AU2013206178A1 - Swellable apparatus and method - Google Patents

Swellable apparatus and method Download PDF

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Publication number
AU2013206178A1
AU2013206178A1 AU2013206178A AU2013206178A AU2013206178A1 AU 2013206178 A1 AU2013206178 A1 AU 2013206178A1 AU 2013206178 A AU2013206178 A AU 2013206178A AU 2013206178 A AU2013206178 A AU 2013206178A AU 2013206178 A1 AU2013206178 A1 AU 2013206178A1
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AU
Australia
Prior art keywords
flow path
tubular
sand control
support structure
secondary flow
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
AU2013206178A
Inventor
Brian Nutley
Kim Nutley
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Swelltec Ltd
Original Assignee
Swelltec Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Swelltec Ltd filed Critical Swelltec Ltd
Priority to AU2013206178A priority Critical patent/AU2013206178A1/en
Publication of AU2013206178A1 publication Critical patent/AU2013206178A1/en
Abandoned legal-status Critical Current

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Abstract

The invention provides an apparatus and method for a sand control completion in a wellbore. The apparatus has a body comprising a swellable material 5 configured to surround a wellbore tubular which defines a primary flow path for wellbore fluids. The body is also configured to surround at least one secondary flow path disposed externally of the wellbore tubular. The secondary flow path is configured for a carrier fluid containing particulate matter for a gravel pack. The body also comprises a longitudinal discontinuity which permits a radial opening to 10 be formed on the body, through which the body is operable to be applied to the tubular. FIGURE 3 to accompany abstract 312 F r,

