US2022025731A1PendingUtilityA1

Sealing apparatus for high pressure high temperature (hpht) applications

Assignee: HALLIBURTON ENERGY SERVICES INCPriority: Feb 29, 2016Filed: Oct 8, 2021Published: Jan 27, 2022
Est. expiryFeb 29, 2036(~9.6 yrs left)· nominal 20-yr term from priority
E21B 33/10E21B 33/1208F16J 15/32F16J 15/3284F16J 15/16
57
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Claims

Abstract

A sealing apparatus and related method for sealing an annular space between concentrically disposed members. In an exemplary embodiment, the method includes providing a sealing ring within the annular space, the sealing ring defining oppositely inclined interior and exterior surfaces each having a generally frusto-conical shape and defining opposing first and second edges, a nose adjoining the respective first edges of the interior and exterior surfaces, and a first convex surface adjoining the respective second edges of the interior and exterior surfaces opposite the nose; and forming a seal against a fluid pressure in the annular space, comprising depressing the first convex surface of the sealing ring so that the interior and exterior surfaces thereof expand radially to exert contact stress on each of the concentrically disposed members.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An apparatus, comprising:
 first and second concentrically disposed members;   a monolithic sealing ring having a convexly-shaped radial cross section and positioned within an annular space between the first and second concentrically disposed members, the monolithic sealing ring comprising:
 oppositely inclined interior and exterior surfaces each having a generally frusto-conical shape and defining opposing first and second edges; 
 a nose including a first convex surface and adjoining the respective first edges of the interior and exterior surfaces; and 
 a second convex surface adjoining the respective second edges of the interior and exterior surfaces, opposite the nose; 
   a compression ring positioned within the annular space directly adjacent to the monolithic sealing ring, the compression ring being adapted to engage the second convex surface of the monolithic sealing ring;   a back-up ring positioned within the annular space directly adjacent to the monolithic sealing ring, opposite the compression ring, the back-up ring being adapted to be engaged by the nose;   a first configuration, in which:
 the compression ring is spaced apart from the back-up ring by a first distance; 
 at least respective portions of the interior and exterior surfaces are disengaged from the first and second concentrically disposed members, respectively; 
 the compression ring engages a first portion, and is disengaged from at least respective second portions, of the second convex surface of the monolithic sealing ring; 
 a first portion of the nose engages the back-up ring, and at least at least respective second portions of the nose are disengaged from the back-up ring; 
   and   a second configuration, in which:
 the compression ring is spaced apart from the back-up ring by a second distance that is less than the first distance; 
 the at least respective portions of the interior and exterior surfaces of the monolithic sealing ring engage the first and second concentrically disposed members, respectively; 
 the compression ring engages the first portion, and the at least respective second portions, of the second convex surface of the monolithic sealing ring; 
 the first portion, and the at least respective second portions, of the nose engage the back-up ring. 
   
     
     
         2 . The apparatus of  claim 1 , wherein the interior surface has a first height and defines a first inclination angle; and
 wherein the exterior surface has a second height and defines a second inclination angle, the second height being equal to the first height, and the second inclination angle being oppositely inclined from, and equal to, the first inclination angle.   
     
     
         3 . The apparatus of  claim 1 , wherein the first and second convex surfaces have first and second radii, respectively, and a ratio of the second radius to the first radius ranges from 0.5 to 0.7. 
     
     
         4 . The apparatus of  claim 1 , wherein the convexly-shaped radial cross section of the monolithic sealing ring has a first width measured between the respective first edges of the interior and exterior surfaces and a second width measured between the respective second edges of the interior and exterior surfaces, the first width being smaller than the second width. 
     
     
         5 . The apparatus of  claim 4 , wherein a ratio of the first width to the second width ranges from 0.75 to 0.95. 
     
     
         6 . The apparatus of  claim 4 ,
 wherein the nose of the monolithic sealing ring defines:
 said at least respective second portions of the nose, which at least respective second portions of the nose form oppositely inclined first and second surfaces, respectively, each having a generally frusto-conical shape and defining opposing third and fourth edges, the respective fourth edges adjoining the respective first edges of the interior and exterior surfaces, the convexly-shaped radial cross section of the monolithic sealing ring having the second width measured between the respective fourth edges of the first and second surfaces and a third width measured between the respective third edges of the first and second surfaces, the third width being smaller than the second width; and 
 said first portion of the nose forming the first convex surface, which first convex surface adjoins the respective third edges of the first and second surfaces. 
   
     
     
         7 . The apparatus of  claim 6 , wherein the interior surface has a first height and defines a first inclination angle;
 wherein the exterior surface has a second height and defines a second inclination angle, the second height being equal to the first height, and the second inclination angle being oppositely inclined from, and equal to, the first inclination angle; and   wherein the first surface defines a third inclination angle, and the second surface defines a fourth inclination angle, the fourth inclination angle being oppositely inclined from, and equal to, the third inclination angle.   
     
     
         8 . The apparatus of  claim 7 , wherein a ratio of the third or fourth inclination angle to the first or second inclination angle ranges from 8 to 10. 
     
