Claims
- 1. A reciprocating pump vent-dump valve utilized in hydrocarbon service for controlling the flow of produced fluid comprising:
a hollow piston having an upper end, a lower end, an inside and an outside; a barrel having a top, a bottom, an interior and an exterior and adapted to slidingly receive said piston about said outside thereof; a head having a bottom-side threadingly secured at said bottom-side thereof to said upper end of said piston; a venting port situated approximately midway between said top and said bottom of said piston wherein said venting port provides communication between said inside and said outside of said piston; and, means for slidingly retaining said piston within said barrel; wherein said piston is capable of limited upward and limited downward movement within said barrel such that when said piston is fully upward said venting port is in further communication with said exterior of said barrel placing the vent-dump valve in a venting position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel and such that when said piston is fully downward said venting port is not in communication with said exterior of said barrel placing the vent-dump valve in a closed position thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 2. The vent-dump valve of claim 1 wherein said piston has a circumference and wherein said means for slidingly retaining said piston within said barrel further comprises:
a piston ring formed about said circumference of said lower end of said piston extending radially away from said piston; and a barrel lip formed within said interior of said barrel approximately midway between said top and said bottom thereof, wherein said piston ring comes to rest against said barrel lip when said piston is fully upward thereby inhibiting further upward movement thereof and wherein said bottom side of said cylindrical head comes to rest against said top of said barrel when said piston is fully downward thereby inhibiting further downward movement thereof.
- 3. The vent-dump valve of claim 1 wherein said piston has a circumference and wherein said means for slidingly retaining said piston within said barrel further comprises:
a piston ring formed about said circumference of said lower end of said piston extending radially away from said piston; and a barrel lip formed within said interior of said barrel approximately midway between said top and said bottom thereof, a safety ring having an interior, an exterior, a top and a bottom adapted to be slidingly received by said piston; a safety shear pin; a safety ring safety shear pin aperture radially formed midway between said top and said bottom of said safety ring adapted to receive said safety shear pin and extending from said exterior of said safety ring to said interior of said safety ring; and, a piston safety shear pin aperture radially formed between said upper end and said lower end of said piston also adapted to receive said safety shear pin and extending from said outside of said piston to said inside of said piston; such that when said safety shear pin is inserted into said safety ring safety shear pin aperture said safety shear pin passes into said piston safety shear pin aperture thereby locking said safety ring to said piston such that when said piston moves upward within said barrel said safety ring contacts said barrel lip thereby preventing full upward movement of said piston preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel; and such that when said safety shear pin is sheared said safety ring slides along said piston towards said piston ring thereby allowing further upward movement of said piston and allowing further communication between said venting port and said exterior of said barrel placing the vent-dump valve in said venting position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel; and such that when said piston is fully upward said safety ring comes to rest between said piston ring and said barrel lip thereby inhibiting further upward movement of said piston and wherein said bottom side of said cylindrical head comes to rest against said top of said barrel when said piston is fully downward thereby inhibiting further downward movement of said piston.
- 4. The vent-dump valve of claim 1 wherein said piston ring has a midpoint and an outside and further comprising:
an entry shear pin; a piston entry shear pin aperture radially formed at said midpoint of said piston ring adapted to receive said entry shear pin and extending from said inside of said piston to said outside of said piston ring; and, a barrel entry shear pin aperture radially formed near said bottom of said barrel also adapted to receive said entry shear pin and extending from said interior of said barrel to said exterior of said barrel; such that when said entry shear pin is inserted into said barrel entry pin aperture said entry shear pin passes into said piston entry pin aperture thereby locking said piston in an entry position wherein a fixed distance is maintained between said lower end of said head and said top of said barrel thereby preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 5. The vent-dump valve of claim 3 wherein said piston ring has a midpoint and an outside and further comprising:
an entry shear pin; a piston entry shear pin aperture radially formed at said midpoint of said piston ring adapted to receive said entry shear pin and extending from said inside of said piston to said outside of said piston ring; and, a barrel entry shear pin aperture radially formed near said bottom of said barrel also adapted to receive said entry shear pin and extending from said interior of said barrel to said exterior of said barrel; such that when said entry shear pin is inserted into said barrel entry pin aperture said entry shear pin passes into said piston entry pin aperture thereby locking said piston in an entry position wherein a fixed distance is maintained between said lower end of said head and said top of said barrel thereby preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 6. The vent-dump valve of claim 1 further comprising a head having a head valve face and wherein said top of said barrel is adapted to receive said head valve face such that when the vent-dump valve is fully downward said head valve face of said head valve seals against said top of said barrel thereby inhibiting fluid flow from said exterior of said barrel to said inside of said piston.
- 7. The vent-dump valve of claim 5 further comprising a head having a head valve face and wherein said top of said barrel is adapted to receive said head valve face such that when the vent-dump valve is fully downward said head valve face of said head valve seals against said top of said barrel thereby inhibiting fluid flow from said exterior of said barrel to said inside of said piston.
