Gravel packing of wells
Abstract
Apparatus (20) for gravel packing a wellbore interval (11) having shunt means (25, 225, 325, 425, 525A, 525B) (i.e. conduits) (26a-c, 226a-c, 326, 426, 526) on the external surface of a sand screen which can selectively deliver a gravel slurry to different levels of the interval during operation. The shunt means (25, 225, 325, 425, 525a, 525b) is comprised of a variety of differently configured, perforated conduits (26a-c, 226a-c, 326, 426, 526) and/or arrangements of these conduits.
Term
Term ended
Projected expiry passed 7 May 2012, 14.4 years ago.
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8 claims: 1 independent, 7 dependent
- 1ctatms:1. Apparatus for gravel packing an interval of a wellbore, said apparatus comprising: a sand screen adapted bo be connected to the lower end of a workstring;and shunt means on the external surface of said sand screen for selectively delivering a gravel slurry to different levels of said interval when said apparatus is in an operable position within said wellbore.
63 paragraphs in 20 sections, as filed
DESCRIPTION
1· Technical Field
5. Hie present invention relates to the gravel packing of wells and in one of its aspects relates to an apparatus for use in gravel acking a well which provides a good distribution of gravel throughout the packed interval of the wellbore.
10. 2. Background
In producing hydrocarbons or the like iron loosely or unconsolidated and/or fractured subterranean formations, it is not uncommon to produce large volumes of particulate material (e.g. sand) along with the formation fluids. These particulates routinely cause a variety of
15. problems which result in added expense and substantial downtime. For example, in most instants, particulates in the produced fluids cause (1) severe errosion of the well tubing and other production equipment;
(2) partial or complete clogging of the flow iron the well which requires workover of the well; (3) caving in the formation and
20. collapse of the well casing; (4) extra processing of the fluids at the surface to remove the particulates; and (5) extra cost in disposing of the particulates once they have been separated. Accordingly, it is extremely important to control the production of particulates in most operations.
25.
Probably the most widely-used technique used to control the production of particulates (e.g. sand) from a well is known as gravel packing. In a typical gravel pack, a screen is lowered into the wellbore and positioned adjacent the interval of the well which is to be completed.
30. Particulate material, collectively referred to as gravel, is then
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- 2 pumped as a slurry down the tubing cn which the screen is suspended. The slurry exits the tubing above the screen through a cross-over or the like and flows downward in the annulus formed between the screen and the well casing or open hole, as the case may be. The liquid in
5. the slurry flows into the formation and/or the openings in the screen which are sized to prevent the gravel frcm flowing therethrou^i. This results in the gravel being deposited or screened out in the annulus around the screen where it collects to form the gravel pack. The gravel is sized so that it farms a permeable mass around the
10. screen which allows flow of the produced fluids therethrough and into the screen while blocking the flew any particulates produced with the formation fluids.
One of the major problems associated with gravel packing, especially
15. where long or inclined intervals are to be completed, arises from the difficulty in distributing the gravel over the entire interval to be completed, i.e. completely packing the annulus between the screen and the casing in cased wells or between the screen and the wellbore' in open, hole or under-reamed completions. This poor distribution of
2o. gravel (i.e. incomplete packing of the interval) is often caused by the liquid in the gravel slurry being lost into the more permeable portions of the formation interval which, in turn, causes the formation of gravel (e.g.sand) bridges in the annulus before all of the gravel has been placed. Such bridges block further flew of the
25. slurry through the annulus which prevents the placement of sufficient gravel (a) below the bridge for tcp-to-bcrttcmi packing operations or (b) above the bridge, for bottem-to-tep packing operations.
U.S. Patent 4,945,991 discloses a method for gravel packing an
30. interval of a wellbore wherein there is goad distribution of the gravel throughout the desired interval even if sand bridges farm
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- 3 before all the gravel is deposited. In this method, perforated shunts or conduits are provided along the external surface of the screen which are in fluid communication with the gravel slurry as it enters the annulus in the wellbore adjacent the screen. If a sand bridge forms before all of the gravel is placed, the slurry will flow through
5· the conduits and out into the annulus through the perforations in the conduits to complete the filling of the annulus above and/or belcw the bridge. In scene instances, valve-like devices are provided for the perforations in these conduits so that there is no flow of slurry through the conduits until a bridge is actually farmed in the <sup>10</sup>· annulus; see co-pending U.S. Patent application 07/648,061, filed January 31, 1991 and assigned to the present Assignee.
SUMMARY OF THE INVENTION
The present invention provides an apparatus far gravel packing an interval of a wellbore wherein there is a good distribution of gravel <sup>15</sup> · over the entire interval even if a sand bridge or the like is farmed in the interval before the placement of the gravel is completed. The present apparatus is similar to that disclosed in U.S. Patent 4,945,991 but includes shunt means (i.e. conduits and arrangement of conduits) on the external surface of the sand screen which can
20. selectively deliver the gravel slurry to different levels of the interval during the gravel pack operation. This is believed to improve the efficiency of the gravel pack in sane applications (e.g. completion of extra long intervals) over that guaranteed with uniform shunts.
