Claims
- 1. A seismic data acquisition unit, comprising:
(a) a circuitry module enclosing circuitry for processing seismic signals and for providing communication with at least one external device; (b) a connector housing matable with said circuitry module, said connector housing receiving at least one seismic data carrier adapted to carry seismic signals; and (c) a single interface between said circuitry and said at least one seismic data carrier, said interface including a first connector coupled to said circuitry and a second connector coupled to said at least one seismic data carrier, said single interface establishing communication between said circuitry and said at least one seismic data carrier via said first and second connectors.
- 2. The seismic data acquisition unit according to claim 1 wherein said connector housing is formed as a unitary member.
- 3. The seismic data acquisition unit according to claim 1 wherein said connector housing includes a take-out for providing a connection to a transducer, said take-out being coupled to said second connector, whereby a connection is provided between said transducer and said circuitry via said first and second connectors.
- 4. The seismic data acquisition unit according to claim 1 wherein a seal is provided for one of said circuitry module and said connector housing.
- 5. The seismic acquisition unit according to claim 1 wherein said at least one seismic data carrier is disposed in a cable having a third connector at an end thereof for connecting said seismic data acquisition unit to one of (a) an additional seismic data acquisition unit and (b) a control unit.
- 6. The seismic acquisition unit according to claim 1 said single interface establishes communication by one of (i) electrical signals, (ii) optical signals, (iii) radio waves, and (iv) electromagnetic waves.
- 7. The seismic acquisition unit according to claim 1 further comprising an anchor adapted to transfer a tensile force applied from a stress member associated with said at least one seismic data carrier to said connector housing.
- 8. The seismic data acquisition unit according to claim 1 wherein said circuitry further comprises:
(i) an analog-to-digital converter to convert seismic signals received from a transducer to digital signals; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 9. The seismic data acquisition unit according to claim 1 wherein said circuitry further comprises:
(i) a digital interface adapted to receive digital signals received from a transducer line; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 10. The seismic acquisition unit according to claim 1 wherein at least one seismic data carrier includes a plurality of seismic data carriers coupled to said second connector.
- 11. The seismic data acquisition unit according to claim 10 further comprising a plurality of transducer take-outs, one said take-out being at said connector housing and one said take-out provided for at each said seismic data carrier.
- 12. The seismic data acquisition unit according to claim 11, wherein at least one take-out is provided at one of (i) a top surface of said connector housing, and (ii) a side surface of said connector housing.
- 13. The seismic data acquisition unit according to claim 1 wherein said first and second connector are mated to provide the only connection between said circuitry and all devices external to the seismic data acquisition unit.
- 14. The seismic data acquisition unit according to claim 1 wherein said connector housing includes a take-out, said take-out connector being in communication with said second connector and a transducer, said take-out being one of (i) disposed in a cavity formed in said connector housing, and (ii) integrally overmolded with said connector housing.
- 15. The seismic data acquisition unit according to claim 1 wherein said first connector is fixed within said circuitry module and said second connector is fixed within said connector housing.
- 16. An apparatus for providing a connection between electrical circuitry configured to process seismic data and at least one seismic data carrier, comprising:
a connector housing adapted to receive the at least one seismic data carrier; one plug fixed on said connector housing, said one plug being electrically coupled to the at least one seismic data carrier; an electrical circuitry module associated with said connector housing; and one receptacle fixed on said electrical circuitry module, said one receptacle being electrically coupled to the electrical circuitry, said one receptacle being matable with said one plug, the at least one seismic data carrier being in communication with the electrical circuitry only when said one plug and said one receptacle are mated.
- 17. The apparatus of claim 16 wherein said connector housing removably mounts on said electrical circuitry module; and wherein said seal for said electrical circuitry module substantially prevents contaminants from entering said electrical circuitry module interior space regardless of whether said connector housing is mounted on said electrical circuitry module.
- 18. The apparatus of claim 16 further comprising a seal disposed at a connection between the at least one seismic data carrier and said connector housing, said seal being one of (a) gland seal; and (b) an overmold.
- 19. The apparatus of claim 16 wherein said connector housing and said electrical circuitry module are each provided with a seal for providing a substantially contaminant-free environment.
- 20. The apparatus of claim 16 wherein said connector housing further comprises a take-out; and wherein said one plug and said one receptacle cooperate to provide an electrical connection between the electrical circuitry and said take-out.
- 21. The apparatus of claim 16 wherein said connector housing further comprises a support engaging the at least one seismic data carrier, said support adapted to transfer tension from the at least one seismic data carrier into said connector housing without loading said plug and said receptacle.
- 22. The apparatus of claim 16 wherein said connector housing and said module have an external configuration when mated, said external configurations allowing said connector housing and said module to one of (i) lie substantially flat on an arcuate surface of a drum adapted to store seismic cable having the at least one data carrier, and (ii) be manipulated by a mechanized cable deployment and retrieval system.
- 23. The apparatus of claim 16 wherein said circuitry further comprises:
(i) an analog-to-digital converter to convert seismic signals received from a transducer to digital signals; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 24. The apparatus of claim 16 wherein said circuitry further comprises:
(i) a digital interface adapted to receive digital signals received from a transducer line; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 25. A data acquisition unit, comprising:
a connector housing having a first and second body, each of said bodies including a plug disposed therein, said bodies substantially sealing a portion of their respective plugs; an electrical circuitry module configured to mate with said connector housing, said electrical circuitry module including an interior space, two receptacles, and electrical circuitry, said receptacles being complementary to said plugs, said interior space being adapted to receive electrical circuitry, said receptacles being in electrical communication with said electrical circuitry; and a seal associated with said electrical circuitry module, said seal substantially preventing contaminants from entering said electrical circuitry module interior space.
