Claims
- 1. An automatically actuated regulation system for gas and other fluids flowing in a pipeline comprising:
a microprocessor configured to control said regulation system; a flow control unit coupled to said microprocessor, said flow control unit configured to regulate the flow through said pipeline when activated; a vibration sensor coupled to said microprocessor, said sensor configured to determine seismic activity of the earth in the vicinity of said system, and generate a vibration indication signal corresponding to the amplitude of said seismic activity; a mechanical gas flow meter configured to provide a mechanical indication of the measure of gas flow through said pipeline; a conversion means converting said mechanical indication to an electrical output signal, said means coupled to said microprocessor; a trigger unit, said trigger unit coupled to said flow control unit and configured to activate said flow control unit; and said trigger unit activating said flow control unit when
said vibration indication signal is larger than a first predetermined threshold value, and said measure of flow signal is larger than a second threshold value.
- 2. The system in accordance with claim 1, wherein said automatically actuated regulation system for gas and other fluids flowing in a pipeline further comprises a modem coupled to said microprocessor, said modem configured to transmit and receive data over a communication line.
- 3. The system in accordance with claim 1, wherein said mechanical flow meter is a diaphragm-type utility gas meter having a half-foot dial that rotates at an angular velocity that is relative to said rate of gas flow through said pipeline.
- 4. The system in accordance with claim 3, wherein said means for converting said mechanical output signal to an electrical output signal is a pulser mechanism comprising:
a cam that is configured so that said half-foot dial rotates said cam at an angular velocity that is relative to the angular velocity of said half-foot dial, a reed switch having a circuit that can be positioned in an opened position or a closed position, biased in said opened position, said reed switch configured so that said cam is capable of causing said circuit to be positioned in a closed position.
- 5. The system in accordance with claim 4, wherein said cam is configured so that it places said reed switch in said closed position each time said half-foot dial rotates thirty-six degrees.
- 6. The system in accordance with claim 1, wherein said second threshold value is the average value of said flow signal over a predetermined time period.
- 7. The system in accordance with claim 1, wherein said flow control unit is a spring-loaded valve.
- 8. The system in accordance with claim 7, wherein said trigger unit is a solenoid having a solenoid plunger.
- 9. The system in accordance with claim 1, wherein said system is equipped to provide a status update through a group of illuminated indicators.
- 10. The system in accordance with claim 9, wherein said group of illuminated indicators indicate presence of said vibration indication signal, said flow signal, and a rupture of said pipeline.
- 11. The system in accordance with claim 1, wherein said system is equipped to provide a status update through an audible alarm.
- 12. The system in accordance with claim 11, wherein said audible alarm indicates presence of a rupture in said pipeline or the disruption of said flow signal from said gas flow meter to said microprocessor.
- 13. The system in accordance with claim 1, wherein said system is configured to receive a plurality of mechanical inputs.
- 14. The system in accordance with claim 13, wherein said plurality of mechanical inputs result in activation of said flow control unit and reset of parameters stored by said microprocessor.
- 15. The system in accordance with claim 1, wherein said system is powered by an uninterruptable power supply comprising an AC power supply and a back-up battery supply, said back-up battery providing power when said AC power supply fails.
- 16. The system in accordance with claim 1, further comprising a housing for containing said microprocessor, wherein said flow control unit couples said housing to said pipeline.
- 17. The system in accordance with claim 16, wherein said vibration sensor is located remotely from said housing.
- 18. The system in accordance with claim 8, wherein said trigger unit comprises:
a release arm having one hinged end and one free end, wherein said free end is retained by said solenoid plunger so as to bias said flow control unit in a closed position.
- 26. An automatically actuated regulation system for gas and other fluids flowing in a pipeline comprising:
a microprocessor configured to control said regulation system; a memory unit coupled to said microprocessor, said memory unit configured to store data; a flow control unit coupled to said microprocessor, said flow control unit configured to regulate the flow through said pipeline when activated; a vibration sensor coupled to said microprocessor, said sensor configured to determine seismic activity of the earth in the vicinity of said system, and generate a vibration indication signal corresponding to the amplitude of said seismic activity; a mechanical gas flow meter configured to provide a mechanical indication of the measure of gas flow through said pipeline coupled to a means for converting said mechanical a conversion means converting said mechanical indication to an electrical output signal, said means coupled to said microprocessor; a trigger unit, said trigger unit coupled to said flow control unit and configured to activate said flow control unit; a modem coupled to said microprocessor, said modem configured to transmit and receive data over a communication line; and said trigger unit activating said flow control unit when
said vibration indication signal is larger than a first predetermined threshold value, and said measure of flow signal is larger than a second threshold value.
- 27. The system according to claim 26, wherein said data said modem is capable of transmitting is an indication specifying an identity of the system, a flow history stored by said memory unit, and a battery voltage value.
- 28. A central server configured to communicate with an automatically actuated regulation system for gas and other fluids flowing through a pipeline, said regulation system comprising:
a microprocessor configured to control said regulation system; a flow control unit coupled to said microprocessor, said flow control unit configured to regulate the flow through said pipeline when activated; a vibration sensor coupled to said microprocessor, said sensor configured to determine seismic activity of the earth in the vicinity of said system, and generate a vibration indication signal corresponding to the amplitude of said seismic activity; a mechanical gas flow meter configured to provide a mechanical indication of the measure of gas flow through said pipeline coupled to a means for converting said mechanical a conversion means converting said mechanical indication to an electrical output signal, said means coupled to said microprocessor; a trigger unit, said trigger unit coupled to said flow control unit and configured to activate said flow control unit; a modem coupled to said microprocessor, said modem configured to transmit and receive data from said server over a communication line; said trigger unit activating said flow control unit when
said vibration indication signal is larger than a first predetermined threshold value, and said measure of flow signal is larger than a second threshold value.
- 29. The central server according to claim 28, wherein said central server is configured to store data in a database, said data consisting of predetermined variables transmitted by said modem to said server.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a divisional application of and claims priority to U.S. patent application Ser. No. 09/410,564, filed Oct. 1, 1999 and presently allowed, which is a continuation-in-part of U.S. Pat. No. 5,960,807, filed May 5, 1998.
Divisions (1)
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Number |
Date |
Country |
| Parent |
09410564 |
Oct 1999 |
US |
| Child |
10197234 |
Jul 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
09072896 |
May 1998 |
US |
| Child |
09410564 |
Oct 1999 |
US |