CORROSION TESTING DEVICE
20210262918 · 2021-08-26
Inventors
Cpc classification
E21B47/006
FIXED CONSTRUCTIONS
E21B17/1071
FIXED CONSTRUCTIONS
International classification
Abstract
A corrosion testing device comprising a coupon holder for a sucker rod of a pump system and at least one coupon for corrosion testing, wherein the coupon holder comprises a holder body having an outer body surface and an inner contact surface, which inner contact surface is placeable on an outer rod surface of the sucker rod and defines a longitudinal body axis of the holder body, the at least one coupon is attached to the holder body and positioned at the outer body surface and at a radial coupon distance from the longitudinal body axis, the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, and the radial surface distance is larger than the radial coupon distance.
Claims
1. A corrosion testing device comprising: a coupon holder for a sucker rod of a pump system, the coupon holder comprising a holder body having an outer body surface and an inner contact surface, which inner contact surface is placeable on an outer rod surface of the sucker rod and defines a longitudinal body axis of the holder body; and at least one coupon for corrosion testing, wherein, the at least one coupon is attached to the holder body and positioned at the outer body surface and at a radial coupon distance from the longitudinal body axis, the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, and the radial surface distance is larger than the radial coupon distance.
2. The corrosion testing device according to claim 1, wherein the at least one guiding surface part is formed by at least one most distant surface part of the outer body surface when seen in a radial direction from the longitudinal body axis and the most distant coupon part of the at least one coupon extends until the radial coupon distance when seen in the radial direction from the longitudinal body axis.
3. The corrosion testing device according to claim 1, wherein the holder body is a rod guide and the at least one guiding surface part forms at least one guiding surface to in use guide the sucker rod through a wellbore.
4. The corrosion testing device according to claim 3, wherein; the holder body comprises multiple guiding surface parts, a base body part to in use at least partly surround the sucker rod, and blades having a blade length measured along the longitudinal body axis, and each blade extends radially away from the base body part and ends at one of the guiding surface parts.
5. The corrosion testing device according to claim 4, wherein the coupons are attached to the blades.
6. The corrosion testing device according to claim 4, wherein each blade comprises a radially extending first side surface and an radially extending second side surface, which first and second side surfaces end at one of the guiding surface parts, and each coupon is located at one of the first and second side surfaces of the blades.
7. The corrosion testing device according to claim 4, wherein the blades comprise recesses in which the coupons are located.
8. The corrosion testing device according to claim 7, wherein the recesses are located in the blades and configured to position the coupons lower than the respective first and second side surfaces of the blades.
9. The corrosion testing device according to claim 7, wherein the recesses comprise a guiding side opening extending through the guiding surfaces parts and exposing the coupons.
10. The corrosion testing device according to claim 4, wherein each coupon comprises a first coupon side facing the blade to which said coupon is attached and an opposite second coupon side, and the first coupon sides are located at a coupon side distance from the outer body surface to in use allow a flow of fluid between the first coupon sides and the outer body surface.
11. The corrosion testing device according to claim 4, wherein all coupon sides of the coupons are free from contact with the outer body surface of the holder body to allow a fluid flow along all the coupon sides.
12. The corrosion testing device according to claim 1, wherein the coupons have an elongated form and extend parallel to the longitudinal body axis.
13. The corrosion testing device according to claim 1, wherein the inner contact surface of the holder body is configured to in use at least party surround and engage the outer rod surface of the sucker rod to fixate the coupon holder on the outer rod surface of the sucker rod by applying a clamping force on the outer rod surface.
14. The corrosion testing device according to claim 1, wherein the coupon holder comprises at least one fixating unit to fixate the coupon holder on the outer rod surface of the sucker rod.
15. The corrosion testing device according to claim 1, wherein the coupon holder has multiple coupons and each coupon comprises a different type of material.
16. The corrosion testing device according to claim 1, wherein the coupon holder comprises at least one attachment unit to attach the at least one coupon to the holder body in a coupon position at the outer body surface wherein the at least one coupon is located at the radial coupon distance from the longitudinal body axis.
