Claims
- 1. A system for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones and includes a casing extending from a wellhead to line the borehole and extend into both of said spacially separated production zones and at least two strings of tubing extending in parallel along the interior of the casing from the wellhead and wherein the first string of tubing extends into the region of the first of said spacially separated production zones and the second string of tubing extends into the region of the second of said production zones, said system comprising:
- a gas lift valve connected in each one of said strings of tubing with a first valve being associated with said first production zone and a second valve being associated with said second production zone;
- a single source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas; and
- means for independently varying the size of the flow control aperture within each of said first and second gas lift valves to control the production of fluids from each of said first and second production zones.
- 2. A system for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 1 in which each of said gas lift valves includes:
- a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value;
- means connected to said valve member for varying the size of said passageway; and
- means remote from said valve for supplying control signals to said varying means to control said means and select the size of said passageway.
- 3. A system for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 2 which also includes:
- means connected to said valve member for continuously producing a signal indicative of the current size of said passageway;
- a control unit located at the surface for generating control signals and for monitoring the size of the passageway within a valve member; and
- a control cable connected from said control unit to each of said gas lift valves for coupling control signals from said control unit to said valves to vary the size of the passageway and to couple said passageway size indicative signals from each valve member to said control unit.
- 4. A system for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 3 in which said control unit also includes means for monitoring downhole pressures and which also includes:
- means for generating a signal downhole indicative of the pressure within the tubing in the region of each of said gas lift valves; and
- means for connecting said control cable to each of said pressure signal generating means.
- 5. A system for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones and includes a casing extending from a wellhead to line the borehole and extend into both of said spacially separated production zones and at least two strings of tubing extending in parallel along the interior of the casing from the wellhead and wherein the first string of tubing extends into the region of the first of said spacially separated production zones and the second string of tubing extends into the region of the second of said production zones, said system comprising:
- a gas lift valve connected in each one of said strings of tubing with a first valve being associated with said first production zone and a second valve being associated with said second production zone;
- a single source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas; and
- means for independently varying the size of the flow control aperture within each of said first and second gas lift valves to control the production of fluids from each of said first and second production zones, said means including,
- means for monitoring the production flow from each of said strings of tubing at the surface; and
- means responsive to the volume of production flow from each of said strings of tubing for varying the size of the control aperture in each of said first and second gas lift valves to optimize the flow of production flow through each tubing string to the surface.
- 6. A method for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones and includes providing a casing extending from a wellhead to line the borehole and extend into both of said spacially separated production zones and at least two strings of tubing extending in parallel along the interior of the casing from the wellhead and wherein the first string of tubing extends into the region of a first of said spacially separated production zones and the second string of tubing extends into the region of the second of said production zones, said method comprising:
- providing a gas lift valve connected in each one of said strings of tubing with a first valve being associated with said first production zone and a second valve being associated with said second production zone;
- providing a single source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas; and
- independently varying the size of the flow control aperture within each of said first and second gas lift valves to control the production of well fluids from each of said first and second production zones.
- 7. A method for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 6 in which each of said gas lift valves provided includes a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value and which includes the additional step of:
- supplying control signals to said varying means from a remote location to control said means and select the size of said passageway.
- 8. A method for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 7 which also includes:
- producing a continuous signal indicative of the current size of said passageway at said valve member; and
- providing a control unit located at the surface for generating control signals and for monitoring the size of the passageway within a valve member;
- coupling control signals from said control unit to said valves on a control cable to vary the size of the passageway and to couple said passageway size indicative signals from each valve member to said control unit.
- 9. A method for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones as set forth in claim 8 in which said control unit also includes means for monitoring downhole pressures and which also includes the steps of:
- generating a signal downhole indicative of the pressure within the tubing in the region of each of said gas lift valves; and
- connecting said control cable to each of said pressure signal generating means.
- 10. A method for controlling the flow from a gas lift petroleum production well in which a borehole penetrates at least two spacially separated geological production zones and includes providing a casing extending from a wellhead to line the borehole and extend into both of said spacially separated production zones and at least two strings of tubing extending in parallel along the interior of the casing from the wellhead and wherein the first string of tubing extends into the region of a first of said spacially separated production zones and the second string of tubing extends into the region of the second of said production zones, said method comprising:
- providing a gas lift valve connected in each one of said strings of tubing with a first valve being associated with said first production zone and a second valve being associated with said second production zone;
- providing a single source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas; and
- independently varying the size of the flow control aperture within each of said first and second gas lift valves to control the production of well fluids from each of said first and second production zones, said steps including:
- monitoring the production flow from each of said strings of tubing at the surface; and
- varying the size of the control aperture in each of said first and second gas lift valves in response to the volume of production flow from each of said strings of tubing to optimize the flow of production flow through each tubing string to the surface.