Description

P/00/011 Regulation 3.2 AUSTRALIA Patents Act 1990 ORIGINAL COMPLETE SPECIFICATION STANDARD PATENT Invention Title: "SWELLABLE APPARATUS AND METHOD" The following statement is a full description of this invention, including the best method of performing it known to us: 1 SWELLABLE APPARATUS AND METHOD The present invention relates to an apparatus and method for use in wellbores for the hydrocarbon exploration and production industry. The invention relates particularly, although not exclusively, to an apparatus and method for use with 5 alternate path sand control completions. Background to the Invention In the field of oil and gas exploration and production, multi-zone completion 10 systems are used in the production of hydrocarbons from wells which penetrate different parts of a formation with different properties. An example of a multi zone completion system is shown in Figure 1. The system, generally shown at 100, includes a production facility at surface, which in this case is a floating production storage and offloading (FPSO) vessel 102, coupled to a well 104 via 15 subsea tree 106. The wellbore in this case is an inclined wellbore which extends through multiple production intervals 107a, 107b, 107c in the formation 108. The production tubing 110 provides a continuous flow path which penetrates through the multiple zones. The production tubing is provided with ports or inflow control devices (not shown) which allow production fluid to flow into the production 20 tubing and out to the subsea tree 106. However, in order to provide control over the production process, the annulus 112 is sealed by packers 114 between the different production zones 107 to prevent fluid flowing in the annulus between the different zones. 25 Depending on the formation, the production tubing may be provided with sand control devices 116, to prevent solid particles from the formation entering the production tubing. The sand control devices 116 may for example be any suitable sand screen systems, including expandable screen systems. The sand control devices 116 may be used in conjunction with one or more gravel packs 30 118, which comprise gravel or other particulate matter around the sand control device to improve filtration and to provide additional support to the formation. Gravel packing requires a good distribution of gravel in the annulus at the sand control device. To improve the delivery of gravel, sand control devices have been provided with shunt tubes, which create alternate flow paths for the gravel 2 and its carrier fluid. These alternate flow paths significantly improve the distribution of gravel in the production interval, for example by allowing the carrier fluid and gravel to be delivered through sand bridges that may be formed in the annulus before the gravel pack has been completed. 5 Figures 2A and 2B are schematic views of examples of sand screens provided with shunt tubes in a completion system 200. A first sand control device 202a is coupled to a second sand control device 202b, and each comprise base pipes 204 joined to define a production bore 206. Screens 208 including filter media 10 surround the base pipe 204 and are supported by ribs 210. The apparatus is provided with shunt tubes 212, which in this example are steel tubes having substantially rectangular cross-section. The shunt tubes 212 are supported on the exterior of the screen and provide a flow path 213 alternate to the main production bore 206. Jumper tubes 211 are used to provide fluid communication 15 between shunt tubes of adjacent sand control devices. The shunt tubes 212 maintain a flow path 213, even if the annular space 214 is bridged, for example by a loss of integrity in a part of the formation 216. Examples of shunt tube arrangements can be found in US 4945991 and US 5113935. The shunt tubes may also be internal to the filter media, as described in US 5515915 and 20 US 6227303. A typical sand control apparatus comprises a main shroud 218 which extends completely over the filter media sand control device, and provides a protective sleeve for the filter media and shunt tubes. The shroud is provided with 25 apertures to allow the throughflow of fluid. The main shroud terminates at an end ring 220, which supports an end of the shroud and comprises passages for shunt tubes. When the shunt tubes 212 are connected by the jumper tubes 211, an auxiliary shroud 222 is provided over the shunt tubes at the coupling. The auxiliary shroud is typically formed from part-cylindrical components which are 30 assembled together to form the shroud. The auxiliary shroud extends between the end rings 220 of sand control devices, and functions to provide a continuous outer diameter to the assembly, and to protect the shunt tubes, jumper tubes, and any corresponding connectors. The auxiliary shroud covers the shoulders created by the end rings 220. 35 3 WO 05/090743 discloses a system for sealing an annular space around a control line used to actuate a valve. A seal layer has an inner surface provided with a recess for receiving a control line, and on an opposing side is provided with a slit which allows the seal layer to be opened for radial application to a tubular. The 5 seal layer is formed from a material susceptible of swelling upon contact with a selected fluid. The disclosure relates exclusively to sealing around control lines. It is an object of the invention to provide an apparatus and method which overcomes or mitigates at least one deficiency or drawback of the prior art. It is a 10 further object of the invention to provide a wellbore completion and/or production system or method of use which incorporates such an apparatus or method. It is a further object of the invention to provide an alternative apparatus and method for protection of components of sand control completion systems. 15 Further aims and objects of the invention will become apparent from reading the following description. Summary of the Invention 20 According to a first aspect of the invention, there is provided an apparatus for a sand control completion in a wellbore, the apparatus comprising; a body comprising a swellable material selected to increase in volume on exposure to at least one triggering fluid, the body configured to surround a wellbore tubular 25 which defines a primary flow path and further configured to surround at least one secondary flow path disposed externally of the wellbore tubular, wherein the secondary flow path is configured for a carrier fluid containing particulate matter for a gravel pack, and the body comprises a longitudinal discontinuity which permits a radial opening to be formed on the body, through which the body is 30 operable to be applied to the tubular. The apparatus may be a protective shroud for an alternate path sand control completion system.
4 According to a second aspect of the invention, there is provided a sand control completion comprising: a tubular defining a primary fluid flow path; a first sand control device; a secondary fluid flow path for delivering a carrier fluid containing particulate matter for a gravel pack to the first sand control device; and a body 5 comprising a swellable material selected to increase in volume on exposure to at least one triggering fluid disposed over the secondary flow path and the tubular, wherein the body comprises a longitudinal discontinuity which permits a radial opening to be formed on the body, through which the body is operable to be applied to the tubular. 10 According to a third aspect of the invention, there is provided method of forming a sand control completion, the method comprising: forming a primary fluid flow path from a sand control device and a tubular; providing a secondary fluid flow path for delivering a carrier fluid containing 15 particulate matter for a gravel pack; disposing a body comprising a swellable material selected to increase in volume on exposure to at least one triggering fluid over the secondary flow path and the tubular by applying the body to the tubular through a radial opening on the body. 20 Embodiments of the second or third aspects of the invention may include preferred or optional features of the first aspect of the invention. Brief Description of the Drawings To aid an understanding of the invention, there will now be described a number 25 of example embodiments with reference to the following drawings: Figure 1 shows schematically a multi-zone production system in accordance with various embodiments of the invention; 30 Figures 2A and 2B are respectively upper and cross-sectional views of a conventional alternate path screen system; Figure 3 is a perspective view of an apparatus in accordance with an embodiment of the invention; 35 5 Figure 3 is a perspective view of an apparatus in accordance with an embodiment of the invention; Figures 5A and 5B are respectively part-longitudinal and cross-sectional views of 5 an apparatus in accordance with an alternative embodiment of the invention; and Figures 6A and 6B are respectively part- longitudinal and cross-sectional views of an apparatus in accordance with a further alternative embodiment of the invention. 