IP Library Granted Patent US 12,215,560
Granted Patent B2
US 12,215,560 · App. 17/788,059 · Granted Feb 4, 2025

Seal that embraces the electrical conductors that cross through the wellhead and device comprising the same

Inventor: Santiago Tovar Cardona (Cundinamarca, CO)
E21B33/0407E21B33/0422
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Quick Facts
Patent No.
US 12,215,560
App. No.
17/788,059
Granted
Feb 4, 2025
Kind
B2
Abstract

The present invention relates to an elastomeric seal that embraces the electrical conductors that pass through the wellhead and comprises an upper cylindrical portion, a lower frustoconical portion, one to three through holes longitudinally crossing the seal and one to three longitudinal cuts that go from the periphery of said through holes to the seal periphery. In an alternative of the invention, the seal comprises more than one through holes, one longitudinal cut that goes from the periphery of one of the through holes to the periphery of the seal and one or two longitudinal cuts that go from the periphery of one of said through holes to the periphery another through hole.

Claims (22)

1. An elastomeric seal ( 1 ) for electrical conductors ( 5 ) passing through a wellhead, comprising:

a body having an upper cylindrical portion ( 11 ) and a lower frustoconical portion ( 12 );

a first through hole, a second through hole and a third through hole, each of which longitudinally crosses the elastomeric seal ( 1 );

a first longitudinal cut between the periphery of the first through hole and the periphery of the second through hole;

a second longitudinal cut between the periphery of the second through hole and the periphery of the third through hole;

a third longitudinal cut between the periphery of the third through hole and the periphery of the elastomeric seal;

wherein each of the longitudinal cuts are adapted to open the body of the elastomeric seal longitudinally in order to provide access thereto to a cable or an electrical conductor and allow the cable or electrical conductor to be placed in the corresponding through hole.

2. The elastomeric seal ( 1 ) according to claim 1 , characterized in that it is made of elastic or polymeric material.

3. A modular mechanical device ( 10 ) for sealing conductive elements passing through wellheads comprising:

an elastomeric seal ( 1 );

a modular retaining ring system ( 2 ) located on the elastomeric seal ( 1 ), said seal ( 1 ) together with the retaining ring ( 2 ) being placed inside a seal chamber ( 3 ) and being adjusted by means of a threaded system with a seal chamber cover ( 4 ); and

wherein the elastomeric seal comprises an upper cylindrical portion, a lower frustoconical portion, a first through hole, a second through hole and a third through hole, each of which longitudinally crosses the elastomeric seal, a first longitudinal cut between the periphery of the first through hole and the periphery of the second through hole, a second longitudinal cut between the periphery of the second through hole and the periphery of the third through hole, a third longitudinal cut between the periphery of the third through hole and the periphery of the elastomeric seal;

wherein each of the longitudinal cuts are adapted to open the elastomeric seal longitudinally in order to provide access thereto to a cable or an electrical conductor.

4. The modular mechanical device ( 10 ) according to claim 3 , characterized in that the retaining ring ( 2 ) is modular and comprises one to three through holes ( 21 ), through which the electrical conductors ( 5 ) pass, one to six cuts ( 22 ) that communicate the holes with the outer diameter, one to three cuts ( 24 ) that communicate the through holes ( 21 ) with each other, and one to three grooves to house the same number of seal rings ( 23 ).

5. The modular mechanical device ( 10 ) according to claim 4 , characterized in that the retaining ring ( 2 ) is made of electrically non-conductive material (dielectric) and has a cylindrical external shape compatible with the internal seal area ( 31 ) of the seal chamber ( 3 ).

6. The modular mechanical device ( 10 ) according to claim 4 , characterized in that the seal rings or gaskets of the retaining ring ( 2 ) are O-rings.