- 11. A system for controlling the flow from a gas lift petroleum production well which includes a casing extending from a wellhead to line the borehole and extend into a production zone and a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone, said system comprising:
- a gas lift valve connected in said string of tubing and being located in the region of said production zone;
- a source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas;
- means for monitoring the flow of production flow from said tubing at the surface; and
- means responsive to the rate of production flow from the tubing for varying the size of the flow control aperture within said gas lift valve to control the production of well fluids from said production zone while minimizing the fluctuations in said production flow rate.
- 12. A system for controlling the flow from a gas lift petroleum production well as set forth in claim 11 in which the means for varying the size of the flow control aperture within said gas lift valve includes:
- means for initially selecting a flow control aperture size which produces a production flow from the tubing which has a negligible value of flow rate fluctuation; and
- means for slowly increasing the size of the flow control aperture until the flow rate fluctuation exceeds a preselected value.
- 13. A system for controlling the flow from a gas lift petroleum production well as set forth in claim 11 in which each of said gas lift valves includes:
- a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value;
- means connected to said valve member for varying the size of said passageway; and
- means remote from said valve for supplying control signals to said varying means to control said means and select the size of said passageway.
- 14. A system for controlling the flow from a gas lift petroleum production well as set forth in claim 13 which also includes:
- means connected to said valve member for producing a signal indicative of the size of said passageway; and
- a control unit located at the surface for generating control signals and for monitoring the size of the passageway within a valve member; and
- a control cable connected from said control unit to said lift valve for coupling control signals from said control unit to said valve to vary the size of the passageway and to couple said passageway size indicative signals from said valve member to said control unit.
- 15. A system for controlling the flow from a gas lift petroleum production well as set forth in claim 14 in which said control unit also includes means for monitoring downhole pressures and which also includes:
- means for generating a signal downhole indicative of the pressure within the tubing in the region of said gas lift valve;
- means for connecting said control cable to said pressure signal generating means; and
- means also responsive to monitored downhole pressure for varying the size of the flow control aperture within said gas lift valve to control the production of well fluids from said string of tubing and minimize the fluctuations in said production flow rate.
- 16. A method for controlling the flow from a gas lift petroleum production well which includes a casing extending from a wellhead to line the borehole and extend into a production zone and a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone, said method comprising:
- providing a gas lift valve connected in said string of tubing and being located in the region of said production zone;
- providing a single source of pressurized gas connected to the casing at the wellhead to provide a source of lift gas; and
- monitoring the flow of production flow from said tubing at the surface;
- varying the size of the flow control aperture within said gas lift valve in response to the rate of production flow from the tubing to control the production of well fluids from said string of tubing and minimize the fluctuations in said production flow rate.
- 17. A method for controlling the flow from a gas lift petroleum production well as set forth in claim 16 in which the step of varying the size of the flow control aperture within said gas lift valve includes the steps of:
- initially selecting a flow control aperture size which produces a production flow from the tubing which has a negligible value of flow rate fluctuation; and
- slowly increasing the size of the flow control aperture until the flow rate fluctuation exceeds a preselected value.
- 18. A method for controlling the flow from a gas lift petroleum production well as set forth in claim 16 in which each of said gas lift valves includes:
- a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value;
- means connected to said valve member for varying the size of said passageway; and
- means remote from said valve for supplying control signals to said varying means to control said means and select the size of said passageway.
- 19. A method for controlling the flow from a gas lift petroleum production well as set forth in claim 18 which also includes:
- producing a signal indicative of the size of said passageway;
- generating control signals and monitoring the size of the passageway within a valve member at a control unit at the surface; and
- connecting from said control unit to said lift valve a control cable for coupling control signals from said control unit to said valve to vary the size of the passageway and to couple said passageway size indicative signals from said valve member to said control unit.
