IP Library Granted Patent US 7,552,890
Granted Patent B1
US 7,552,890 · App. 12/156,756 · Granted Jun 30, 2009

Tension enhancer for wheel-type tensioner

Assignee: RRI Holdings, Inc.
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Quick Facts
Patent No.
US 7,552,890
App. No.
12/156,756
Granted
Jun 30, 2009
Kind
B1
Abstract

A device for applying tension to a string of coiled tubing for the purpose of its insertion into or withdrawal from a wellbore. Specifically, the device is used with a wheel-type tensioner, which contacts and supports the tubing over an arc length of less than 180°. The device enhances the tractive ability of the tensioner by applying forces normal to the tubing to press it into more intimate contact with the surface of the wheel, thereby increasing the normal force and attendant frictional force between the tubing and the wheel.

Claims (43)

1. A wheel tensioner assembly for applying tension to a string of coiled tubing during its injection into and withdrawal from a wellbore, the wheel tensioner assembly comprising:

(a) a selectably rotatable tensioner wheel having a circumferential contact surface for interacting with a first side of the coiled tubing;

(b) a holddown device comprising

(i) two side frames, wherein each side frame mounts a set of plate guides, and

(ii) a plurality of roller mounting structures, wherein each roller mounting structure mounts a contact roller, a first end sheave on a first side of the contact roller, and a second end sheave on the second side of the contact roller and wherein each roller mounting structure is reciprocably positioned between two plate guides of each side frame; and

(c) a biasing mechanism for urging said contact rollers radially inwardly to bear against the second side of the coiled tubing and press the coiled tubing against the circumferential contact surface of the tensioner wheel, wherein the biasing mechanism includes a first tensioning cable in communication with the first end sheave of each roller mounting structure and a second tensioning cable in communication with the second end sheave of each roller mounting structure.

2. The wheel tensioner assembly of claim 1 , wherein tensioning the first and second tensioning cables biases the contact rollers against a second side of the coiled tubing.

3. The wheel tensioner assembly of claim 2 , wherein the the tension applied to the first tensioning cable is equal to the tension applied to the second tensioning cable.

4. The wheel tensioner assembly of claim 3 , wherein tensioning the first and second tensioning cables applies an equal load to the first side of the contact roller and to the second side of the contact roller.

5. The wheel tensioner assembly of claim 1 , wherein each of the side frames mounts a set of frame sheaves.

6. The wheel tensioner assembly of claim 5 , wherein the first tensioning cable is in communication with the set of frame sheaves mounted on one side frame and the second tensioning cable in communication with the set of frame sheaves mounted on the second side frame.

7. The wheel tensioner assembly of claim 1 , wherein the the set of plate guides mounted on the first side frame are equal in number to the set of plate guides mounted on the second side frame.

8. A wheel tensioner assembly for applying tension to a string of coiled tubing during its injection into and withdrawal from a wellbore, the wheel tensioner comprising:

(a) a tensioner wheel having a circumferential contact surface for interacting with a first side of the coiled tubing;

(b) a holddown device attached to the tensioner wheel, the holddown device having

(i) a first side frame mounting a set of first frame sheaves on an exterior side of the first side frame and a set of first plate guides on an interior side of the first side frame,

(ii) a second side frame mounting a set of second frame sheaves on an exterior side of the second side frame and a set of second plate guides on an interior side of the second side frame, and

(iii) a plurality of roller mounting structures, wherein each roller mounting structure mounts a contact roller, a first end sheave on a first side of the contact roller, and a second end sheave on the second side of the contact roller and wherein a first side of each roller mounting structure is reciprocably positioned between a pair of first plate guides and a second side of each roller mounting structure is reciprocably positioned between a pair of second plate guides; and

(c) a biasing mechanism for urging the contact rollers radially inwardly to apply a force normal to a second side of the coiled tubing and press the coiled tubing against the circumferential contact surface of the tensioner wheel, wherein the biasing mechanism includes a first tensioning cable in communication with the first end sheave of each roller mounting structure and the set of first frame sheaves and a second tensioning cable in communication with the second end sheave of each roller mounting structure and the set of second frame sheaves.

9. The wheel tensioner assembly of claim 8 , wherein tensioning of the first and second tensioning cables biases the contact rollers against a second side of the coiled tubing.

10. The wheel tensioner assembly of claim 9 , wherein tensioning the first and second tensioning cables applies an equal load to the first side of the contact roller and to the second side of the contact roller.

11. The wheel tensioner assembly of claim 8 , wherein the set of first frame sheaves are equal in number to the set of second frame sheaves.

