Claims
- 1. An improved pump for use in transporting fluids within a wellbore, comprising:(a) a pump member, including an inlet for receiving fluid and an outlet for discharging fluid, disposed within said wellbore and including at least one moveable member for moving said fluids; (b) an electrically-powered motor located in a remote downhole location within said wellbore mechanically coupled to said at least one moveable member of said pump member for selectively actuating said at least one moveable member; (c) at least one sensor for detecting at least one of: (1) an operating attribute of said improved pump; (2) a subsurface condition; (3) a fluid flow attribute; and (4) a fluid attribute; (d) at least one programmable controller carried in a remote location within said wellbore and communicatively coupled to at least said at least one sensor; and (e) at least one program composed of instructions executable by said at least one programmable controller for: (1) receiving data from said at least one sensor; (2) monitoring at least one of: (a) an operating attribute of said improved pump; (b) a subsurface condition; (c) a fluid flow attribute; and (d) a fluid attribute; and independent of communications with a surface control system, altering an operating condition of said improved electrical submersible pump based on measurements of said improved pump operating attribute, said subsurface condition; said fluid flow attribute, or said fluid attribute.
- 2. An improved pump according to claim 1, further comprising:(f) a communication member communicatively coupled to said at least one programmable controller for performing at least one of (1) transmitting information, and (2) receiving information; and (g) wherein said at least one program further includes executable instructions for additionally performing at least one of the following: (1) communicating data to a well head system at a well head of said wellbore; (2) receiving data from said well head system; (3) communicating commands to said pump member independent of communications with said well head system; (4) receiving commands from said well head system; (5) communicating program instructions; and (6) receiving program instructions.
- 3. An improved pump according to claim 1, further comprising:(f) a housing adapted for connection to wellbore tubulars, which includes an inlet for receiving said fluids and an outlet for discharging said fluids.
- 4. An improved pump according to claim 1, wherein said pump member comprises an electrical submersible pump with a plurality of pump stages coupled together, each including at least one rotatable impeller for moving said fluids.
- 5. An improved pump according to claim 1, further comprising:(f) an electrical conductor member extending from a remote surface location to said improved pump for providing electrical power to said electrically-powered motor.
- 6. An improved pump according to claim 5, further comprising:(g) a communication member communicatively coupled to said at least one programmable controller for performing at least one of (1) transmitting information over said electrical conductor member, and (2) receiving information over said electrical conductor member.
- 7. An improved pump according to claim 1, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following operating attributes of said improved pump:(a) vibration of at least one rotary component of said improved pump; (b) temperature of at least one bearing coupling of said improved pump; (c) temperature of a clean fluid surrounding said electrically-powered motor; (d) pressure of a clean fluid surrounding said electrically-powered motor; (e) an electrical attribute of a clean fluid surrounding said electrically-powered motor; (f) an electrical attribute of electrical power supplied to said electrically-powered motor; (g) the speed of rotation of at least one rotary component of said improved pump; and (h) the strength of electrical resistance of at least one selected insulator within said improved pump.
- 8. An improved pump according to claim 1, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following subsurface conditions:(a) ambient wellbore temperature; and (b) ambient wellbore pressure.
- 9. An improved pump according to claim 1, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following fluid flow attributes:(a) fluid flow rates; and (b) fluid flow volumes.
- 10. An improved pump according to claim 1, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following fluid attributes:(a) fluid temperature; (b) fluid pressure; (c) fluid viscosity; (d) fluid specific gravity; (e) fluid spectrometer data; and (f) an electrical attribute of said fluids.
- 11. An improved pump according to claim 1, further comprising:(f) at least one memory member, carried in said wellbore, for recording in memory data from said at least one sensor.
- 12. An improved pump according to claim 1, wherein said at least one sensor additionally detects at least one of the following:(5) an operating condition of another wellbore tool; and wherein said at least one program composed of instructions executable by said at least one programmable controller includes instructions for monitoring said operating condition of said another wellbore tool.
- 13. An improved pump according to claim 1, wherein said at least one program is further composed of instructions executable by said at least one programmable controller for:(4) comparing data to at least one pre-established threshold.
- 14. An improved pump according to claim 1, wherein said at least one program includes executable instructions for altering an operating condition of said improved electrical submersible pump based on communications with said surface control system.