- 20. A method for controlling the flow from a gas lift petroleum production well as set forth in claim 19 in which said control unit also includes means for monitoring downhole pressures and which also includes the additional steps of:
- generating a signal downhole indicative of the pressure within the tubing in the region of said gas lift valve;
- connecting said control cable to said pressure signal generating means; and
- varying the size of the flow control aperture within said gas lift valve in response to monitored downhole pressure to control the production of well fluids from said string of tubing and minimize the fluctuations in said production flow rate.
- 21. In a system for monitoring downhole variable parameters within a petroleum production well, comprising:
- a control unit located at the surface for producing control signals and for receiving signals indicative of monitored parameter values;
- a plurality of sensors located downhole for generating a signal related to the value of a variable parameter;
- a cable extending down said well for connecting all of said plurality of sensors to said control unit at the surface;
- an address control switch associated with each one of said plurality of sensors and connected to said cable, each one of said address control switches having a unique address code upon receipt of which it will connect its associated sensor to said cable for electrical communication with said control unit; and
- an address code generator located within said control unit and connected to said cable for selectively generating control signals containing the address code associated with the address control switch of the particular downhole sensor for the downhole parameter to be monitored at the surface.
- 22. A system for monitoring downhole variable parameters within a petroleum production well as set forth in claim 21 which also includes:
- a valve member located downhole and having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means responsive to control signals capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value;
- an address control switch associated with said control means within said valve member and said cable and having a unique address code upon receipt of which it will connect said control means to said cable for electrical communication of control signals from said control unit to said control means; and
- said address code generator located within said control unit also being capable of selectively generating control signals containing the address code of the address control switch associated with the control means within the valve member.
- 23. A system for monitoring downhole variable parameters within a petroleum production well as set forth in claim 22 which also includes:
- means connected to said valve member for producing an indication of the size of the passageway between the input port and the discharge port of said valve member; and
- one of said plurality of sensors located downhole produces a signal proportional to the output of said indication producing means.
- 24. A system for monitoring downhole variable parameters within a petroleum production well as set forth in claim 22 in which:
- said cable also carries a relatively low voltage d.c. operating current from said control unit to said sensors to provide operating current thereto.
- 25. A system for monitoring downhole variable parameters within a petroleum production well as set forth in claim 22 in which:
- each of said sensors produces a signal indicative of the value of its monitored parameter value which is within a frequency range which is different from the frequency range of the signals of the other sensors.
- 26. A system for monitoring and controlling downhole parameters within a petroleum production well comprising:
- a first electrical component located downhole which requires a relatively low value of operating voltage;
- a second electrical component located downhole which requires periodic pulses of a relatively high value of operating voltage;
- a single cable extending from the surface for supplying operating voltage to both said first and second electrical components;
- first circuit means connected between said cable and said first electrical component for allowing a said relatively low value of voltage to pass and supply operating power to said component and responsive to a value of voltage on said cable in excess of a threshold value for electrically disconnecting said first component from said cable and responsive to the value of voltage on said cable decreasing to zero for reconnecting said first component to said cable; and
- second circuit means connected between said cable and said second electrical component for disconnecting said component from said cable to prevent said component from electrically loading the power supply circuit and responsive to a value of voltage on said cable in excess of a threshold value for electrically connecting said second component to said cable to allow said voltage to pass and operate said component and responsive to the value of voltage on said cable decreasing to zero for disconnecting said second component to said cable.
- 27. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which:
- said first circuit means comprises a voltage sensitive switch including,
- electronic switch means connected in series with said first component and having a gate for selectively connecting or disconnecting said component from said cable,
- means for sensing the value of the voltage on the cable, comparing it to a reference value, and producing an output signal if said value is less than said reference value, and
- means responsive to an output signal from said sensing means for applying a signal to the gate of said electronic switch means and connecting a low voltage operating voltage from said cable to said first electrical component.
- 28. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which:
- said electronic switch means includes a field effect transistor.
- 29. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which:
- said first electrical component includes a sensor located downhole for generating a signal related to the value of a variable parameter.
- 30. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which said second electrical component includes:
- a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value; and
- electrical pulse responsive means connected to said valve member for varying the size of said passageway; and means remote from said valve and connected to the upper end of said cable for supplying electrical control pulses to said varying means to control said means and select the size of said passageway.
- 31. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which:
- said second circuit means comprises a voltage sensitive switch including,
- electronic switch means connected in series with said second component and having a gate for selectively connecting or disconnecting said component from said cable, and
- means for biasing the gate of said electronic switch to a preselected voltage to prevent conduction of said switch unless the voltage on said cable exceeds said preselected voltage.
