System and method for establishing a bypass flow path within a wellbore liner
11525331 ยท 2022-12-13
Assignee
Inventors
Cpc classification
International classification
Abstract
A system for establishing a bypass flow path includes a plug assembly having bypass ports extending from the exterior to the interior; a wiper dart to engage and seal the first flow path and bypass flow path, and initiate release of the plug assembly from a first position, the plug assembly having a dart nose attached to the dart body; once the plug has moved to a second position, pressure applied through the bypass ports communicates to the dart nose to cause detachment of the dart nose from the dart body; a first flow path extends through the central bore of the plug assembly when the wiper dart is not present; and a second flow path extends through the bypass ports on the plug assembly below the dart body to the detachable dart nose, once detached, the bypass flow path is established thru the bore below the dart body.
Claims
1. A system for establishing a bypass flow path within a wellbore, the system comprising: a plug assembly extending from a first end to a second end, the plug assembly configured to connect to a liner hanger running tool, the plug assembly further having: a plug body; one or more bypass ports extending from an exterior of the body into the plug body to below an engagement surface of a dart body; and a bore extending through a portion of the plug assembly; a wiper dart configured to engage with the plug assembly and configured to be run with the plug assembly within the wellbore, the wiper dart having: the dart body; and a dart nose attached to the dart body via an attachment device; wherein pressure applied through the one or more bypass ports, when the plug and wiper dart have landed is in a landing seat within the wellbore, communicates to the dart nose to cause detachment of the dart nose from the dart body via a release of the attachment device; wherein a first flow path extends through the plug assembly and the bore of the plug assembly when the wiper dart is not present; and wherein a second flow path extends through the one or more bypass ports below the dart body, then through the bore of the plug assembly, after a release of the dart nose.
2. The system of claim 1, wherein the attachment device is an axial shear stud.
3. The system of claim 1, wherein the attachment device is one or more radial pins.
4. A method of establishing a bypass flow path within a wellbore, the method comprising: providing the system of claim 1; pumping fluid through a work string, a running tool, the plug assembly, a liner, a shoe track, and into an annulus of the wellbore; pumping cement from a ground surface, through the work string, the running tool, the plug assembly, the liner, the shoe track, and into the annulus; pumping the wiper dart and an amount of displacement fluid into the wellbore, wherein the wiper dart engages with the releasing sleeve and differential pressure initiates a release of the plug assembly such that the plug assembly is displaced down the liner and into the landing seat; increasing pressure inside of the liner, the pressure increase extending through the one or more bypass ports, thereby disengaging the dart nose from the dart body; and pumping displacement fluid through the wellbore such that the displacement fluid travels through a bypass flow path, forcing cement through the plug assembly, the shoe track, and into the annulus.
Description
DESCRIPTION OF THE DRAWINGS
(1) The novel features believed characteristic of the embodiments of the present application are set forth in the appended claims. However, the embodiments themselves, as well as a preferred mode of use, and further objectives and advantages thereof, will best be understood by reference to the following detailed description when read in conjunction with the accompanying drawings, wherein:
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(16) While the system and method of use of the present application is susceptible to various modifications and alternative forms, specific embodiments thereof have been shown by way of example in the drawings and are herein described in detail. It should be understood, however, that the description herein of specific embodiments is not intended to limit the invention to the particular embodiment disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the present application as defined by the appended claims.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(17) Illustrative embodiments of the system and method of use of the present application are provided below. It will of course be appreciated that in the development of any actual embodiment, numerous implementation-specific decisions will be made to achieve the developer's specific goals, such as compliance with system-related and business-related constraints, which will vary from one implementation to another. Moreover, it will be appreciated that such a development effort might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.
(18) The system and method of use will be understood, both as to its structure and operation, from the accompanying drawings, taken in conjunction with the accompanying description. Several embodiments of the system are presented herein. It should be understood that various components, parts, and features of the different embodiments may be combined together and/or interchanged with one another, all of which are within the scope of the present application, even though not all variations and particular embodiments are shown in the drawings. It should also be understood that the mixing and matching of features, elements, and/or functions between various embodiments is expressly contemplated herein so that one of ordinary skill in the art would appreciate from this disclosure that the features, elements, and/or functions of one embodiment may be incorporated into another embodiment as appropriate, unless described otherwise.
(19) The preferred embodiment herein described is not intended to be exhaustive or to limit the invention to the precise form disclosed. It is chosen and described to explain the principles of the invention and its application and practical use to enable others skilled in the art to follow its teachings.
(20) Referring now to the drawings wherein like reference characters identify corresponding or similar elements throughout the several views,
(21) As best shown in
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(27) For clarity,
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(29) Lastly, as shown in
(30) It should be appreciated that one of the unique features believed characteristic of the present application is the configuration of the wiper dart 301, wherein the nose 1001 is releasable via pressure in combination with the bypass ports, thereby creating a fluid bypass that takes fluid past the primary landing and sealing features of the assembly. This creates a system having two fluid inflow routes, namely the first route for cement through the center of the assembly, and the alternate flow path that bypasses the first route that is blocked with the wiper dart nose.
(31) The system has two positions, the first position is shown in
(32) It should be appreciated that the wiper dart lands in the first position (
(33) In
(34) 1403: First, the liner wiper plug assembly is attached to a liner hanger running tool (not shown) via a threaded connection on the collet. The plug components are held within the collet mechanism. 1405: Next, fluid circulation is pumped from the surface through the work string, the liner hanger running tool, the liner wiper plug assembly, the liner, the shoe track and into the annulus to prepare the annulus for cementing operations.
(35) 1407: Then, cement is pumped from the surface through the work string, the liner hanger running tool, the liner wiper plug assembly, the liner, the shoe track, and into the annulus to prepare the annulus. This is then followed by the wiper dart and displacement fluid.
(36) 1409: The wiper dart engages with the liner wiper plug assembly releasing sleeve and differential pressure initiates a release of the liner wiper plug assembly from the collet, thereby allowing the liner wiper plug assembly to be displaced down the liner until the assembly engages with the landing seat.
(37) 1411: Pressure is increased inside the liner and is communicated through the bypass ports of the liner wiper plug assembly, thereby causing the wiper dart nose to disengage from the wiper dart body. This is achieved once a predetermined pressure differential is applied, and the axial shear stud separates and releases the nose. The nose then moves through the bore of the liner wiper plug assembly to be caught in the liner plug catcher.
(38) 1413: Further pumping of displacement fluid through the alternate flow path forces the cement through the liner wiper plug assembly, the shoe track, and into the annulus thereby fully evacuating the liner of cement, completing cement placement operations.
(39) 1415: Once the cement cures, further pumping can be performed from the surface, through the liner and into the annulus via the alternate flow path created by the liner wiper plug assembly when operations are performed as described herein.
(40) The particular embodiments disclosed above are illustrative only, as the embodiments may be modified and practiced in different but equivalent manners apparent to those skilled in the art having the benefit of the teachings herein. It is therefore evident that the particular embodiments disclosed above may be altered or modified, and all such variations are considered within the scope and spirit of the application. Accordingly, the protection sought herein is as set forth in the description. Although the present embodiments are shown above, they are not limited to just these embodiments, but are amenable to various changes and modifications without departing from the spirit thereof.