17. A sucker rod for a pump system, comprising: an outer rod surface, and at least one corrosion testing device that comprises: a coupon holder comprising a holder body having an outer body surface and an inner contact surface that is placed on the outer rod surface of the sucker rod and defines a longitudinal body axis of the holder body; and at least one coupon for corrosion testing, the at least one coupon attached to the holder body and positioned at the outer body surface and at a radial coupon distance from the longitudinal body axis, the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, the radial surface distance larger than the radial coupon distance.
18. The sucker rod according to claim 17, wherein multiple corrosion testing devices are placed on the outer rod surface of the sucker rod at a holder distance from each other along the sucker rod.
19. A pump system comprising: a sucker rod configured to move within a wellbore, the sucker rod comprising an outer rod surface; and at least one corrosion testing device that comprises: a coupon holder comprising a holder body having an outer body surface and an inner contact surface that is placed on the outer rod surface of the sucker rod and defines a longitudinal body axis of the holder body; and at least one coupon for corrosion testing, the at least one coupon attached to the holder body and positioned at the outer body surface and at a radial coupon distance from the longitudinal body axis, the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, the radial surface distance larger than the radial coupon distance.
20. The pump system according to claim 19, wherein multiple corrosion testing devices are placed on the outer rod surface of the sucker rod at a holder distance from each other along the sucker rod.
21. A method to test at least one material for use in a wellbore, in particular for use as a pipe section in the wellbore, the method comprising: fixating a coupon holder of a corrosion testing device on an outer rod surface of a sucker rod of a pump system, wherein the at least one coupon comprises the at least one material, and the corrosion testing device comprises: the coupon holder comprising a holder body having an outer body surface and an inner contact surface that is placed on the outer rod surface of the sucker rod and defines a longitudinal body axis of the holder body, and the at least one coupon that is attached to the holder body and positioned at the outer body surface and at a radial coupon distance from the longitudinal body axis, the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, the radial surface distance larger than the radial coupon distance; placing the sucker rod and the corrosion testing device in the wellbore and reciprocally moving the sucker rod and the corrosion testing device within the wellbore for a predetermined time period; and removing the sucker rod from the wellbore and analyzing the at least one coupon of the corrosion testing device to determine a corrosion rate for each of the at least one coupon.
22. The method according to claim 21, further comprising determining a suitability indicator, such as a suitability value, to each material of the at least one coupon on basis of their corrosion rate.
23. The method according to claim 21, wherein the corrosion testing device further comprises multiple coupons which are made from a different material, and the method further comprises analyzing the multiple coupons to determine a corrosion rate for each of the multiple coupons.
24. The method according to claim 23, further comprising: determining a suitability indicator, such as a suitability value, to each of the materials of the coupons on basis of their corrosion rates, and selecting one of the materials of the coupons to be used for maintenance operations on at least one of the well bore or sucker rod based on the suitability indicator of the said material.
25. The method according to claim 22, further comprising: fixating multiple corrosion testing devices with their coupon holder on the outer rod surface of the sucker rod at a holder distance from each other along the sucker rod, moving the sucker rod and the corrosion testing devices through the wellbore for a predetermined time period through a predetermined section of the wellbore, and analyzing the coupons to determine a section corrosion rate for each of the coupons relating to the section of the wellbore in which the coupon has been moved.
26. The method according to claim 25, further comprising assigning a section suitability indicator, such as a section suitability value, to each material of the at least one coupon on basis of their section corrosion rate.
27. A kit of parts comprising; a coupon holder having a holder body with an outer body surface and an inner contact surface, which inner contact surface is placeable on an outer rod surface of a sucker rod for a pump system and defines a longitudinal body axis of the holder body, the outer body surface comprising at least one guiding surface part located at a radial surface distance from the longitudinal body axis, at least one coupon for corrosion testing, and at least one attachment unit to attach the at least one coupon to the holder body of the coupon holder in a coupon position at the outer body surface, the at least one coupon in the coupon position located at a radial coupon distance from the longitudinal body axis, which radial coupon distance is smaller than the radial surface distance.