- 32. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 31, in which:
- said electronic switch means includes a silicon controlled rectifier.
- 33. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 26, in which:
- said second electrical component is responsive to electrical pulses of one polarity for one function and to electrical pulses of the opposite polarity for another function;
- said second circuit means comprises a voltage sensitive switch including,
- a first unidirectional electronic switch means connected in series with said second component in a first polarity and having a gate for selectively connecting or disconnecting said component from said cable,
- a second unidirectional electronic switch means connected in series with said second component in the opposite polarity and said first switch means and having a gate for selectively connecting or disconnecting said component from said cable,
- means for biasing the gate of said first electronic switch to a preselected voltage of a first polarity to prevent conduction of said switch unless the voltage on said cable exceeds said preselected voltage and polarity, and
- means for biasing the gate of said second electronic switch to a preselected voltage of the opposite polarity to prevent conduction of said switch unless the voltage on said cable exceeds said preselected voltage and polarity.
- 34. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 33, in which:
- said second electrical component includes a pair of solenoid coils, one for moving a solenoid armature in one direction and one for moving said solenoid armature in the other direction.
- 35. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 33, in which:
- said first and second unidirectional switch means include silicon controlled rectifiers.
- 36. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 33 in which said second electrical component comprises:
- a valve member having a flow input port, a flow discharge port and means for controlling the passage of fluid therebetween, said control means including means capable of varying the size of the passageway between the input port and the discharge port and means for maintaining the size of the passageway at a selected value;
- electrical pulse responsive means connected to said valve member for increasing the size of said passageway in response to pulses of one polarity and decreasing the size of the passage in response to pulses of the opposite polarity; and
- means remote from said valve and connected to the upper end of said cable for selectively supplying electrical control pulses of one polarity or the other to said varying means to control said means and select the size of said passageway.
- 37. A system for monitoring and controlling downhole parameters within a petroleum production well comprising:
- a casing extending from a wellhead to line the borehole and extend into a production zone;
- a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone;
- a valve connected in said string of tubing and being located in the region of said production zone;
- means for varying the size of the flow control aperture within said valve to control the flow of fluids from the casing into the tubing;
- means connected to said valve for continuously generating a signal indicative of the current size of the flow control aperture;
- a control unit located at the surface for generating control signals and for monitoring the size of the flow control aperture within said valve;
- a control cable extending down said casing and connected from said control unit to said valve for coupling control signals from said control unit to said valve to vary the size of the flow control aperture thereof and to couple said size indicative signals from said signal generating means to said control unit for monitoring thereof.
- 38. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 37 wherein said control unit includes means for monitoring different variable parameter values and which also includes:
- a sensor for generating a signal indicative of pressure located in the region of said valve, said sensor being connected to said control cable for receiving a low voltage power supply signal from said control unit and for sending said pressure indicative signal from said sensor to said control unit.
- 39. A system for monitoring and controlling downhole parameters within a petroleum production well comprising:
- a casing extending from a wellhead to line the borehole and extend into a production zone;
- a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone;
- a valve connected in said string of tubing and being located in the region of said production zone;
- means for varying the size of the flow control aperture within said valve to control the flow of fluids from the casing into the tubing;
- means connected to said valve for generating a signal indicative of the size of the flow control aperture;
- a control unit located at the surface for generating control signals and for monitoring the size of the flow control aperture within said valve and different variable parameter values;
- a control cable extending down said casing and connected from said control unit to said valve for coupling control signals from said control unit to said valve to vary the size of the flow control aperture thereof and to couple said size indicative signals from said signal generating means to said control unit for monitoring thereof;
- a sensor for generating a signal indicative of pressure located in the region of said valve, said sensor being connected to said control cable for receiving a low voltage power supply signal from said control unit and for sending said pressure indicative signal from said sensor to said control unit; and
- a first voltage sensitive switch positioned between said control cable and said sensor for electrically connecting the low voltage power supply signal from said control unit to said sensor and responsive to a relatively higher voltage control signal for varying the size of the flow control aperture of said valve for electrically disconnecting said sensor from said cable to protect the circuitry of said sensor from said higher voltage.