     
         9 . The apparatus of  claim 7 , wherein the monolithic sealing ring defines a third height measured from a crest of the first convex surface to a crest of the second convex surface; and
 wherein a ratio of the first or second height to the third height ranges from 0.45 to 0.65.   
     
     
         10 . The apparatus of  claim 9 , wherein a ratio of the second width to the third height ranges from 0.55 to 0.75. 
     
     
         11 . A method of sealing an annular space between first and second concentrically disposed members, the method comprising:
 positioning a monolithic sealing ring having a convexly-shaped radial cross section within the annular space between the first and second concentrically disposed members, the monolithic sealing ring comprising:
 oppositely inclined interior and exterior surfaces each having a generally frusto-conical shape and defining opposing first and second edges; 
 a nose including a first convex surface and adjoining the respective first edges of the interior and exterior surfaces; and 
 a second convex surface adjoining the respective second edges of the interior and exterior surfaces, opposite the nose; 
   positioning a compression ring within the annular space directly adjacent to the monolithic sealing ring, the compression ring being adapted to engage the second convex surface of the monolithic sealing ring;   positioning a back-up ring within the annular space directly adjacent to the monolithic sealing ring, opposite the compression ring, the back-up ring being adapted to be engaged by the nose;   and   actuating the monolithic sealing ring, the compression ring, and the back-up ring from a first configuration to a second configuration to seal the annular spaced between the first and second concentrically disposed members;   wherein, in the first configuration:
 the compression ring is spaced apart from the back-up ring by a first distance; 
 at least respective portions of the interior and exterior surfaces are disengaged from the first and second concentrically disposed members, respectively; 
 the compression ring engages a first portion, and is disengaged from at least respective second portions, of the second convex surface of the monolithic sealing ring; 
 a first portion of the nose engages the back-up ring, and at least at least respective second portions of the nose are disengaged from the back-up ring; 
   wherein, in the second configuration:
 the compression ring is spaced apart from the back-up ring by a second distance that is less than the first distance; 
 the at least respective portions of the interior and exterior surfaces of the monolithic sealing ring engage the first and second concentrically disposed members, respectively; 
 the compression ring engages the first portion, and the at least respective second portions, of the second convex surface of the monolithic sealing ring; 
 the first portion, and the at least respective second portions, of the nose engage the back-up ring; 
   and   wherein actuating the monolithic sealing ring, the compression ring, and the back-up ring from the first configuration to the second configuration comprises communicating a fluid pressure to the annular space on the one side of the monolithic sealing ring.   
     
     
         12 . The method of  claim 11 , wherein the interior surface has a first height and defines a first inclination angle; and
 wherein the exterior surface has a second height and defines a second inclination angle, the second height being equal to the first height, and the second inclination angle being oppositely inclined from, and equal to, the first inclination angle.   
     
     
         13 . The method of  claim 11 , wherein the first and second convex surfaces have first and second radii, respectively, and a ratio of the second radius to the first radius ranges from 0.5 to 0.7. 
     
     
         14 . The method of  claim 11 , wherein the convexly-shaped radial cross section of the monolithic sealing ring has a first width measured between the respective first edges of the interior and exterior surfaces and a second width measured between the respective second edges of the interior and exterior surfaces, the first width being smaller than the second width. 
     
     
         15 . The method of  claim 14 , wherein a ratio of the first width to the second width ranges from 0.75 to 0.95. 
     
     
         16 . The method of  claim 14 ,
 wherein the nose of the monolithic sealing ring defines:
 said at least respective second portions of the nose, which at least respective second portions of the nose form oppositely inclined first and second surfaces, respectively, each having a generally frusto-conical shape and defining opposing third and fourth edges, the respective fourth edges adjoining the respective first edges of the interior and exterior surfaces, the convexly-shaped radial cross section of the monolithic sealing ring having the second width measured between the respective fourth edges of the first and second surfaces and a third width measured between the respective third edges of the first and second surfaces, the third width being smaller than the second width; and 
 said first portion of the nose forming the first convex surface, which first convex surface adjoins the respective third edges of the first and second surfaces. 
   
     
     
         17 . The method of  claim 16 , wherein the interior surface has a first height and defines a first inclination angle;
 wherein the exterior surface has a second height and defines a second inclination angle, the second height being equal to the first height, and the second inclination angle being oppositely inclined from, and equal to, the first inclination angle; and   wherein the first surface defines a third inclination angle, and the second surface defines a fourth inclination angle, the fourth inclination angle being oppositely inclined from, and equal to, the third inclination angle.   
     
     
         18 . The method of  claim 17 , wherein a ratio of the third or fourth inclination angle to the first or second inclination angle ranges from 8 to 10. 
     
     
         19 . The method of  claim 17 , wherein the monolithic sealing ring defines a third height measured from a crest of the first convex surface to a crest of the second convex surface; and
 wherein a ratio of the first or second height to the third height ranges from 0.45 to 0.65.   
     
     
         20 . The method of  claim 19 , wherein a ratio of the second width to the third height ranges from 0.55 to 0.75.

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