28. A coupon holder, comprising: a holder body with an outer body surface; and an inner contact surface, which inner contact surface is placeable on an outer rod surface of a sucker rod for a pump system and defines a longitudinal body axis of the holder body, wherein: the outer body surface comprises at least one guiding surface part located at a radial surface distance from the longitudinal body axis, at least one attachment unit is provided to attach at least one coupon for corrosion testing to the holder body of the coupon holder in a coupon position at the outer body surface, and in use, the at least one coupon in the coupon position is located at a radial coupon distance from the longitudinal body axis, which radial coupon distance is smaller than the radial surface distance.
Description
BRIEF DESCRIPTION OF THE INVENTION
[0064] Embodiments of the corrosion testing device, sucker rod, pump system, method, kit of parts, and coupon holder will be described by way of example only, with reference to the accompanying schematic drawings in which corresponding reference symbols indicate corresponding parts, and in which:
[0065] the
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[0070] the
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DETAILED DESCRIPTION OF THE INVENTION
[0073] The
[0074] Multiple corrosion testing devices 100 are attached to the sucker rod 2. The corrosion testing devices 100 are located at a holder distance 45 from each other along the sucker rod 2. Only two corrosion testing devices 100 are shown in the
[0075] The corrosion testing devices 100 being positioned in the well tubing 23 of the wellbore 21 is shown more in detail in the
[0076] In the shown situation, the holder body 4 is placed on the outer rod surface 7 of the sucker rod 2 by injection moulding. The inner contact surface 6 of the holder body 4 is configured to completely surround and engage the outer rod surface 7 of the sucker rod 2 to fixate the coupon holder 1 on the outer rod surface 7 of the sucker rod 2.
[0077] In an alternative embodiment of the corrosion testing device 100 shown in
[0078] In the alternative embodiment of the corrosion testing device 100 shown in
[0079] The corrosion testing device 100 comprises four coupons 9 for corrosion testing. The coupons 9 are attached to the holder body 4 and positioned at the outer body surface 5. The coupons 9 are located at a radial coupon distance 10 from the longitudinal body axis 8. The outer body surface 5 comprises four guiding surface parts 11 located at a radial surface distance 12 from the longitudinal body axis 8. The radial surface distance 12 is larger than the radial coupon distance 10.
[0080] Since the coupons 9 are positioned at the outer body surface 5 of the holder body 4, the fluid flow 41 along the at least one coupon is similar to the general fluid flow 41 in the wellbore 21. Due to this, the corrosion tests of the coupons 9 provide a more accurate prediction of how the material of the coupons 9 would behave when used in the wellbore 21, in particular when used as pipe sections in for example the sucker rod 2 or the well tubing 23.
[0081] The guiding surface parts 11 are formed by the most distant surface part 13 of the outer body surface 5 when seen in a radial direction from the longitudinal body axis 8. The most distant coupon part 15 of the coupons 9 extend until the radial coupon distance 10 when seen in the radial direction from the longitudinal body axis 8. The radial surface distance 12 is 5 mm larger than the radial coupon distance 10. The radial surface distance 12 of the guiding surface parts 11 is larger than a radial distance relative to the longitudinal body axis 8 at which any other part of the outer body surface 5 than the guiding surface 11 parts are located.
[0082] Due to the fact that the radial surface distance 12 of the guiding surface parts 11 is larger than the radial coupon distance 10 of the coupons 9, it is prevented that the coupons 9 will come in contact and damage the wellbore 21, more specifically the well tubing 23, when the sucker rod 2 is moved within the wellbore 21.
[0083] The corrosion testing device 100 with its holder body 4 of the coupon holder 1 placed on the outer rod surface 7 of the sucker rod 2 has a simple construction which is relatively easy and cheap to produce.
[0084] The fact that the inner contact surface 6 of the holder body 4 is placed on the outer rod surface 7 of the sucker rod 2 allows that the complete sucker rod 2 can be constructed with pipe sections. The corrosion testing device 100 will therefore not negatively affect the strength of the sucker rod 2. This will reduce the risks of failure.
[0085] The coupons 9 are positioned at the outer body surface 5, which allows that multiple coupons 9 can be attached to the holder body 4. This makes it possible to perform multiple corrosion tests at the same time.