25.
More specifically, the present apparatus is comprised of a sand screen (e.g. screens, screened pipes, slotted liners, prepacked screens, etc.) having a cross-over sub or the like attached at its upper end which, in turn, is connected to and suspended in the wellbore by a
3°· workstring or tubing string. A shunt means is secured or otherwise
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- 4 provided on the external surface of the screen for selectively delivering a gravel slurry to different levels within the interval of the wellbore being completed. The shunt means of the present invention is comprised of a variety of differently configured, perforated conduits and/or arrangements of these conduits which are
5. adapted to receive the gravel slurry as it reaches the apparatus and direct it to a different levels within the interval. In some embodiments of the present invention, the conduits are open to receive slurry as it flows into the interval while in others the conduits are manifolded together and are connected to the outlet ports in the io. cross-over so that the slurry flows directly into the conduits for distribution in the interval.
The shunt means of the present invention include (1) a plurality of perforated conduits of different lengths, (2) a plurality of conduits,
15. each of which is perforated along a length which is different frcm the perforated lengths of the other conduits; (3) at least one perforated conduit wherein the perforations at one end are larger than the
- perforations at the other end; (4) at least one perforated conduit having a diameter at ore end larger than the diameter at the other
20. end; and (5) combinations thereof. Further, some of the conduits can be manifolded together into a first manifold which, in turn, is connected to the outlet ports of the cross-over sub with the first manifold being connected to a second manifold which also has additional conduits connected thereto.
25. BRIEF DESCRIPTION OF THE DRAWINGS
Ihe actual construction, operation, and apparent, advantages of the present invention will be better understood · by referring to the drawings in which like numerals identify like parts and in which:
30.
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- 5 FIG. 1 is an elevational view, partly in section, of the gravel pack apparatus of the present invention in position within a wellbore;
FIG. 2 is an elevational view of another embodiment of a shunt means
5. which can be used in gravel packing apparatus of FIG. 1;
FIG. 3 is an elevational view of still another embodiment of a shunt means of the present invention;
10. FIG. 4 is an elevational view of still another embodiment of a shunt means of the present invention; and
FIGS. ’5A and 5B are elevational views of different manifolded arrangements of shunt means of the present invention.
15.
BEST KNOWN MODE FDR CARRYING OOT THE TNVHTTION Referring more particularly to the drawings, FIG. 1 illustrates the lower end of a producing and/or injection well 10. Well 10 has a wellbore 11 which extends from the surface (not shewn) through an
20. unconsolidated and/or fractured production and/or injection formation 12. As shewn, wellbore 11 is cased with casing 13 and cement 14 having perforations 15 therethrough to establish fluid ccmmunication between formation 12 and the interior of casing 13. While well 10 is illustrated as a substantially vertical cased well, it should be
25. recognized that the present invention is equally applicable for use in open-hole and/or underreamed ccmpletions as well as in horizontal and/or inclined wellbores.
Gravel pack apparatus 20 of the present invention is positioned within
30. wellbore 11 adjacent the completion, interval of formation 12 and forms annulus 19 between the screen and the casing 13. Apparatus 20 is
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- 6 comprised of a sand screen 21 having a cross-over sub 22 connected to its upper end which, in turn, is suspended frcsn the surface on a tubing or work string (not shewn). The term screen is used generically herein and is meant to include and cover all types of
5. those structures commonly used ty the industry in gravel pack operations which permit flew of fluids therethrough while blocking the flow of particulates (e.g. ocmmercially-available screens, slotted or perforated liners or pipes, screened pipes, prepacked screens and/or liners, or combinations thereof). Screen 21 can be of one continuous
W. length or it may consist of sections (e.g. 30 foot sections) connected together by subs or blanks. An example of a typical sand screen which can be used in the present invention is disclosed in U.S. Patent 4,664,191, issued on May 12, 1987 and is incorporated herein by reference.
15.
Shunt means 25 is mounted or otherwise provided on the external surface of screen 21. As shewn in FIG. 1, shunt means, 25 is comprised of a plurality of perforated conduits 26a-c of varying lengths which extend longitudinally along the external surface of
20. screen 21; e.g. 26a is shorter than 26b, 26b is shorter than 26c, etc.. By varying the lengths of the conduits, gravel slurry flawing threwgh a respective conduit will be selectively delivered through the perforations or openings 26d in that conduit to different levels within annulus 19 during the gravel packing operation. Where the
25. interval lies in a horizontal wellbore or the like, level is intended to refer to lateral positions within the wellbore. The conduits 26a-c can be opened at both ends or open at its top end to receive gravel slurry as will be further explained below. Further, as shewn by the dotted lines in FIG. 1, all of the conduits can be
30. manifolded together by a manifold 27 which, in turn, is directly connected to outlet ports 28 in cross-over sub 22 whereby the gravel slurry flews directly into the manifold 27 during a gravel pack operation.
