What I claim as my invention is:
1. A system for providing power to devices in a well having a production tubing and a packer sealing an annulus between the well and tubing comprising:
a conduit connecting the annulus above said packer to the annulus below said packer, and
an electrical generator coupled to said conduit using energy from fluid flowing through said conduit to generate electrical power.
2. A system according to claim 1 further comprising a motor driven by said fluid flowing through said conduit and providing a mechanical motion output.
3. A system according to claim 2 wherein said motor is a hydraulically driven turbine.
4. A system according to claim 2 wherein said electrical generator is mechanically coupled to and driven by said motor.
5. A system according to claim 1, wherein said packer comprises a seal element and said conduit passes through said seal element.
6. A system according to claim 1, wherein said conduit comprises a sleeve positioned around said production tubing and between said packer and said production tubing.
7. A system according to claim 1, further comprising an electrical power storage device coupled to said generator for storing electricity produced by said generator.
8. A system according to claim 7, further comprising a controller coupled to said power storage device and to said electrical generator controlling the flow of fluid through said conduit to maintain a preselected minimum level of power in said power storage device.
9. A system according to claim 8, further comprising one or more electrically operated devices coupled to and powered by electricity stored in said power storage device.
10. A system according to claim 1, further comprising a casing lining the well, wherein said packer seals between said production tubing and said casing.
11. A system according to claim 10, wherein said casing has a first port above said packer and a second port below said packer and said conduit is positioned outside said case and connected between said first port and said second port.
12. A system according to claim 1, wherein said well is uncased and said packer seals between said production tubing and the inner wall of said well.
13. A system for providing power to devices in a well having a production tubing and a packer sealing an annulus between the well and tubing comprising:
a conduit connecting the annulus above said packer to the annulus below said packer, and
a hydraulically driven actuator coupled to said conduit using fluid flowing through said conduit to provide power to devices located in said well.
14. A system according to claim 13, wherein said packer comprises a seal element and said conduit passes through said seal element.
15. A system according to claim 13, wherein said conduit comprises a sleeve positioned around said production tubing and between said packer and said production tubing.
16. A system according to claim 13, further comprising a controller coupled to said conduit for controlling the flow of fluid to said actuator.
17. A system according to claim 16, further comprising a flow control valve coupled to said conduit and to said controller and permitting or stopping fluid flow through said conduit in response to signals from said controller.
18. A system according to claim 17, further comprising a receiver coupled to said controller receiving control signals transmitted from the surface location of the well and providing signals to said controller causing it to permit or stop fluid flow through said conduit.
19. A system according to claim 13, further comprising a casing lining the well, wherein said packer seals between said production tubing and said casing.
20. A system according to claim 19, wherein said casing has a first port above said packer and a second port below said packer and said conduit is positioned outside said case and connected between said first port and said second port.
21. A system according to claim 13, wherein said well is uncased and said packer seals between said production tubing and the inner wall of said well.
22. A system for providing power to devices in a well having a production tubing and a packer sealing an annulus between the well and tubing comprising:
a conduit connecting the annulus above said packer to the annulus below said packer, and
power means coupled to said conduit for using fluid flowing through said conduit to provide power to devices located in said well.
23. A system according to claim 22, wherein said packer comprises a seal element and said conduit passes through said seal element.
24. A system according to claim 22, wherein said conduit comprises a sleeve positioned around said production tubing and between said packer and said production tubing.
25. A system according to claim 22, further comprising casing lining said well, wherein said casing has a first port above said packer and a second port below said packer and said conduit is positioned outside said case and connected between said first port and said second port.
26. A system according to claim 22, wherein said power means comprises a hydraulic turbine and an electrical generator, said turbine coupled to said conduit and driven by fluid flowing through said conduit and coupled to said generator to drive said electrical generator.
27. A system according to claim 26, further comprising electrical power storage means coupled to said generator for storing electricity produced by said generator.
28. A system according to claim 27, further comprising a controller coupled to said storage means and to said power means controlling the flow of fluid through said conduit to maintain a preselected minimum level of power in said storage means.
29. A system according to claim 28, further comprising one or more electrically operated devices coupled to and powered by electricity stored in said storage means.
30. A system according to claim 22, wherein said power means comprises an actuator providing mechanical motion when driven by fluid flowing through said conduit.
31. A system according to claim 30, further comprising a controller coupled to said conduit for controlling the flow of fluid to said actuator.
32. A system according to claim 31, further comprising a flow control valve coupled to said conduit and to said controller and permitting or stopping fluid flow through said conduit in response to signals from said controller.
33. A system according to claim 32, further comprising a receiver coupled to said controller receiving control signals transmitted from the surface location of the well and providing signals to said controller causing it to permit or stop fluid flow through said conduit.
34. A method for providing power to devices in a producing well having a production tubing and a packer sealing an annulus between the well and tubing comprising using pressure differential between fluid above said packer and fluid below said packer to provide power to said devices.
35. A method according to claim 34 further comprising flowing fluid from above said packer to a hydraulically driven device located in said well below said packer.
36. A method according to claim 35 wherein said hydraulically driven device is a motor.
37. A method according to claim 36 further comprising driving an electrical generator with said motor.
38. A method according to claim 37 further comprising coupling electrical power from said electrical generator to electrically operated devices in said well.
39. A method according to claim 35 wherein said hydraulically driven device is an actuator providing a mechanical motion in response to a hydraulic input.
40. A method according to claim 39, further comprising coupling mechanical motion from said actuator to a mechanically operated device in said well.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
What is claimed is:
1. A cooling apparatus of an internal combustion engine comprising:
a closed deck-type cylinder block having a water jacket for allowing engine cooling water to flow therein to cool the engine, and an upper deck including a water hole formed therein for causing the cooling water to flow therethrough and a water hole portion surrounding the water hole; and
an insert disposed in the water jacket and inserted into the water jacket through the water hole,
wherein the insert is fixed relative to the cylinder block at the water hole portion such that the insert is fixed in position in a flow direction of the cooling water.
2. An apparatus according to claim 1, wherein the insert includes a spring mechanism formed therein for fixing the insert to the cylinder block by a reaction force of the spring mechanism.
3. An apparatus according to claim 1, further comprising a pad provided in a clearance between the water hole portion and the insert, for fixing the insert to the cylinder block.
4. An apparatus according to claim 1, further comprising a clip engaging with the water hole portion and the insert so as to fix the insert to the cylinder block.
5. An apparatus according to claim 1, wherein the cylinder block includes a groove formed in the water hole portion of the upper deck and the insert has a key formed therein and fitted in the groove so as to fix the insert to the cylinder block.
6. A cooling apparatus of an internal combustion engine comprising:
a closed deck-type cylinder block having a water jacket for allowing engine cooling water to flow therein to cool the engine and a water jacket wall surrounding the water jacket, and an upper deck including a water hole formed therein for causing the cooling water to flow therethrough; and
an insert disposed in the water jacket and inserted into the water jacket through the water hole,
wherein a stopper for preventing the insert from moving downstream in a flow direction of the cooling water is provided, and the insert engages the stopper such that the insert is fixed in position in the flow direction of the cooling water.
7. An apparatus according to claim 6, wherein the stopper is a protrusion formed in at least one of a bottom wall portion and an outer side wall portion of the water jacket wall.
8. An apparatus according to claim 6, wherein the stopper is an extension extending from a cylinder head mounted to the cylinder block into the water jacket.
9. An apparatus according to claim 6, wherein the stopper is an extension extending from a cylinder head gasket mounted to the cylinder block into the water jacket.
10. An apparatus according to claim 6, wherein the stopper is a protrusion protruding from a tight plug mounted to the cylinder block into the water jacket.
11. An apparatus according to claim 6, wherein the stopper is a chaplet used in manufacture of the cylinder block and remaining in the water jacket.
12. A cooling apparatus of an internal combustion engine comprising:
a closed deck-type cylinder block having a water jacket for allowing engine cooling water to flow therein to cool the engine, and an upper deck including a water hole formed therein for causing the cooling water to flow therethrough; and
an insert inserted into the water jacket through the water hole,
wherein the insert includes an upstream portion having a streamline configuration.