[0086] The holder body 4 is a rod guide 19 and the guiding surface parts 11 forms guiding surfaces 20 to in use guide the sucker rod 2 through a wellbore 21. Rod guides 19 are used to guide the sucker rod 2 through the wellbore 21. The rod guides 19 ensure that the sucker rod 2 does not come in contact with the wellbore 21, more specifically the well tubing 23. By configuring the holder body 4 as a rod guide 19, the corrosion testing device 100 perform two functions at the same time in a very efficient manner.
[0087] The holder body 4 comprises a base body part 24 which surrounds the sucker rod 2, and blades 25 having a blade length 26 measured along the longitudinal body axis 8. Each blade 25 extends radially away from the base body part 24 and ends at one of the guiding surface parts 11. The blades 25 extend parallel to the longitudinal body axis 8. The blades 25 ensure that the corrosion testing device 100 can guide the sucker rod 2 through the wellbore 21 with a limited disturbance of the fluid flow 41 through the wellbore 21.
[0088] The coupons 9 are attached to the blades 25. Each blade 25 comprises a radially extending first side surface 28 and an radially extending second side surface 29, which first and second side surfaces 28 and 29 end at one of the guiding surface parts 11. Each coupon 9 is located at one of the first and second side surfaces 28 and 29 of the blades 25. By positioning the coupons 9 at the blades 25, the fluid flow 41 along the coupons 9 will be similar as the fluid flow 41 along pipe sections used in the wellbore 21, such as in the sucker rod 2 or the well tubing 23.
[0089] The blades 25 comprise recesses 30 in which the coupons 9 are located. The recesses 30 are located in the blades 25 and configured to position the coupons 9 lower than the respective first and second side surfaces 28 and 29 of the blades 25. The terms “lower than” can also be interpreted as “closer to the longitudinal body axis 8”. By positioning the coupons 9 in the recesses 30, the disturbance of the fluid flow 41 through the wellbore 21 is further reduced.
[0090] The recesses 30 comprise a guiding side opening 31 extending through the guiding surface parts 11 and exposing the coupons 9. This way, a larger part of the coupons 9 is directly exposed to the fluid flow 41 in the wellbore 21.
[0091] Each coupon 9 comprises a first coupon side 32 facing the blade 25 to which the coupon 9 is attached and an opposite second coupon side 33. The first coupon sides 32 are located at a coupon side distance 14 from the outer body surface 5 to allow a flow of fluid between the first coupon sides 32 and the outer body surface 5. This way, a larger part of the coupons 9 is exposed to the fluid flow 41ing through the wellbore 21.
[0092] To ensure that all coupon sides of the coupons 9 are exposed to the fluid flowing through the wellbore 21, all the coupon sides are free from contact with the outer body surface 5 of the holder body 4.
[0093] The coupons 9 have and elongated form and extend parallel to the longitudinal body axis 8. In other embodiments of the coupon holder 1 (not shown), the coupons 9 may have a different form.
[0094] Each of the four coupons 9 may comprise a different type of material. This way it is possible to test different materials at the same time. All the coupons 9 comprises a metal material.
[0095] The corrosion testing device 100 comprises attachment units 37 to attach the coupons 9 to the holder body 4 of the coupon holder 1 in a coupon position 38 at the outer body surface 5 wherein the coupons 9 are located at the radial coupon distance 10 from the longitudinal body axis 8. The attachment units 37 are configured to releasably attach the coupons 9 to the holder body 4.
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[0098] As required, detailed embodiments of the present invention are disclosed herein; however, it is to be understood that the disclosed embodiments are merely exemplary of the invention, which can be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to variously employ the present invention in virtually any appropriately detailed structure. Further, the terms and phrases used herein are not intended to be limiting, but rather, to provide an understandable description of the invention.
[0099] The terms “a” or “an”, as used herein, are defined as one or more than one. The term plurality, as used herein, is defined as two or more than two. The term another, as used herein, is defined as at least a second or more. The terms including and/or having, as used herein, are defined as comprising (i.e., open language, not excluding other elements or steps). Any reference signs in the claims should not be construed as limiting the scope of the claims or the invention.
[0100] It will be apparent to those skilled in the art that various modifications can be made to the corrosion testing device, sucker rod, pump system, method, kit of parts, and coupon holder without departing from the scope as defined in the claims.