- 40. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 39 which also includes:
- a second voltage sensitive switch positioned between said control cable and said flow control aperture size indicative signal generating means for electrically connecting a low voltage power supply signal from said control unit to said signal generating means and responsive to a relatively higher voltage control signal for varying the size of the flow control aperture of said valve for electrically disconnecting said signal generating means from said cable to protect the circuitry of said signal generating means from said higher voltage.
- 41. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 40 which also includes:
- a third voltage sensitive switch positioned between said control cable and said valve flow control aperture size varying means for electrically disconnecting a low voltage power supply signal from said control unit to avoid electrical drain on the power supply and responsive to a relatively higher voltage control signal for varying the size of the flow control aperture of said valve to electrically connect said valve flow control aperture size varying means to said cable.
- 42. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 41 which:
- said third voltage sensitive switch is also responsive to discontinuance of said relatively higher voltage control signal for electrically disconnecting said valve flow control aperture size varying means from the low voltage power supply signal on said cable.
- 43. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 41 in which:
- said means for varying the size of the flow control aperture within the valve is responsive to a relatively higher voltage control signal pulse of a one polarity for increasing the size of said aperture and responsive of the opposite polarity for decreasing the size of said aperture.
- 44. A system for monitoring and controlling downhole parameters within a petroleum production well comprising:
- a casing extending from a wellhead to line the borehole and extend into a production zone;
- a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone;
- a valve connected in said string of tubing and being located in the region of said production zone;
- means for varying the size of the flow control aperture within said valve to control the flow of fluids from the casing into the tubing;
- means connected to said valve for generating a signal indicative of the size of the flow control aperture;
- a control unit located at the surface for generating control signals and for monitoring the size of the flow control aperture within said valve and different variable parameter values;
- a control cable extending down said casing and connected from said control unit to said valve for coupling control signals from said control unit to said valve to vary the size of the flow control aperture thereof and to couple said size indicative signals from said signal generating means to said control unit for monitoring thereof;
- a sensor for generating a signal indicative of pressure located in the region of said valve, said sensor being connected to said control cable for receiving a low voltage power supply signal from said control unit and for sending said pressure indicative signal from said sensor to said control unit;
- means connected between said flow control aperture size indicative signal generating means and said cable for producing a signal within a first range of frequencies; and
- means connected between said sensor and said cable for producing a signal within a second range of frequencies which excludes frequencies within said first range.
- 45. A system for monitoring and controlling downhole parameters within a petroleum production well comprising:
- a casing extending from a wellhead to line the borehole and extend into a production zone;
- a string of tubing extending along the interior of the casing from the wellhead into the region of said production zone;
- a valve connected in said string of tubing and being located in the region of said production zone;
- means for varying the size of the flow control aperture within said valve to control the flow of fluids from the casing into the tubing;
- means connected to said valve for generating a signal indicative of the size of the flow control aperture;
- a control unit located at the surface for generating control signals and for monitoring the size of the flow control aperture within said valve and different variable parameter values;
- a control cable extending down said casing and connected from said control unit to said valve for coupling control signals from said control unit to said valve to vary the size of the flow control aperture thereof and to couple said size indicative signals from said signal generating means to said control unit for monitoring thereof;
- a plurality of sensors for generating signals indicative of associated parameter values, each of said sensors being connected to said control cable for receiving a low voltage power supply signal from said control unit and for sending a parameter value indicative signal to said control unit;
- an address control switch associated with each one of said plurality of sensors and connected between said sensors and said cable, each of said address control switches having a unique address code upon receipt of which it will connect its associated sensor to said cable for electrical communication with said control unit; and
- an address code generator located within said control unit and connected to said cable for selectively generating control signals containing the address code associated with the address control switch of the particular sensor for the parameter to be monitored by the control unit.
- 46. A system for monitoring and controlling downhole parameters within a petroleum production well as set forth in claim 45 which also includes:
- a voltage sensitive switch positioned between said control cable and each of said sensors for electrically connecting the low voltage power supply signal from said control unit to said sensor and responsive to a relatively higher voltage control signal for varying the size of the flow control aperture of said valve for electrically is connecting said sensor from said cable to protect the circuitry of said sensor from said higher voltage.
BACKGROUND OF THE INVENTION
This application is a continuation-in-part application of U.S. patent application Ser. No. 457,520, filed Dec. 27, 1989, and entitled Flow Control Valve System.
US Referenced Citations (11)
Continuation in Parts (1)
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Number |
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457520 |
Dec 1989 |
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