7. The modular mechanical device ( 10 ) according to claim 6 , characterized in that the seal chamber ( 3 ) comprises from top to bottom a first seal area ( 31 ) where the retaining ring ( 2 ) is housed, which features on its external surface a thread system ( 34 ) and one or several housings for the ring seal ( 33 ), which is attached to the seal chamber cover ( 4 ); under the first seal area a second seal area ( 35 ) is located, where the elastomeric seal unit ( 1 ) is located; then, it has a thread system ( 36 ) on the external surface that adapts and joins the different types of pipe hanger ( 9 ); then, on the same external surface it has one or several housings for seal rings ( 32 ) that seal against the pipe hanger ( 9 ), and under the second seal area ( 35 ), it has an internal passage area ( 37 ), through which the electric cable ( 6 ) or the electric conductors ( 5 ) pass.

8. The modular mechanical device ( 10 ) according to claim 3 , characterized in that the seal chamber cover ( 4 ) comprises on its outer surface one to five housings for seal rings ( 41 ), which seal against a through hole in the upper section of the wellhead ( 8 ), one or two thread systems ( 42 , 44 ), which adapt and assemble one or two seal chambers ( 3 ) and one or two seal areas ( 43 ), which house the upper part of the retaining ring ( 2 ).

9. The modular mechanical device ( 10 ) according to claim 7 or 8 , characterized in that the seal chamber ( 3 ) and the seal chamber cover ( 4 ) are made of metallic material with internal and external shapes essentially cylindrical, except for the area ( 35 ) that receives the lower portion of the seal ( 1 ) having a frustoconical shape.

10. The modular mechanical device ( 10 ) according to claim 3 , characterized in that it is threaded and sealed by means of its thread system ( 36 ) to the pipe hanger ( 9 ) located between the lower section ( 11 ) of the wellhead and the upper section ( 8 ) of the wellhead, where through the use of O-rings it closes, seals and provides pressure integrity to the wellhead, allowing the cable ( 6 ) coming from inside the well to be connected to the remote external power source ( 7 ).

11. The modular mechanical device ( 10 ) according to claim 3 , comprising two chambers ( 3 ), with their respective elastomeric seals ( 1 ) and retaining rings ( 2 ), and two seal chamber covers ( 4 ), where the thread ( 42 ) of the first cover ( 4 ) receives the thread ( 34 ) of the first seal chamber ( 3 ) and the thread ( 44 ) of the first cover ( 4 ) receives the thread ( 36 ) of a second seal chamber ( 3 ), the thread ( 34 ) of the second seal chamber ( 3 ) is screwed into the thread ( 42 ) of the second cover ( 4 ) and the thread system ( 36 ) of the first seal chamber ( 3 ) is fixed to the pipe hanger ( 9 ) located between the lower section ( 11 ) of the wellhead and the upper section ( 8 ) of the wellhead, where through the use of ring seals (O-rings) it closes.

12. The modular mechanical device ( 10 ) according to claim 3 , comprising three chambers ( 3 ), with their respective elastomeric seals ( 1 ) and retaining rings ( 2 ), and three seal chamber covers ( 4 ), where the thread ( 42 ) of the first cover ( 4 ) receives the thread ( 34 ) of the first seal chamber ( 3 ), the thread ( 44 ) of the first cover ( 4 ) receives the thread ( 36 ) of a second seal chamber ( 3 ), the thread ( 34 ) of the second seal chamber ( 3 ) is screwed into the thread ( 42 ) of the second cover ( 4 ), the thread ( 44 ) of the second cover ( 4 ) receives the thread ( 36 ) of a third seal chamber ( 3 ), the thread ( 34 ) of the third seal chamber ( 3 ) is threaded in the thread ( 42 ) of the third cover ( 4 ), and the thread system ( 36 ) of the first seal chamber ( 3 ) is fixed to the pipe hanger ( 9 ) located between the lower section ( 11 ) of the wellhead and the upper section ( 8 ) of the wellhead, where through the use of ring seals (O-rings) it closes.

Priority Claims (1)
CO 2019/0015116 · Dec 31, 2019 · national
Continuity (1)
Related Publication 20230069854A1 · Mar 9, 2023
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Cited By (1)
US 12,586,996