Diffuser Assembly with Vibration Feature
20200087996 ยท 2020-03-19
Inventors
Cpc classification
E21B43/086
FIXED CONSTRUCTIONS
E21B28/00
FIXED CONSTRUCTIONS
International classification
E21B21/00
FIXED CONSTRUCTIONS
E21B27/00
FIXED CONSTRUCTIONS
B01D29/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A diffuser assembly is provided, comprising a diffuser adapted to reside within a conduit, having an upper member mountable within the conduit and having a fluid inlet port, and a lower section having a diffuser screen. A resilient member is connected between the upper member and the lower section, wherein the resilient member enables the diffuser screen to vibrate relative to the upper member. A plurality of diffusing members is positioned below the resilient member, wherein the diffusing members are oriented relative to a central axis of the diffuser screen. A centralizing member is positioned above the diffuser screen having a diameter greater than the diffuser screen. The diffuser screen is a cylinder having a plurality of diffuser apertures formed therein, the cylinder including a bottom cap having a fluid exit port; and wherein the plurality of diffusing members extends substantially parallel to the central axis. A filter assembly is also provided having a resilient member connected between an upper member and a lower section, wherein the resilient member enables the filter screen to vibrate relative to the upper member.
Claims
1. A diffuser assembly, comprising: (a) a diffuser adapted to reside within a conduit, having an upper member mountable within the conduit and having a fluid inlet port, and a lower section having a diffuser screen; (b) a resilient member connected between the upper member and the lower section, wherein the resilient member enables the diffuser screen to vibrate relative to the upper member; (c) a plurality of diffusing members below the resilient member, wherein the diffusing members are oriented relative to a central axis of the diffuser screen; and (d) a centralizing member above the diffuser screen having a diameter greater than the diffuser screen; wherein the diffuser screen is a cylinder having a plurality of diffuser apertures formed therein, the cylinder including a bottom cap having a fluid exit port; and wherein the plurality of diffusing members extends substantially parallel to the central axis.
2. The diffuser assembly of claim 1, wherein a first set of diffusing members is mounted at a first selected height along the central axis of the diffuser screen, and wherein a second set of diffusing members is mounted at a second selected height along the central axis of the diffuser screen.
3. The diffuser assembly of claim 1, wherein the diffusing members are mounted to the diffuser screen such that the diffusing members protrude internal to the diffuser screen.
4. The diffuser assembly of claim 1, wherein the diffusing members are mounted to the diffuser screen such that the diffusing members protrude external to the diffuser screen.
5. The diffuser assembly of claim 3, further including at least one centralizing member adapted to centralize the diffuser assembly within the conduit.
6. The diffuser assembly of claim 1, further including a lower filter element below the diffuser screen.
7. The diffuser assembly of claim 6, wherein the lower filter element is constructed from vertical rods.
8. The diffuser assembly of claim 1, wherein the diffuser assembly is positioned within a downhole carrier sub inside a well bore.
9. The diffuser assembly of claim 1, wherein the conduit is a stabilizer.
10. The diffuser assembly of claim 1, wherein the conduit is a drill pipe at a rig floor.
11. The diffuser assembly of claim 1, wherein the conduit is in fluid communication between a mixing tank and the rig floor.
12. The diffuser assembly of claim 1, wherein the resilient member is adapted to permit the lower section to move relative to the upper member in response to mud flow changes, pressure changes, and other solids mass movement.
13. A filter assembly, comprising: (a) a filter adapted to reside within a conduit, having an upper member mountable within the conduit and having a fluid inlet port, and a lower section having a filter screen; (b) a resilient member connected between the upper member and the lower section, wherein the resilient member enables the filter screen to vibrate relative to the upper member; and (c) a centralizing member above the filter screen having a diameter greater than the filter screen; wherein the filter screen is a cylinder having a plurality of filter apertures formed therein, the cylinder including a bottom cap having a fluid exit port; wherein the filter apertures are oriented relative to a central axis of the filter screen; and wherein the plurality of filter apertures extends substantially parallel to the central axis.
14. The filter assembly of claim 13, further including at least one centralizing member adapted to centralize the filter assembly within the conduit.
15. The filter assembly of claim 13, wherein the filter assembly is positioned within a downhole carrier sub inside a well bore.
16. The filter assembly of claim 13, wherein the conduit is a stabilizer.
17. The filter assembly of claim 13, wherein the conduit is a drill pipe at a rig floor.
18. The filter assembly of claim 13, wherein the conduit is in fluid communication between a mixing tank and the rig floor.
19. The filter assembly of claim 13, wherein the resilient member is adapted to permit the lower section to move relative to the upper member in response to mud flow changes, pressure changes, and other solids mass movement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] For a further understanding of the nature, objects, and advantages of the present invention, reference should be had to the following detailed description, read in conjunction with the following drawings, wherein like reference numerals denote like elements.