- 26. The data acquisition unit of claim 25 further comprising a lock associated with each connector housing body, said locks adapted to selectively mate said connector housing bodies with said electrical circuitry module.
- 27. The data acquisition unit of claim 25 wherein each of said locks include a finger having a first state wherein said finger engages said electrical circuitry module and a second state wherein said finger releases said electrical circuitry module, said finger moving between said first and second states when said lock is actuated.
- 28. The data acquisition unit of claim 25 further comprising a take-out sealingly disposed on said electrical circuitry module, said take-out being in electrical communication with said electrical circuitry.
- 29. The data acquisition unit of claim 25 wherein said circuitry further comprises:
(i) an analog-to-digital converter to convert seismic signals received from a transducer to digital signals; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 30. The data acquisition unit of claim 25 wherein said circuitry further comprises:
(i) a digital interface adapted to receive digital signals received from a transducer line; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 31. A method for establishing a connection between at least one seismic data carrier and electrical circuitry configured to process seismic data, comprising:
providing one interface associated with the electrical circuitry; and providing communication between the at least one seismic data carrier and the electrical circuitry through only the one interface.
- 32. The method of claim 31 further comprising preventing contaminants from contacting one of (i) the electrical circuitry, and (ii) wiring associated with the at least one seismic data carrier at the second interface.
- 33. The method of claim 31 wherein the interface uses one of (i) electrical signals, (ii) optical signals, (iii) radio waves, and (iv) electromagnetic waves.
- 34. The method of claim 31 further comprising coupling a take-out for a transducer to the one interface.
- 35. The method of claim 31 further comprising transferring a portion of a tractive force applied by the at least one seismic data carrier to a connector housing enclosing at least a portion of the one interface without substantially loading the one interface.
- 36. The method of claim 31 further comprising:
(i) converting the analog signals from a transducer to a digital signal with the electric circuitry; (iii) processing the digital signals; and (iii) transferring the processed signals to a two-way telemetry link.
- 37. The method of claim 31 wherein said circuitry further comprises:
(i) receiving digital signals from a transducer; (ii) processing the digital signals; and (iii) transferring the processed signals to a two-way telemetry link.
- 38. A process for performing a seismic survey, comprising:
connecting at least two seismic cables having at least one seismic data carrier with a connector housing to form a cable string; and spooling the cable string onto a storage container.
- 39. The process of claim 38 further comprising mating an electrical circuitry module to the connector housing.
- 40. The process of claim 38 further comprising deploying the cable string using a mechanized deployment and retrieval system.
- 41. The process of claim 38 wherein the connecting step includes providing a single electrical interface associated with electrical circuitry configured to process seismic signal data; and consolidating the at least one data carrier associated with the seismic cables at a second interface complementary to the single electrical interface.
- 42. The process of claim 38 further comprising preventing contaminants from contacting either the electrical circuitry or the wiring associated with the cable at the second interface.
- 43. The process of claim 38 further comprising consolidating the wiring associated with a take-out associated with a transducer at the second interface.
- 44. The process of claim 38 further comprising transferring a portion of a tractive force applied to the cable to a connector housing without loading the first and second interfaces.
- 45. A seismic survey system, comprising:
(a) a data collection facility for collecting and processing seismic data; (b) a plurality of transducers adapted to detect acoustical energy and transmit seismic data signals in response thereto; (c) a plurality of seismic data acquisition units, each said seismic data acquisition unit being configured to receive said seismic data signals from a predefined set of said transducers, to process at least a portion of said seismic data signals, and to transmit at least a portion of said seismic signals to one of the data collection facility and an intermediate external device, each said seismic data acquisition unit including:
(i) a circuitry module enclosing circuitry for processing seismic signals and for providing communication with at least one external device; (ii) a connector housing matable with said circuitry module, said connector housing receiving at least one seismic data carrier adapted to carry seismic signals; and (iii) a single interface between said circuitry and said at least one seismic data carrier, said interface including a first connector coupled to said circuitry and a second connector coupled to said at least one seismic data carrier, said single interface establishing communication between said circuitry and said at least one seismic data carrier via said first and second connectors; and (d) a seismic data carrier network carrying said seismic data from said predefined set of said transducers to said seismic data acquisition units and from said seismic data acquisition units to said data collection facility.
- 46. A seismic data acquisition unit of claim 45 wherein said circuitry further comprises:
(i) an analog-to-digital converter to convert seismic signals received from a transducer to digital signals; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
- 47. A seismic data acquisition unit of claim 45 wherein said circuitry further comprises:
(i) a digital interface adapted to receive digital signals received from a transducer line; (ii) a two-way telemetry link; and (iii) a processor to process the digital signals and to transfer the processed signals to the two-way telemetry link.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application takes priority from Provisional U.S. Patent Applications Serial Nos. 60/305,737 and 60/316,456, filed on Jul. 16, 2001 and Aug. 31, 2001, respectively.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60305737 |
Jul 2001 |
US |
|
60316456 |
Aug 2001 |
US |