10 Detailed Description Figure 3 shows an apparatus 300 in accordance with a first embodiment of the invention. The apparatus may be used as an alternative to a conventional 15 shroud for a shunt tube system, such as that shown in Figures 2A and 2B. The apparatus 300 comprises a body 302 of swellable material, selected to increase in volume on exposure to a triggering fluid. In this case, the body is formed from an EPDM rubber, selected to swell on exposure to a hydrocarbon fluid, although other swellable materials such as those which swell in water or those which swell 20 in both water and hydrocarbons may be used. The body 302 is substantially cylindrical, and contains an internal bore 304 configured to receive a wellbore tubular. The bore 304 has a main bore portion 306 to receive a base pipe (not shown). It also has an internal profile which is shaped to accommodate a shunt tube arrangement, such as that illustrated in Figure 2A. The internal profile of the 25 body 302 includes a pair of longitudinal recesses 308 shaped to accommodate shunt tubes or jumper tubes provided on the exterior of the base pipe. An optional third longitudinal recess 310 is provided for the accommodation of a control line which extends through the body. 30 The body 302 is formed in a single piece, and has a longitudinal discontinuity which defines a pair of longitudinal edges 312 extending along the length of the body. The body may be separated at the longitudinal edges to create a radial opening of sufficient size to place the body over a base pipe from a position at the side of the base pipe. The body 302 is resiliently deformable such that it can 35 be opened to be fitted to the base pipe without the need to slide the body 6 longitudinally on to the pipe. The body therefore forms a c-clamp arrangement which may be placed over a base pipe and shunt tube system. The body is provided with bores 319 which allow the body to be secured to the base pipe via bolts or pins. 5 An alternative embodiment is illustrated in Figure 4, which shows an apparatus 400 similar to the apparatus 300 shown in Figure 3, with like parts indicated by like reference numerals incremented by 100. However, the apparatus 400 comprises a support structure 420 integral with and partially surrounded by the 10 body 402. The support structure 420 is formed from a steel alloy, and comprises a tubular portion 422 extending longitudinally in the swellable body. The support structure 420 increases the integral strength of the apparatus and the clamping force that may be imparted to the apparatus when fixing to a base pipe. The tubular portion 422 is formed from two part-cylindrical members 423 which are 15 hinged to allow the longitudinal edges 412 to be readily separated when applying the body to a tubular. The support structure 420 also comprises upstanding formations which extend beyond the outer diameter of the body 402. The formations are in the form of 20 resilient bow springs 424 which are connected to the tubular portions. The formations provide stand-off of the body from the surround wall of a casing or openhole wellbore. The support structure therefore performs a centralising function for the apparatus and the adjacent components in the string. 25 A further alternative embodiment is shown in Figures 5A and 5B, which show an apparatus 500 assembled on a tubular 530 between two sand control devices 540. Figure 5B is a section through line B-B' shown on Figure 5A. The apparatus 500 is similar to the apparatus 300 shown in Figure 3 with like parts indicated by like reference numerals incremented by 200. However, in this 30 embodiment, the shunt tubes 542 terminate in manifolds 550 at each end of the body 502, and the secondary flow path is defined by a longitudinal recess 552 in the body 502 which extends between the manifolds. This embodiment includes a support structure 520 which is formed from two hinged part cylindrical members, in a similar manner to apparatus 400. However, the support structure 520 is 35 internal to the body and only extends along a part of its length. It is disposed 7 around the coupling between the two sand control devices, and improves the integral strength of the apparatus and the clamping force which may be imparted against the coupling. 5 A further alternative embodiment is shown at 600 in Figures 6A and 6B, with Figure 6B being a section through line B-B' shown on Figure 6A. The apparatus 600 is similar to the apparatus 500 shown in Figure 5 with like parts indicated by like reference numerals incremented by 100. However, the apparatus 600 differs in that the support structure includes upstanding formations which extend beyond 10 the outer diameter of the body 602. The formations are in the form of resilient bow springs 624 which are connected to the tubular portions 622. As with the embodiment of Figure 5, the formations provide stand-off of the body from the surrounding wall of a casing or openhole wellbore. The support structure therefore performs a centralising function for the apparatus and the adjacent 15 components in the string. In an alternative embodiment (not shown), an apparatus is formed from two or more part cylindrical components of a swellable material. The components are fitted over an arrangement of shunt tubes on a base pipe to provide a protective 20 shroud. Two or more of the part cylindrical components may be hinged to one another to aid assembly. Providing a swellable body which fits over secondary flow path and base pipe assembly is a convenient way to protect exposed portions of shunt tubes, 25 including shoulders, jumper tubes, and couplings in a variety of sand control applications. In the embodiment of Figures 5 and 6, the apparatus extends between end rings of sand control devices. In other embodiments, the apparatus may be disposed 30 between a sand control device and an annular barrier or isolation packer, which may be formed from a swellable material. In particular, the invention may be used in conjunction with the apparatus and methods described in WO 2007/092082 and WO 2007/092083, which relate to providing packers with alternate path mechanisms which may be used to provide zonal isolation 35 between gravel packs in a well.
8 The invention provides an apparatus and method for a sand control completion in a wellbore. The apparatus has a body comprising a swellable material configured to surround a wellbore tubular which defines a primary flow path for wellbore fluids. The body is also configured to surround at least one secondary flow path 5 disposed externally of the wellbore tubular. The secondary flow path is configured for a carrier fluid containing particulate matter for a gravel pack. The body also comprises a longitudinal discontinuity which permits a radial opening to be formed on the body, through which the body is operable to be applied to the tubular. 10 Variations to the above described embodiments are within the scope of the invention herein intended, and the invention extends to combinations of features other than those expressly claimed. 15 In this specification, the terms "comprise", "comprises", "comprising" or similar terms are intended to mean a non-exclusive inclusion, such that a system, method or apparatus that comprises a list of elements does not include those elements solely, but may well include other elements not listed. 20 The reference to any prior art in this specification is not, and should not be taken as, an acknowledgement or any form of suggestion that the prior art forms part of the common general knowledge. 1650084_1 S:\NrPortbl\FAKDocs\APALMER\1 650084_1.DoC