- 8. The vent-dump valve of claim 1 further comprising sealing means between said outside of said piston and said interior of said barrel.
- 9. The vent-dump valve of claim 7 further comprising sealing means between said outside of said piston and said interior of said barrel.
- 10. A reciprocating pump vent-dump valve utilized in hydrocarbon service for controlling the flow of produced fluid comprising:
a hollow piston having an upper end, a lower end, an inside and an outside; a barrel having a top, a bottom, an interior and an exterior and adapted to slidingly receive said piston about said outside thereof; a head having a bottom-side threadingly secured at said bottom-side thereof to said upper end of said piston; a venting port situated approximately midway between said top and said bottom of said piston wherein said venting port provides communication between said inside and said outside of said piston; a piston ring formed about said circumference of said lower end of said piston extending radially away from said piston having a midpoint and an outside; a barrel lip formed within said interior of said barrel approximately midway between said top and said bottom thereof; a safety ring having an interior, an exterior, a top and a bottom adapted to be slidingly received by said piston; a safety shear pin; a safety ring safety shear pin aperture radially formed midway between said top and said bottom of said safety ring adapted to receive said safety shear pin and extending from said exterior of said safety ring to said interior of said safety ring; and, a piston safety shear pin aperture radially formed between said upper end and said lower end of said piston also adapted to receive said safety shear pin and extending from said outside of said piston to said inside of said piston; an entry shear pin; a piston entry shear pin aperture radially formed at said midpoint of said piston ring adapted to receive said entry shear pin and extending from said inside of said piston to said outside of said piston ring; and, a barrel entry shear pin aperture radially formed near said bottom of said barrel also adapted to receive said entry shear pin and extending from said interior of said barrel to said exterior of said barrel; such that when said entry shear pin is inserted into said barrel entry pin aperture said entry shear pin passes into said piston entry pin aperture thereby locking said piston in an entry position wherein a fixed distance is maintained between said lower end of said head and said top of said barrel thereby preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel; and such that when said safety shear pin is inserted into said safety ring safety shear pin aperture said safety shear pin passes into said piston safety shear pin aperture thereby locking said safety ring to said piston such that when said piston moves upward within said barrel said safety ring contacts said barrel lip thereby preventing full upward movement of said piston preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel; and such that when said safety shear pin is sheared said safety ring slides along said piston towards said piston ring thereby allowing further upward movement of said piston and allowing further communication between said venting port and said exterior of said barrel placing the vent-dump valve in said venting position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel; and such that when said piston is fully upward said safety ring comes to rest between said piston ring and said barrel lip thereby inhibiting further upward movement of said piston and wherein said bottom side of said cylindrical head comes to rest against said top of said barrel when said piston is fully downward thereby inhibiting further downward movement of said piston; and, wherein said piston is capable of limited upward and limited downward movement within said barrel such that when said piston is fully upward said venting port is in further communication with said exterior of said barrel placing the vent-dump valve in a venting position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel and such that when said piston is fully downward said venting port is not in communication with said exterior of said barrel placing the vent-dump valve in a closed position thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 11. The vent-dump valve of claim 10 further comprising a head having a head valve face and wherein said top of said barrel is adapted to receive said head valve face such that when the vent-dump valve is fully downward said head valve face of said head valve seals against said top of said barrel thereby inhibiting fluid flow from said exterior of said barrel to said inside of said piston.
- 12. The vent-dump valve of claim 10 further comprising sealing means between said outside of said piston and said interior of said barrel.
- 13. A reciprocating pump vent-dump valve utilized in hydrocarbon service comprising:
a hollow piston having an upper end, a lower end, an inside and an outside; a barrel having a top, a bottom, an interior and an exterior and adapted to slidingly receive said piston about said outside thereof, a head having-a bottom-side threadingly secured at said bottom-side thereof to said upper end of said piston; a vent port situated approximately midway between said top and said bottom of said piston wherein said vent port provides communication between said inside and said outside of said piston; a dump port situated below said vent port wherein said dump port provides communication between said inside and said outside of said piston; a piston ring formed about said circumference of said lower end of said piston extending radially away from said piston; a barrel lip formed within said interior of said barrel approximately midway between said top and said bottom thereof; a safety ring having an interior, an exterior, a top and a bottom adapted to be slidingly received by said piston; a safety shear pin; a safety ring safety shear pin aperture radially formed midway between said top and said bottom of said safety ring adapted to receive said safety shear pin and extending from said exterior of said safety ring to said interior of said safety ring; and, a piston safety shear pin aperture radially formed between said upper end and said lower end of said piston also adapted to receive said safety shear pin and extending from said outside of said piston to said inside of said piston; such that when said safety shear pin is inserted into said safety ring safety shear pin aperture said safety shear pin passes into said piston safety shear pin aperture thereby locking said safety ring to said piston such that when said piston moves upward within