12. The wheel tensioner assembly of claim 8 , wherein the set of first plate guides is equal in number to the set of second plate guides.

13. The wheel tensioner assembly of claim 8 , wherein the first tensioning cable is attached to a first hydraulic cylinder and the second tensioning cable is attached to a second hydraulic cylinder.

14. The wheel tensioner assembly of claim 13 , wherein the tension applied to the first tensioning cable by the first hydraulic cylinder is equal to the tension applied to the second tensioning cable by the second hydraulic cylinder.

15. A wheel tensioner assembly for applying tension to a string of coiled tubing during its injection into and withdrawal from a wellbore, the wheel tensioner comprising:

(a) a tensioner wheel rotatably mounted on a wheel pedestal, wherein the tensioner wheel has a rim, a shaft, a wheel sprocket mounted on the shaft, and a circumferential arcuate contact surface for interacting with a first side of the coiled tubing;

(b) a holddown device attached to the shaft of the tensioner wheel, the holddown device having

(i) a first side frame mounting a first hydraulic cylinder, a set of first frame sheaves on an exterior side of the first side frame, and a set of first plate guides on an interior side of the first side frame,

(ii) a second side frame mounting a first hydraulic cylinder, a set of second frame sheaves on an exterior side of the second side frame, and a set of second plate guides on an interior side of the second side frame, and

(iii) a plurality of roller mounting structures, wherein each roller mounting structure mounts a contact roller, a first end sheave on a first side of the contact roller, and a second end sheave on the second side of the contact roller and wherein a first side of each roller mounting structure is reciprocably fitted between a pair of first plate guides and a second side of each roller mounting structure is reciprocably fitted between a pair of second plate guides; and

(c) a first tensioning cable in contact with the first end sheave of each roller mounting structure and the set of first frame sheaves;

(d) a second tensioning cable in contact with the second end sheave of each roller mounting structure and the set of second frame sheaves

whereby when an equal local tension is applied to the first and second tensioning cables an equal lateral load is placed on the first and the second end sheaves of the roller mounting structure that is then transferred to a second side of the coiled tubing.

16. The wheel tensioner assembly of claim 15 , wherein the radial load on each first end sheave is about twice the local tension applied to the first tensioning cable and the radial load on each second end sheave is about twice the local tension applied to the second tensioning cable.

17. The wheel tensioner assembly of claim 15 , wherein a radial inward force applied to each roller mounting structure is equal to a sum of radial inward forces applied to the first and second end sheaves by the first and second tensioning cables.

18. A wheel tensioner assembly for applying tension to a string of coiled tubing during its injection into and withdrawal from a wellbore, the wheel tensioner comprising:

(a) a selectably rotatable tensioner wheel having an exterior circumferential contact surface for interacting with a first side of the coiled tubing; and

(b) a holddown device attached to a shaft of the tensioner wheel, the holddown device comprising

a plurality of roller mounting structures, wherein each roller mounting structure mounts a contact roller and positions the contact roller radially outward of the circumferential contact surface and wherein a first end sheave is mounted on each roller mounting structure on a first side of the contact roller and a second end sheave is mounted on an opposed side of each contact roller; and

a selectably engaged biasing mechanism for urging said contact rollers radially inwardly to bear against a second side of the coiled tubing and press the coiled tubing against the circumferential contact surface of the tensioner wheel, wherein the biasing mechanism includes a first tensioning cable in communication with the first end sheave and a second tensioning cable in communication with the second end sheave.

19. The wheel tensioner assembly of claim 18 , wherein the first tensioning cable is attached to a first hydraulic cylinder and the second tensioning cable is attached to a second hydraulic cylinder such that tensioning the first and second tensioning cables biases the contact rollers against the second side of the coiled tubing.

20. The wheel tensioner assembly of claim 19 , wherein the tension applied to the first tensioning cable by the first hydraulic cylinder is substantially equal to the tension applied to the second tensioning cable by the second hydraulic cylinder.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2016
From: RRI HOLDINGS, INC.
To: TOM C. GIPSON D/B/A NEW FORCE ENERGY
Reel/Frame 038877/0541 →
CHANGE OF NAME Recorded Mar 16, 2009
From: NORTHERN PLAINS DRILLING, INC.
To: RRI HOLDINGS, INC.
Reel/Frame 022408/0049 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2008
From: GIPSON, TOMMIE CARROLL
To: NORTHERN PLAINS DRILLING, INC.
Reel/Frame 021108/0178 →