- 15. An improved method of transporting fluids within a wellbore, comprising:(a) providing a pump member, disposed in a remote wellbore location within said wellbore, including at least one moveable member for moving said fluids; (b) providing an electrically-powered motor disposed in a remote wellbore location within said wellbore and mechanically coupled to said at least one moveable member of said pump member for selectively actuating said at least one moveable member; (c) providing at least one sensor for detecting at least one of: (1) an operating attribute of said improved pump; (2) a subsurface condition; (3) a fluid flow attribute; and (4) a fluid attribute; (d) providing at least one programmable controller carried within said wellbore, and communicatively coupled to at least said at least one sensor; (e) receiving data from said at least one sensor at said at least one programmable controller for executing at least one program which is composed of executable instructions; (f) utilizing said at least one programmable controller for monitoring at least one of: (1) an operating attribute of said improved pump; (2) a subsurface condition; (3) a fluid flow attribute; and (4) a fluid attribute; independent of communications with a surface control system, altering an operating condition of said improved pump based on measurements of the improved pump operating attribute, the subsurface condition, the fluid flow attribute, and the fluid attribute.
- 16. An improved method of transporting fluids according to claim 15, further comprising:(h) providing a communication member communicatively coupled to said at least one programmable controller for performing at least one of (1) transmitting information, and (2) receiving information; and (i) utilizing said at least one programmable controller for additionally performing at least one of the following: (1) communicating data; (2) receiving data; (3) communicating commands; (4) receiving commands; (5) communicating program instructions; and (6) receiving program instructions.
- 17. An improved method of transporting fluids according to claim 15, further comprising:(h) providing an electrical conductor member extending from a remote location to said improved pump for providing electrical power to said electrically-powered motor.
- 18. An improved method of transporting fluids according to claim 17, further comprising:(i) providing a communication member communicatively coupled to said at least one programmable controller and utilizing said communication member for performing at least one of (1) transmitting information over said electrical conductor member, and (2) receiving information over said electrical conductor member.
- 19. An improved method of transporting fluids according to claim 15, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following operating attributes of said improved electrical submersible pump:(a) vibration of at least one rotary component of said pump member; (b) temperature of at least one bearing coupling of said pump member; (c) temperature of a clean fluid surrounding said electrically- powered motor; (d) pressure of a clean fluid surrounding said electrically-powered motor; (e) an electrical attribute of a clean fluid surrounding said electrically-powered motor; (f) an electrical attribute of electrical power supplied to said electrically-powered motor; (g) the speed of rotation of at least one rotary component of said pump member; and (h) the strength of electrical resistance of at least one selected insulator within said pump member.
- 20. An improved method of transporting fluids according to claim 15, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following subsurface conditions:(a) ambient wellbore temperature; and (b) ambient wellbore pressure.
- 21. An improved method of transporting fluids according to claim 15, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following fluid flow attributes:(a) fluid flow rates; and (b) fluid flow volumes.
- 22. An improved method of transporting fluids according to claim 15, wherein said at least one sensor comprises at least one sensor for detecting at least one of the following fluid attributes:(a) fluid temperature; (b) fluid pressure; (c) fluid viscosity; (d) fluid specific gravity; (e) fluid spectrometer data; and (f) an electrical attribute of said fluids.
- 23. An improved method according to claim 15:wherein said at least one sensor additionally detects at least one of the following: (5) an operating condition of another wellbore tool; and wherein said at least one program composed of instructions executable by said at least one programmable controller includes instructions for monitoring said operating condition of said another wellbore tool.
- 24. An improved method according to claim 15, wherein said at least one program is further composed of instructions executable by said at least one programmable controller for:(4) comparing data to at least one pre-established threshold.
- 25. An method of transporting fluids according to claim 5, wherein said step of utilizing said programmable controller further comprises:utilizing said programmable controller based on communications with said surface control system to alter an operating condition of said improved pump.