said barrel said safety ring contacts said barrel lip thereby preventing full upward movement while allowing only partial upward movement; and, such that when said safety shear pin is sheared said safety ring slides along said piston towards said piston ring thereby allowing full upward movement of said piston; and, such that when said piston is fully upward said safety ring comes to rest between said piston ring and said barrel lip thereby inhibiting further upward movement of said piston and wherein said bottom side of said cylindrical head comes to rest against said top of said barrel when said piston is fully downward thereby inhibiting further downward movement of said piston; and, wherein said piston is capable of limited upward and limited downward movement within said barrel such that when said piston is partially upward said vent port is in further communication with said exterior of said barrel placing the vent-dump valve in a venting position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel, such that when said piston is fully upward said dump port is in further communication with said exterior of said barrel placing the vent-dump valve in a dumping position thereby allowing flow of produced fluid from said inside of said piston to said exterior of said barrel and such that when said piston is fully downward said vent port and said dump are not in communication with said exterior of said barrel placing the vent-dump valve in a closed position thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 14. The vent-dump valve of claim 13 wherein said piston ring has a midpoint and an outside and further comprising:
a entry shear pin; a piston entry shear pin aperture radially formed at said midpoint of said piston ring adapted to receive said entry shear pin and extending from said inside of said piston to said outside of said piston ring; and, a barrel entry shear pin aperture radially formed near said bottom of said barrel also adapted to receive said entry shear pin and extending from said interior of said barrel to said exterior of said barrel; such that when said entry shear pin is inserted into said barrel entry pin aperture said entry shear pin passes into said piston entry pin aperture thereby locking said piston in an entry position wherein a fixed distance is maintained between said lower end of said head and said top of said barrel thereby preventing further communication of said venting port with said exterior of said barrel thereby inhibiting flow of produced fluid from said inside of said piston to said exterior of said barrel.
- 15. The vent-dump valve of claim 14 further comprising a head having a head valve face and wherein said top of said barrel is adapted to receive said head valve face such that when the vent-dump valve is fully downward said head valve face of said head valve seals against said top of said barrel thereby inhibiting fluid flow from said exterior of said barrel to said inside of said piston.
- 16. A method for spotting chemicals in production tubing using makeup fluid and a downhole vent-dump valve having a closed position and a venting position in a well having a pump and associated means for driving the pump, a wellhead and control valves comprising:
a) preparing the chemical to be spotted; b) preparing the makeup fluid; c) attaching both the chemical to be spotted and the makeup fluid to the wellhead control valves; d) ceasing pumping operations; e) opening the control valve leading to the chemical; f) drawing up on the pump drive means thereby opening the vent-dump valve and placing the vent-dump valve in the venting position thereby allowing the chemical to be drawn into the well; g) closing the control valve leading to chemical as the supply chemical is exhausted and opening the control valve leading to the makeup fluid; h) lowering the pump drive means thereby placing the vent-dump valve in the closed position as the supply of makeup fluid is exhausted; i) closing the control valve leading to makeup fluid; and, k) restoring the well to normal operating conditions.
- 17. A method for clearing flower sand in production tubing using a downhole vent-dump valve having a closed position and a venting position in a well having a pump and associated means for driving the pump, produced fluid, an annulus, a wellhead and control valves comprising:
a) ceasing pumping operations; b) drawing up on the pump drive means thereby opening the vent-dump valve and placing the vent-dump valve in the venting position thereby allowing produced fluid to flow back into the annulus; c) waiting a predetermined time period thereby washing flower sand back into the annulus; d) lowering the pump drive means thereby placing the vent-dump valve in the closed position; and, e) restoring the well to normal operating conditions.
- 18. The method of claim 17 wherein air may be allowed into the production tubing and wherein the well further has a wellhead and control valves further comprising:
a-1) opening a control valve after step a); and d-1) closing the control after step d)
- 19. A method for completely dumping the hydrostatic head in production tubing having a hold-down in an oil well using a downhole vent-dump valve having a closed position and a venting position in a well having produced fluid, a pump and associated means for driving the pump, an annulus, a wellhead and control valves for service operations comprising:
a) ceasing pumping operations; b) opening an associated control valve; c) drawing up on the pump drive means thereby opening the vent-dump valve and placing the vent-dump valve in a venting position thereby allowing air to be drawn into the production and allowing the produced fluid to flow back into the annulus; d) waiting a predetermined time period to allow the hydrostatic head to dissipate in to the annulus; f) drawing harder on the pump drive means thereby freeing the pump from the hold-down; and, g) continuing the service operations as needed.
- 20. The method of claim 19 wherein the vent-dump further has a dump position and wherein step (c) becomes:
c-1) drawing up on the pump drive means thereby opening the vent-dump valve and placing the vent-dump valve in a venting position; and, c-2) drawing harder on the pump drive means thereby placing the vent-dump valve to a dump position thereby allowing air to be drawn into the production tubing and allowing the produced fluid to flow back into the annulus.
Parent Case Info
[0001] This application claims priority from Provisional Patent Application 60/360,240 filed on Feb. 26, 2002 and Provisional Patent Application 60/392,991 filed on Jul. 1, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60360240 |
Feb 2002 |
US |
|
60392991 |
Jul 2002 |
US |