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DETAILED DESCRIPTION OF THE INVENTION
[0040] Before the subject invention is further described, it is to be understood that the invention is not limited to the particular embodiments of the invention described below, as variations of the particular embodiments may be made and still fall within the scope of the appended claims. It is also to be understood that the terminology employed is for the purpose of describing particular embodiments, and is not intended to be limiting. Instead, the scope of the present invention will be established by the appended claims.
[0041] In this specification and the appended claims, the singular forms a, an, and the include plural reference unless the context clearly dictates otherwise. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this invention belongs. Unless otherwise specified herein, all materials of construction are preferably steel resistant to the corrosive effects common in oil and gas production environments. As used herein the term conduit shall mean any tubular member into which the diffuser 1 or filter can be installed for the purpose of allowing LCM-containing fluid to flow through the conduit and be broken apart, or diffused, by the diffuser 1. Non-limiting examples of conduits may be a carrier sub, drill pipe, stabilizer, or other tubular member such as shown in the figures.
[0042] Turning now to the figures, a preferred embodiment of the present invention is shown in
[0043] In the embodiment shown in
[0044] As shown best in
[0045] As best shown in
[0046] In an operational configuration, fluid 20 flows through the carrier sub 3, such as a stabilizer or other type of downhole or surface sub, and into the inlet port 5 of the mounting member 4. Any LCM aggregations or clumps in the fluid 20 pass against the diffusing edges 12 of diffusing members 7, and are separated into smaller portions to collect within the diffuser screen 6, while the fluid 20 can exit the diffuser screen 6 through diffuser slots 9 and the fluid port 11.
[0047] The preferred embodiment described above, as well as the alternate embodiments described below, are effective for diffusion of a wide range of fluids and materials, including oil and water based muds, barite drilling muds, cement, all drilling fluids, spotting acids for break-up of limestone formations, blended materials mixed in blending tanks, breakup of larger masses of carbide bombs, and any other cake balls mud clumps, LCM, cement, and the like that form in the string or from poor blending.
[0048] In an alternate embodiment shown in
[0049] As shown best in
[0050] As shown in
[0051] As shown in
[0052] As shown in
[0053] As shown in
[0054] As shown in
[0055] In this configuration, the resilient member 71 is adapted to permit the lower member 73 to move relative to the upper member 72 in response to a number of downhole events, including mud flow changes, pressure changes, and other solids mass movement. Those events will cause the lower member 73 to move in response to those forces, and in doing so, will cause further and more forceful contact between the clumps of LCM and other solids passing through the diffuser, further aiding in separation, disintegration, and dislodgement of those solids, and leading to more efficient and effective diffusion.
[0056] The presence of resilient member 71 also provides another advantage of flexibility during the step of lowering and inserting the diffuser assembly into a conduit, such as a carrier sub 3. For example, because the lower member 73 is connected to the upper member 72 by the spring, the lower member 73 can be bent slightly away from the upper member 72 through the resiliency of the spring, thus facilitating the insertion operation until the diffuser assembly is properly seated in the conduit.
[0057] With respect to the spring constant for the resilient member 71, one of ordinary skill should be able to determine the proper range of the spring constant (and the related physical characteristics of the spring) to permit the desired vibration, but while keeping the upper member 72 and the lower member 73 from contacting each other. For example, it is important to prevent undesirable hitting between the upper and lower members 72, 73, because such hitting may affect the function of other pulsers and signal equipment in the downhole environment that monitor downhole conditions and processes. With the exception of the resilient member 71 and its function, this embodiment of
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[0060] In this configuration, the resilient member 91 is adapted to permit the lower member 93 to move relative to the upper member 92 in response to downhole events, including mud flow changes, pressure changes, and other solids mass movement. Those events will cause the lower member 93 to move in response to those forces, and in doing so, will cause further and more forceful contact between the clumps of LCM and other solids passing through the diffuser, further aiding in separation, disintegration, and dislodgement of those solids, and leading to more efficient and effective diffusion.
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[0062] As explained above with respect to the other embodiments disclosed herein, the diffusers and filters of
[0063] All references cited in this specification are herein incorporated by reference as though each reference was specifically and individually indicated to be incorporated by reference. The citation of any reference is for its disclosure prior to the filing date and should not be construed as an admission that the present invention is not entitled to antedate such reference by virtue of prior invention.
[0064] It will be understood that each of the elements described above, or two or more together may also find a useful application in other types of methods differing from the type described above. Without further analysis, the foregoing will so fully reveal the gist of the present invention that others can, by applying current knowledge, readily adapt it for various applications without omitting features that, from the standpoint of prior art, fairly constitute essential characteristics of the generic or specific aspects of this invention set forth in the appended claims. The foregoing embodiments are presented by way of example only; the scope of the present invention is to be limited only by the following claims.