1. A method in a data processing system for seamlessly traversing multiple exported file systems transparently using a single network mount, comprising:
mounting a first exported file system onto a client;
creating a first file system identifier structure for the first exported file system to form a first exported file system identifier structure, wherein the first file system identifier structure is populated with unique properties of the first exported file system, and wherein the unique properties include a file system identifier;
recording parent information in the first exported file system identifier structure, wherein recording the parent information allows the client to service a request to traverse a file namespace backwards to a root of the single network mount, and wherein the recorded parent information in the first exported file system identifier structure includes a pathname to a root of the first exported filed system identifier structure;
creating a first internal virtual file system structure for the first exported file system identifier structure, wherein the first internal virtual file system structure includes a first virtual file system identifier, wherein the first virtual file system identifier is used to uniquely describe objects within a mounted file system, and wherein the first virtual file system identifier allows for distinguishing objects in different server file systems encountered on the client;
linking files system object created within the single network mount to the first file system identifier structure until a new file system identifier is encountered;
responsive to a determination that a user on the client has moved from the first exported file system to a second exported file system, creating a second exported file system identifier structure for the second exported file system, wherein the second exported file system identifier structure is populated with unique properties of the second exported file system, wherein the unique properties include a second file system identifier, wherein the second file system identifier structure inherits all user tunable properties from the second file system identifier structure, wherein the user tunable properties include access control information, and wherein the user tunable properties are selectively controlled on a per file system identifier structure bases using pathnames to objects within the second file system identifier;
creating a second internal virtual file system structure for the second exported file system identifier structure, wherein the second internal virtual file system structure includes a second virtual file system identifier;
linking the file system objects created within the mount to the second file system identifier structure until a new file system identifier is encountered;
determining that the user on the client has traversed from the first exported file system into the second exported file system by detecting a change in major device number and minor device number, wherein the user on the client is bound by the settings provided for each individual file system identifier;
retrieving file system wide data for each file system identifier, wherein the file system wide data is retrieved by performing operations on an individual file system object associated with the file system identifier.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A method comprising:
providing a portion of a subterranean formation comprising unconsolidated particulates;
providing an tacky-consolidate treatment fluid comprising a tackifying compound, a curable resin, and a silane coupling agent; and
placing the tacky-consolidate treatment fluid in the subterranean formation so as to form a tacky consolidate that comprises at least a portion of the unconsolidated particulates.
2. The method of claim 1 wherein the portion of the subterranean formation is located in the near well bore region.
3. The method of claim 1 wherein the portion of the subterranean formation neighbors a fracture face.
4. The method of claim 1 wherein at least a portion of the unconsolidated particulates are located within a fracture in the subterranean formation.
5. The method of claim 1 wherein the tacky-consolidate treatment fluid is placed in the subterranean formation, a gravel pack, or a proppant pack after a completion operation.
6. The method of claim 1 wherein the tacky-consolidate treatment system is placed in the subterranean formation after an acidizing treatment.
7. The method of claim 1 wherein the tacky-consolidate treatment system is placed in the subterranean formation before a completion operation.
8. The method of claim 1 wherein the tacky-consolidate treatment fluid comprises an additive chosen from the group consisting of a wetting agent, a scale inhibitor, and a corrosion inhibitor.
9. The method of claim 1 wherein the tackifying compound comprises a material chosen from the group consisting of: a non-aqueous tackifying agent, an aqueous tackifying agent, a silyl-modified polyamide, and a mixture thereof.
10. The method of claim 1 wherein the tackifying compound is present in the tacky-consolidate treatment fluid in an amount from about 0.1% to about 10% (ww).
11. The method of claim 1 wherein the resin comprises a material chosen from the group consisting of: a two component epoxy based resin, a novolak resin, a polyepoxide resin, a phenol-aldehyde resin, a urea-aldehyde resin, a urethane resin, a phenolic resin, a furan resin, a furanfurfuryl alcohol resin, a phenoliclatex resin, a phenol formaldehyde resin, a polyester resin, a hybrid of a polyester resin, a copolymer of a polyester resin, a polyurethane resin, a hybrid of a polyurethane resin, a copolymer of a polyurethane resin, an acrylate resin, a water-based resin, an HT epoxy-based resin, and a mixture thereof.
12. The method of claim 1 wherein the resin is present in the tacky-consolidate treatment fluid in an amount from about 0.1% to about 10% (ww).
13. A method comprising:
providing a well bore in a subterranean formation in which a well treatment has been performed, a portion of the well bore comprising unconsolidated particulates;
providing an tacky-consolidate treatment fluid comprising a tackifying compound, a curable resin, and a silane coupling agent; and
placing the tacky-consolidate treatment fluid in the subterranean formation so as to form a tacky consolidate that consolidates at least a portion of the unconsolidated particulates.
14. The method of claim 13 wherein the tackifying compound comprises a material chosen from the group consisting of: a non-aqueous tackifying agent, an aqueous tackifying agent, a silyl-modified polyamide, and a mixture thereof.
15. The method of claim 13 wherein the tackifying compound is present in the tacky-consolidate treatment fluid in an amount from about 0.1% to about 10% (ww).
16. The method of claim 13 wherein the resin comprises a material chosen from the group consisting of: a two component epoxy based resin, a novolak resin, a polyepoxide resin, a phenol-aldehyde resin, a urea-aldehyde resin, a urethane resin, a phenolic resin, a furan resin, a furanfurfuryl alcohol resin, a phenoliclatex resin, a phenol formaldehyde resin, a polyester resin, a hybrid of a polyester resin, a copolymer of a polyester resin, a polyurethane resin, a hybrid of a polyurethane resin, a copolymer of a polyurethane resin, an acrylate resin, a water-based resin, an HT epoxy-based resin, and a mixture thereof.
17. The method of claim 13 wherein the tacky consolidate is formed in a location in the near well bore region, neighboring a fracture face, or within a fracture.
18. A method comprising:
providing a portion of a subterranean formation comprising unconsolidated particulates;
providing an tacky-consolidate treatment fluid comprising a tackifying compound, a curable resin, and a silane coupling agent;
placing the tacky-consolidate treatment fluid in the subterranean formation so as to form a tacky consolidate that consolidates at least a portion of the unconsolidated particulates; and
performing a completion treatment in the subterranean formation.
19. The method of claim 18 wherein the tackifying compound comprises a material chosen from the group consisting of: a non-aqueous tackifying agent, an aqueous tackifying agent, a silyl-modified polyamide, and a mixture thereof.
20. The method of claim 18 wherein the tackifying compound is present in the tacky-consolidate treatment fluid in an amount from about 0.1% to about 10% (ww).
21. The method of claim 18 wherein the resin comprises a material chosen from the group consisting of: a two component epoxy based resin, a novolak resin, a polyepoxide resin, a phenol-aldehyde resin, a urea-aldehyde resin, a urethane resin, a phenolic resin, a furan resin, a furanfurfuryl alcohol resin, a phenoliclatex resin, a phenol formaldehyde resin, a polyester resin, a hybrid of a polyester resin, a copolymer of a polyester resin, a polyurethane resin, a hybrid of a polyurethane resin, a copolymer of a polyurethane resin, an acrylate resin, a water-based resin, an HT epoxy-based resin, and a mixture thereof.
22. The method of claim 18 wherein the tacky consolidate is formed in a location in the near well bore region, neighboring a fracture face, or within a fracture.