US2024102373A1PendingUtilityA1

Downhole gas separator with concentric separation rings

Assignee: PRODUCTION PROS LLCPriority: Sep 22, 2022Filed: Sep 22, 2022Published: Mar 28, 2024
Est. expirySep 22, 2042(~16.1 yrs left)· nominal 20-yr term from priority
E21B 43/38E21B 43/127
24
PatentIndex Score
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Cited by
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Claims

Abstract

Horizontal wells and multi-completion vertical wells generally have a greater performance requirement on downhole gas separators to separate a gas portion from a liquid portion of the well fluid prior to entering an artificial lifting system (or pump). Implementations described and claimed herein provide a downhole gas separator comprising a dip tube extending from a tubing section inlet to an open end, a tubing section extending around the dip tube, and a separator sleeve extending around the tubing section. A liquid component of the fluid stream makes a first u-turn at the open end of the separator sleeve, an s-turn at the openings in the tubing section, and second u-turn at the open end of the dip tube. A gaseous component of the fluid stream continues upwards at the open end of the separator sleeve.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A downhole gas separator comprising:
 a pump;   a dip tube extending from a dip tube inlet to the pump;   a tubing section extending around the dip tube, the tubing section having a closed end below the dip tube inlet and openings above the dip tube inlet;   a separator sleeve extending around the tubing section, the separator sleeve having a closed end below the openings in the tubing section and an open end above the openings in the tubing section; and   a series of concentric separation rings oriented within a second annulus between the separator sleeve and the tubing section.   
     
     
         2 . The downhole gas separator of  claim 1 , wherein the concentric separation rings are fixedly attached to an exterior surface of the tubing section. 
     
     
         3 . The downhole gas separator of  claim 1 , wherein the tubing section including the concentric separation rings is slip fit within the separator sleeve. 
     
     
         4 . The downhole gas separator of  claim 1 , wherein the concentric separation rings each include one or more fluid apertures. 
     
     
         5 . The downhole gas separator of  claim 4 , wherein the fluid apertures are misaligned when fixedly attached to an exterior surface of the tubing section. 
     
     
         6 . The downhole gas separator of  claim 1 , wherein the concentric separation rings are spaced equidistantly along a length of the tubing section. 
     
     
         7 . The downhole gas separator of  claim 1 , further comprising:
 one or more of a screen, a media section, and surface contouring also oriented within the second annulus between the separator sleeve and the tubing section.   
     
     
         8 . The downhole gas separator of  claim 7 , wherein one or more of the screen, the media section, and the surface contouring are further oriented between the openings in the tubing section and the open end of the separator sleeve and is applied to one or both of an interior surface of the separator sleeve and an exterior surface of the tubing section within the second annulus. 
     
     
         9 . The downhole gas separator of  claim 1 , wherein the pump is oriented within the tubing section and fluidly connected to the dip tube at the dip tube inlet, the pump to draw a fluid stream through a first annulus between a casing and the separator sleeve, the second annulus between the separator sleeve and the tubing section, and a third annulus between the tubing section and the dip tube. 
     
     
         10 . The downhole gas separator of  claim 9 , wherein a liquid component of the fluid stream makes a first u-turn at the open end of the separator sleeve, an s-turn at the openings in the tubing section, and a second u-turn at the dip tube inlet. 
     
     
         11 . The downhole gas separator of  claim 9 , wherein a gaseous component of the fluid stream continues upwards at the open end of the separator sleeve, within the second annulus between the separator sleeve and the tubing section, and within the third annulus between the tubing section and the dip tube. 
     
     
         12 . The downhole gas separator of  claim 1 , wherein the dip tube, the tubing section, the series of concentric separation rings, and the separator sleeve are concentric. 
     
     
         13 . The downhole gas separator of  claim 1 , wherein the series of concentric separation rings cause turbulent fluid flow through the second annulus between the separator sleeve and the tubing section. 
     
     
         14 . The downhole gas separator of  claim 1 , wherein the series of concentric separation rings are further oriented between the openings in the tubing section and the open end of the separator sleeve. 
     
     
         15 . A method of operating a downhole gas separator comprising:
 pumping a production fluid stream through a first annulus between a casing and a separator sleeve, a second annulus between the separator sleeve and a tubing section, and a third annulus between the tubing section and a dip tube using a pump, wherein
 the dip tube extends from a dip tube inlet to the pump; 
 the tubing section extends around the dip tube, the tubing section having a closed end below the dip tube inlet and openings above the dip tube inlet; 
 the separator sleeve extends around the tubing section, the separator sleeve having a closed end below the openings in the tubing section and an open end above the openings in the tubing section, and wherein a series of concentric separation rings are oriented within the second annulus between the separator sleeve and the tubing section; and 
 the casing extends around the tubing section. 
   
     
     
         16 . The method of  claim 15 , wherein one or more of a screen, a media section, and surface contouring are further oriented within the second annulus between the separator sleeve and the tubing section. 
     
     
         17 . The method of  claim 15 , further comprising one or more of:
 separating gas and liquid components at the open end of the separator sleeve;   separating gas and liquid components within the second annulus between the separator sleeve and the tubing section; and   separating gas and liquid components within the third annulus between the tubing section and the dip tube.   
     
     
         18 . The method of  claim 15 , wherein a liquid component of the production fluid stream makes a first u-turn at the open end of the separator sleeve, an s-turn at the openings in the tubing section, and a second u-turn at the dip tube inlet. 
     
     
         19 . An oil well comprising:
 a casing including a perforated area through which a multi-phase fluid enters the casing;   a sucker-rod pump; and   a downhole gas separator secured within the casing above the perforated area, the downhole gas separator including:
 a dip tube extending from a dip tube inlet to the sucker-rod pump; 
 a tubing section extending around the dip tube, the tubing section having a closed end below the dip tube inlet and openings above the dip tube inlet; 
 a separator sleeve extending around the tubing section, the separator sleeve having a closed end below the openings in the tubing section and an open end above the openings in the tubing section; and 
 a series of concentric separation rings oriented within a second annulus between the separator sleeve and the tubing section, wherein the sucker-rod pump is to draw a fluid stream from the multi-phase fluid through a first annulus between the casing and the separator sleeve, the second annulus between the separator sleeve and the tubing section, and a third annulus between the tubing section and the dip tube and separate gas and liquid components of the fluid stream within each of the first annulus, the second annulus, and the third annulus. 
   
     
     
         20 . The oil well of  claim 19 , further comprising:
 one or more of a screen, a media section, and surface contouring also oriented within the second annulus between the separator sleeve and the tubing section.

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