Through Tubing Diverter for Multi-lateral Treatment without Top String Removal
20170328177 · 2017-11-16
Assignee
Inventors
- Joseph Sheehan (Cypress, TX, US)
- Mihai Marcu (Spring, TX, US)
- Dennis M. Collins, JR. (Spring, TX, US)
- Scott F. Donald (Spring, TX, US)
- Richard R. Lafitte (Houston, TX, US)
Cpc classification
E21B41/0035
FIXED CONSTRUCTIONS
E21B7/061
FIXED CONSTRUCTIONS
E21B29/06
FIXED CONSTRUCTIONS
International classification
E21B41/00
FIXED CONSTRUCTIONS
E21B34/10
FIXED CONSTRUCTIONS
E21B29/06
FIXED CONSTRUCTIONS
Abstract
A main bore is drilled and a treatment assembly is located. A packer is located to support a whipstock for drilling the lateral. This packer serves as a lower seal on a main bore diverter. The whipstock is installed on the packer and a mill drills a window and the lateral. The mill is pulled and the whipstock removed with a fixed lug tool. A bottom hole assembly is run into the lateral which includes a diverter that is landed by the window. If cementing is called for it is done at this time. A top string is installed that isolates the upper casing. The lateral is treated with the main bore isolated. The diverter is retrieved through the top string. The main bore diverter is run in through top string and landed in the junction with the window and lateral isolated. The main bore diverter is removed through the top string. The treatment bottom hole assembly has a series of sliding sleeves operated by a single size ball.
Claims
1. A multi-lateral treatment assembly, comprising: a main bore having a treatment bottom hole assembly therein; at least one lateral bore having treatment bottom hole assembly therein; at least one diverter associated with one of said treatment bottom hole assemblies for selectively directing flow into one of said treatment bottom hole assemblies; a surface string connected said treatment bottom hole assembly where said diverter is mounted; said diverter removable or insertable through said surface string into at least one of said treatment bottom hole assemblies.
2. The assembly of claim 1, wherein: said diverter is removable or insertable without removal or re-insertion of said surface string.
3. The assembly of claim 1, wherein: at least one of said treatment bottom hole assemblies comprises sleeves between external packers that are operated with an object having one size.
4. The assembly of claim 3, wherein: all of said treatment bottom hole assemblies comprise sleeves between spaced external packers that are operated with an object having one size.
5. The assembly of claim 4, wherein: said sleeves are operated with a single object.
6. The assembly of claim 4, wherein: said sleeves are operated with multiple objects having the same size.
7. A multi-lateral treatment method, comprising: positioning treatment assemblies in a main bore and at least one lateral bore; locating a first diverter in one of said treatment assemblies to direct flow between them treating one said bore through said diverter by way of a surface string in fluid communication with said diverter; removing said diverter through said surface string.
8. The method of claim 7, comprising; inserting a second diverter through said surface string after removal of said first diverter to direct flow to another of said bores.
9. The method of claim 7, comprising; leaving said surface string in place when removing said first diverter.
10. The method of claim 7, comprising; delivering said first diverter with one of said treatment assemblies.
11. The method of claim 8, comprising; leaving said surface string in place when removing said second diverter.
12. The method of claim 7, comprising; providing spaced packers with valve members in between where said valve members have a single bore.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005]
[0006]
[0007]
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0019]
[0020]
[0021]
[0022] In
[0023] The ability to deliver and remove diverters through a surface string saves the time and expense of pulling the surface string to get the diverters out. While only a single lateral is shown to illustrate the concept, the technique is applicable to one or more laterals in a main bore and the time and cost savings increase as more trips out of the hole with the surface string are avoided each time a diverter change is required. Making the diverter small enough to go through the surface string necessarily decreases the drift dimension through it. While single ball size treatment systems have been used in single bore applications, their use in a multi-lateral borehole is new and facilitates compensation for diverters that can be made small enough to be delivered and retrieved through the surface string while maximizing the number of fracturing stages. The main bore or any or all laterals can have the treatment assembly that uses the single size ball technique.
[0024] The teachings of the present disclosure may be used in a variety of well operations. These operations may involve using one or more treatment agents to treat a formation, the fluids resident in a formation, a wellbore, and/or equipment in the wellbore, such as production tubing. The treatment agents may be in the form of liquids, gases, solids, semi-solids, and mixtures thereof. Illustrative treatment agents include, but are not limited to, fracturing fluids, acids, steam, water, brine, anti-corrosion agents, cement, permeability modifiers, drilling muds, emulsifiers, demulsifiers, tracers, flow improvers etc. Illustrative well operations include, but are not limited to, hydraulic fracturing, stimulation, tracer injection, cleaning, acidizing, steam injection, water flooding, cementing, etc.
[0025] The above description is illustrative of the preferred embodiment and many modifications may be made by those skilled in the art without departing from the invention whose scope is to be determined from the literal and equivalent scope of the claims below: