Claims
- 1. A method for a valve, which valve comprises a movable valve body having a first side facing a means for supplying pressurized fluid and influenced in the supply direction by a force from said fluid, and a second side influenced in opposite direction by a force from said fluid, which valve is provided with at least one fluid connection connecting the first side of the valve body with the second side of the valve body and thereby allowing said supplied pressurized fluid to flow from said first side to said second side of the valve body, and also comprising a spring for opening the valve by displacing the valve body from a closed position to an open position, said method comprising the following steps:a pressurized fluid is supplied to the valve in closed position whereupon the valve remains closed, the supply of pressurized fluid to the closed valve ceases, a force equalization then occurs between said first and second sides in that fluid flows through the fluid connection, thereby enabling the spring to open the valve, and a pressurized fluid is supplied to the valve in open position and the valve remains open.
- 2. A method for a valve, which valve comprises a movable valve body having a first side facing a means for supplying pressurized fluid and influenced in the supply direction by a force from said fluid, and a second side influenced in opposite direction by a force from said fluid, which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, and also comprising a spring for opening the valve by displacing the valve body from a closed position to an open position, said method comprising the following steps:a pressurized fluid is supplied to the valve in closed position whereupon the valve remains closed, the supply of pressurized fluid to the closed valve ceases, a force equalization then occurs between said first and second sides in that fluid flows through the connection, thereby enabling the spring to open the valve, and a pressurized fluid is supplied to the valve in open position and the valve remains open, the valve further being provided with a locking device to mechanically lock said valve when in closed position, which method comprises the following steps: the pressurized fluid is supplied to the valve in closed and mechanically locked position, the locking device is caused to cease locking said valve in closed position, the valve continues to be closed even when the locking device no longer locks the valve, since the pressurized fluid supplied still causes the valve to remain closed, the supply of pressurized fluid ceases, and a force equalization then occurs between said first and second sides, thereby enabling the spring to open the valve.
- 3. A method as claimed in claim 2 wherein the method is used with a valve for a wire line core drill comprising an inner tube by means of which core samples are collected, and an outer tube connected to a drill bit, in that the locking device is applied in the rear end of the inner tube, in that said valve is placed at the rear end of the inner tube and controls the supply of a flushing medium in the form of a pressurized fluid and wherein, when the inner tube has been inserted in the outer tube and has assumed the correct position inside the outer tube for drilling, in one and the same movement said locking device simultaneously achieves locking of the inner tube in relation to the outer tube and releases said valve so that it is no longer mechanically locked.
- 4. A method as claimed in claim 3 wherein, after the pressurized fluid is supplied to the valve in closed and mechanically locked position, the locking device is caused to cease locking said valve in closed position, the valve continues to be closed, the supply of pressurized fluid ceases, and a force equalization occurs between said first and second sides, thereby enabling the spring to open the valve, a signal is conveyed to a drill rig, said signal indicating that the inner tube has assumed the correct position inside the outer tube and that drilling can be commenced.
- 5. A valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one fluid connection connecting the first side of the valve body with the second side of the valve body and thereby allowing said supplied pressurized fluid to flow from said first side to said second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied.
- 6. A valve as claimed in claim 5 wherein the valve is so designed that, when the supply of pressurized fluid to the closed valve ceases, a force equalization occurs via said fluid connection between said first and second sides, and in that the spring then influences the valve body so that it is displaced from its closed to its open position.
- 7. A valve as claimed in claim 6 wherein the second surface, on the second side of the valve body is divided into two surfaces.
- 8. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 7.
- 9. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 6.
- 10. A valve as claimed in claim 5 wherein the second surface, on the second side of the valve body, is divided into two surfaces.
- 11. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 10.
- 12. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 5.
- 13. A system as claimed in claim 12 including means for transmitting a signal to a drill rig, said signal indicating that the inner tube has assumed the correct position inside the outer tube and that the valve has been opened.
- 14. A valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied, the valve being provided with a locking device for mechanically locking said valve when it is in closed position.
- 15. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 14.
- 16. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, the valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied, the valve being provided with a locking device for mechanically locking said valve when it is in closed position, wherein the valve provided with the locking device is applied in the rear end of the inner tube and in that said locking device is so constructed that, when the inner tube has been inserted in the outer tube and has assumed the correct position inside the outer tube for drilling, in one and the same movement it simultaneously achieves locking of the inner tube in relation to the outer tube and releases said valve so that it is no longer mechanically locked.
- 17. A valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied, the valve being so designed that, when the supply of pressurized fluid to the closed valve ceases, a force equalization occurs via said connection between said first and second sides, and in that the spring then influences the valve body so that it is displaced from its closed to its open position, the valve being provided with a locking device for mechanically locking said valve when it is in closed position.
- 18. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 17.
- 19. A valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied, the second surface, on the second side of the valve body, being divided into two surfaces, the valve s being provided with a locking device for mechanically locking said valve when it is in closed position.
- 20. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 19.
- 21. A valve comprising a movable valve body having a first side facing a means for supplying pressurized fluid and having at least one first surface that is influenced in the supply direction by a force F1 from said fluid, and a second side facing in the opposite direction, and which valve is provided with at least one connection connecting the first side of the valve body with the second side of the valve body, wherein the valve comprises a spring for opening the valve by displacing the valve body from a closed position to an open position, in that said second side of the valve body has at least one second surface that is influenced by a force from said fluid in a direction opposite to the supply direction, and in that the area of said second surface is greater than that of said first surface so that the force influencing the valve body in closing direction, in the form of the force from the pressurized fluid acting on said second surface exceeds the force influencing the valve body in opening direction, in the form of the combined force Ff from the spring and the force F1 from the pressurized fluid acting on said first surface, whereby the valve body is retained in the closed position of the valve when pressurized fluid is supplied, the valve being so designed that, when the supply of pressurized fluid to the closed valve ceases, a force equalization occurs via said connection between said first and second sides, and in that the spring then influences the valve body so that it is displaced from its closed to its open position, the second surface, on the second side of the valve body being divided into two surfaces, the valve being provided with a locking device for mechanically locking said valve when it is in closed position.
- 22. A wire line core drill system comprising a wire line core drill having an inner tube by means of which core samples are collected, an outer tube connected to a drill bit, and a valve situated at the rear end of the inner tube, said valve controlling the supply of a flushing medium in the form of a pressurized fluid, wherein the valve is constructed in accordance with claim 21.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 9903019 |
Aug 1999 |
SE |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a U.S. national counterpart application of international application serial No. PCT/SE00/01631 filed Aug. 24, 2000, which claims priority to Swedish application serial no. 9903019-9 filed Aug. 24, 1999.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/SE00/01631 |
|
WO |
00 |
| Publishing Document |
Publishing Date |
Country |
Kind |
| WO01/14690 |
3/1/2001 |
WO |
A |
US Referenced Citations (4)