shut-off valve for marine drilling, comprising;

a valve body having a cylinder, a main flow path, and a drilling mud flow channel;

an upper and a lower connector on the valve body for installing the drill string shut-off valve into a drill string;

a valve positioned to selectively interrupt in the main flow path through the valve body or to complete the main flow path through the drilling mud flow channel;

a piston in the cylinder operably connected to the valve to drive it from an open to closed position and further comprising:

a first pressure face;

a port presenting pressure from the upstream side of the valve to the first pressure face; and



Description
BACKGROUND OF THE INVENTION

The present invention relates to drilling systems and operations. More particularly, the present invention is a method and system for handling the circulation of drilling mud in deepwater offshore drilling operations.

Drilling fluids, also known as muds, are used to cool the drill bit, flush the cuttings away from the bit's formation interface and then out of the system, and to stabilize the borehole with a "filter cake" until newly drilled sections are cased. The drilling fluid also performs a crucial well control function and is monitored and adjusted to maintain a pressure with a hydrostatic head in uncased sections of the borehole that prevents the uncontrolled flow of pressured well fluids into the borehole from the formation.

Conventional offshore drilling circulates drilling fluids down the drill string and returns the drilling fluids with entrained cuttings through an annulus between the drill string and the casing below the mudline. A riser surrounds the drill string starting from the wellhead at the ocean floor to drilling facilities at the surface and the return circuit for drilling mud continues from the mudline to the surface through the riser/drill string annulus.
 
  An annulus vent valve is provided to vent gas or other production fluids from below a packer set within a well in deep-set applications. The valve may...  A downhole differential flow control valve is provided that utilizes a differential pressure area having one pressure area on which the wellbore pressure...