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In operation, apparatus 20 iss lowered into wellbore 11 on a workstring and is positioned adjacent formation 12. Packer 30 is set as will be understood by those skilled in the art. Gravel slurry is then pumped down the workstring and out the outlet ports 28 in cross-over sub 22. If conduits 26a-c are open at! 'their upper ends, the slurry will flow downward in the annulus 19. I As the slurry loses liquid to either formation 12 through casing perforations 15 or through screen 21 to be returned through pipe 31 in csoss-aver 22, the gravel carried by the slurry is deposited and collects in the annulus to farm the gravel pack.
As fully explained in U.S. Patent 4,945,991, which is incorpora.ted herein by reference, if the liquid is lost to a permeable stratum, in formation 12 before the annulus is filled, a sand bridge (dotted lines 32 in FIG. 1) is likely to farm which will block flow through the annulus and prevent further filling below the bridge. If this occurs, the gravel slurry will flew through the perforations 26d in 'the
I appropriate shunt conduit 26 to finish filling annulus 19. If conduits 26a-c are directly connected to outlet ports 28 by manifold 27, then the entire filling of annulus will be carried out through the perforations in the respective conduits 26a-c. Again, by selectively delivering the gravel directly to the various levels in. the annulus, it is believed that a better distribution of gravel will be accomplished and a better overall gravel pack efficiency will be obtained in certain applications such as those where long intervals are being completed.
Shunt means 25 can be comprised of conduits having configurations and arrangements different from t##6c has perforations 226d spaced over substantially its entire length while conduit 226b has perforations spaced over a lesser length and conduit 226a has perforations over even a lesser length.
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- 8 FIG. 3 illustrates a shunt means 325 in accordance with the present invention which is comprised of at least one conduit 326 which has perforations spaced over substantially its entire length wherein the sizes (diameter) of the perforations vary from one end to the other. That is, conduit 326 has perforations 326a at one end. which are relatively large (e.g. 1/8 inch diameter), intermediate perforations 326b which are smaller (e.g. 3/32 inch diameter), and still smaller perforations 326c (e.g. 1/16 inch diameter) at the other end.
During a gravel pack operation, the gravel slurry will take the path of least resistance through the conduits and will tend to flow through the bigger perforations first until they become blocked and then will flow through the next larger perforations which remain open and so forth.
FIG. 4 discloses still another shunt means 425 which is comprised of at least one stair-stepped conduit 426 which has a larger diameter at one end than the other. Hie larger diameter conduit at top encourages the slurry to flew downward in the conduit until gravel in the annulus blocks the perforations in the smaller diameter conduit. This shunt is particularly useful in circulation gravel packs since there is less screen area exposed through which liquid from the slurry can be lost and accordingly less chance far bridging in the annulus. FIGS. 5A and 5B both disclose shunt means 525a and 525b, respectively, which comprise different manifolding arrangements of conduits 526. In both shunt means, at least one conduit 526 is manifolded into a first manifold 527 which is adapted to be connected to outlet ports 28 (FIG. 1). Ihe first manifold is connected to a second manifold 527a which, in turn, has a plurality of conduits 226 connected thereto. If desired, the second manifold can be further connected to a third manifold 527b (FIG. 5A) and a fourth manifold 527c (FIG. 5B) and so
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PCT/US92/03815 forth. These arrangements selectively deliver the gravel slurry directly to their respective levels in the annulus.
While the perforations in the conduits of the various shunt means have been shown as opening to the front of the conduits, it should be understood that that they could open laterally just as well. Further, the conduits do not have to have a circular cross-section but could be square, retangular, or other configuration.
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Contents20
16 members in 8 offices
Priority claims7
| Document | Office | Kind | Date |
|---|---|---|---|
| 69416391 | United States of America | A | |
| 2135187 | Canada | A | |
| 9203815 | United States of America | W | |
| CA19922135187 | – | – | – |
| PCTUS9203815 | – | – | – |
| US19910694163 | – | – | – |
| WO1992US03815 | – | – | – |
Members16
| Document | Office | Kind | |
|---|---|---|---|
| US5113935A | United States of America | A | |
| CA2135187A1 | Canada | A1 | |
| WO9322536A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU2154392AThis record | Australia | A | |
| NO944201D0 | Norway | D0 | |
| NO944201L | Norway | L | |
| GB9422237D0 | United Kingdom | D0 | |
| GB2281333A | United Kingdom | A | |
| DE4294885T1 | Germany | T1 | |
| GB2281333B | United Kingdom | B | |
| RU94046000A | Russian Federation | A | |
| AU677164B2 | Australia | B2 | |
| RU2094596C1 | Russian Federation | C1 | |
| NO307265B1 | Norway | B1 | |
| DE4294885C2 | Germany | C2 | |
| CA2135187C | Canada | C |
Numbers
- Publication, DOCDB
- 2154392
- Publication, EPODOC
- AU2154392
- Application
- 2154392
- Application, DOCDB
- 2154392
- Application, EPODOC
- AU19920021543
Titles
- English
- Gravel packing of wells
Classification
- CPC, 2
- E21B43/08
- E21B43/04