- 26. An apparatus for handling gas and liquid produced by a well, comprising:(a) a centrifugal gas compressor located within the well, the gas compressor having an intake for receiving gas in the well, compressing the gas and delivering the gas out a discharge to a selected gas delivery location; (b) a downhole electric motor assembly connected to the gas compressor for rotating the gas compressor; (c) a liquid pump located in the well for pumping liquid in the well to a selected liquid delivery location; and (d) a data processing system within the well for controlling operations, independent of communications with a surface control system, of at least one of (1) said centrifugal gas compressor, (2) said downhole electric motor assembly, and (3) said liquid pump.
- 27. The apparatus according to claim 26, further comprising:(e) a gas separator mounted below the pump, the gas separator having a lower intake for receiving liquid and gas from the well, for separating a substantial portion of the gas from the liquid, for delivering the separated liquid to the intake of the pump, and for delivering the separated gas to the intake of the compressor; and (f) wherein said data processing system is utilized for controlling at least one of (1) said centrifugal gas compressor, (2) said downhole electric motor assembly, (3) said liquid pump, and (4 ) said gas separator.
- 28. An apparatus for handling gas and liquid according to claim 26, further comprising:(e) at least one sensor member for monitoring at least one wellbore condition and communicating data to said processing system; (f) a member for varying operating of said centrifugal gas compressor which is under control of said processing system in order to vary compression.
- 29. An apparatus for handling gas and liquid according to claim 26, further comprising:(f) providing at least one sensor member for monitoring at least one wellbore condition and communicating data to said processing system; (g) providing a control member for varying operating of said centrifugal gas compressor; (h) utilizing said processing system and said control member in order to vary compression.
- 30. An apparatus for handling gas and liquid produced by a well according to claim 12, wherein said data processing system controls operations of said at least one of(1) said centrifugal gas compressor, (2) said downhole electric motor assembly, and (3) said liquid pump based on communications iwth said surface control system.
- 31. A method of handling gas and liquid produced by a well, comprising:(a) providing a centrifugal gas compressor located within the well, the gas compressor having an intake for receiving gas in the well, compressing the gas and delivering the gas out a discharge to a selected gas delivery location; (b) providing a downhole electric motor assembly connected to the gas compressor for rotating the gas compressor; (c) providing a liquid pump located in the well for pumping liquid in the well to a selected liquid delivery location; and (d) providing a data processing system within the well for controlling operations, independent of communications with a surface control system, of at least one of (1) said centrifugal gas compressor, (2) said downhole electric motor assembly, and (3) said liquid pump.
- 32. The method of transport according to claim 31, further comprising:(f) providing a gas separator mounted below the pump, the gas separator having a lower intake for receiving liquid and gas from the well, for separating a substantial portion of the gas from the liquid, for delivering the separated liquid to the intake of the pump, and for delivering the separated gas to the intake of the compressor; and (g) utilizing said data processing system for controlling at least one of (1) said centrifugal gas compressor, (2) said downhole electric motor assembly, (3) said liquid pump, and (4) said gas separator.
- 33. A method of handling gas and liquid produced by a well according to claim 31, further comprising:utilizing said data processing system to control said at least one of (1) said centrifugal gas compressor, (2) said downhole electric motor assembly, and (3) said liquid pump based on communications with said surface control system.
- 34. A method in a wellbore of delivering fluids, which include a high concentration of particulate material, to a selected wellbore location, comprising:(a) coupling at least one electrical submersible pump in to a tubular conduit; (b) lowering said tubular conduit into said wellbore to locate said at least one electrical submersible pump in a desired position relative to said wellbore location; (c) providing at lease one surface pump located externally of said wellbore; (d) utilizing said at least one surface pump to pass said fluids, which include a high concentration of particulate material, to said at least one electrical submersible pump; and (e) utilizing said at least one electrical submersible pump to assist said at least one surface pump to pass said fluids, which include a high concentration of particulate material, to said selected wellbore location.
- 35. A method according to claim 34, wherein said fluids comprise at least one of:(a) fracturing fluids; (b) cementitious material; and (c) completion fluids.
Parent Case Info
This application is a 371 of PCT/US96/13504, filed Aug. 29, 1996.
This application claims benefit of provisional application Ser. No. 60/002,895, filed Aug. 30, 1995.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/US96/13504 |
|
WO |
00 |
2/8/1999 |
2/8/1999 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/08459 |
3/6/1997 |
WO |
A |
US Referenced Citations (10)
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/002895 |
Aug 1995 |
US |