Claims (14)

1. An apparatus for a sand control completion in a wellbore, the apparatus comprising: a body comprising a swellable material selected to increase in 5 volume on exposure to at least one triggering fluid, the body configured to surround a wellbore tubular which defines a primary flow path and further configured to surround at least one secondary flow path disposed externally of the wellbore tubular, wherein the secondary flow path is configured for a carrier fluid containing particulate matter for a gravel pack, 10 and the body comprises a longitudinal discontinuity which permits a radial opening to be formed on the body, through which the body is operable to be applied to the tubular.
2. The apparatus as claimed in claim 1, wherein the secondary flow path 15 comprises a conduit and the body is configured to surround the conduit.
3. The apparatus as claimed in claim 2 wherein the conduit is a shunt tube or jumper tube. 20
4. The apparatus as claimed in any preceding claim, wherein the apparatus comprises a longitudinal recess on an inner surface which defines the secondary flow path.
5. The apparatus as clamed in any preceding claim, comprising a manifold in 25 the secondary flow path.
6. The apparatus as clamed in any preceding claim, wherein the body comprises a support structure. 30
7. The apparatus as clamed in claim 6, wherein the support structure is resilient.
8. The apparatus as clamed in claim 6 or claim 7, wherein the support structure is integral with the body. 35 10
9. The apparatus as claimed in claim 8, wherein the body at least partially surrounds the support structure.
10. The apparatus as claimed in any of claims 6 to 9, wherein at least a portion 5 of the support structure upstands from an outer surface of the body.
11. The apparatus as claimed in claim 10, wherein the support structure is configured to provide stand-off to the apparatus in use. 10
12. A protective shroud for an alternate path sand control completion system comprising the apparatus of any preceding claim.
13. A sand control completion comprising: a tubular defining a primary fluid flow path; a first sand control device; a secondary fluid flow path for 15 delivering a carrier fluid containing particulate matter for a gravel pack to the first sand control device; and a body comprising a swellable material selected to increase in volume on exposure to at least one triggering fluid disposed over the secondary flow path and the tubular, wherein the body comprises a longitudinal discontinuity which permits a radial opening to be 20 formed on the body, through which the body is operable to be applied to the tubular.
14. A method of forming a sand control completion, the method comprising: forming a primary fluid flow path from a sand control device and a tubular; 25 providing a secondary fluid flow path for delivering a carrier fluid containing particulate matter for a gravel pack; disposing a body comprising a swellable material selected to increase in volume on exposure to at least one triggering fluid over the secondary flow path and the tubular by applying the body to the tubular through a radial 30 opening on the body.
AU2013206178A 2010-09-03 2013-05-31 Swellable apparatus and method Abandoned AU2013206178A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU2013206178A AU2013206178A1 (en) 2010-09-03 2013-05-31 Swellable apparatus and method

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Application Number Priority Date Filing Date Title
AU2010214800A AU2010214800A1 (en) 2010-09-03 2010-09-03 Swellable apparatus and method
AU2010214800 2010-09-03
AU2013206178A AU2013206178A1 (en) 2010-09-03 2013-05-31 Swellable apparatus and method

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AU2010214800A Division AU2010214800A1 (en) 2010-09-03 2010-09-03 Swellable apparatus and method

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AU2013206178A1 true AU2013206178A1 (en) 2013-06-20

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AU2013206178A Abandoned AU2013206178A1 (en) 2010-09-03 2013-05-31 Swellable apparatus and method

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MK17 Application lapsed reg. 22.2b(2) - non-payment of filing fees