Claims
- 1. Apparatus for the remote measurement of physical parameters which apparatus comprises sensing means for sensing one or more physical parameters, instrumentation means for interrogating the sensing means and making a measurement, cable means for communicating between the sensing means and the instrumentation means, container means for containing the sensing means and the cable means prior to installation of the sensing means, container holder means for providing a support for the container means at a convenient location, channel means for providing a channel between the container means and a measurement location where the channel is suitable for accepting the cable means and the sensing means, and cable installation means for installing the sensing means and cable means from inside the container means into the channel means and placing the sensing means at the measurement location, the cable installation means comprising means for propelling fluid along the channel means.
- 2. Apparatus according to claim 1 and including container insertion means for inserting the container means into the container holder means so that the channel connection is made.
- 3. Apparatus according to claim 1 and including channel connector means for making a channel connection between the container means and the channel means.
- 4. Apparatus according to claim 1 in which the sensing means is at least one optical fibre.
- 5. Apparatus according to claim 1 in which the cable means is at least one optical fibre cable containing at least one optical fibre waveguide.
- 6. Apparatus according to claim 2 and including channel connector means for making a channel connection between the container means and the channel means, and in which the cable installation means includes cable removal means for removing the sensing means and cable means from inside the channel means back into the container means, the channel connector means includes channel break means for breaking the connection between the container means and the channel means, and the container insertion means includes container removal means for removing the container means from the container holder so that the channel connection is broken.
- 7. Apparatus according to claim 1 in which the instrument means is situation outside the container means, and there is further provided communication means for connecting the cable means inside the container means to the instrumentation means.
- 8. Apparatus according to claim 7 in which the communication means includes communication connector means for making a signal connection between the inside and the outside of the container means, where the signal connection is made when the container means is located in the container holder means and the signal connection is broken when the container means is removed from the container holder.
- 9. Apparatus according to claim 1 in which the instrumentation means comprises an inside instrumentation means situated inside the container means and an outside instrumentation means situated outside the container means, and there is further provided instrumentation communication means for communicating between the inside instrumentation means and the outside instrumentation means.
- 10. Apparatus according to claim 9 in which the instrumentation communication means includes instrumentation communication connector means for making an instrumentation connection between the inside instrumentation means and the outside instrumentation means of the container means, where the instrumentation connection is made when the container means is located in the container holder means and the instrumentation connection is broken when the container means is removed from the container holder.
- 11. Apparatus according to claim 1 in which the means for propelling fluid along the channel means is a hydraulic pump.
- 12. Apparatus according to claim 1 in which the means for propelling fluid along the channel means is a gas cylinder.
- 13. Apparatus for the remote measurement of physical parameters, which apparatus comprises sensing means for sensing one or more physical parameters, instrumentation means for interrogating the sensing means and making a measurement, cable means for communicating between the sensing means and the instrumentation means, container means for containing the sensing means and the cable means prior to installation of the sensing means, container holder means for providing a support for the container means at a convenient location, channel means for providing a channel between the container means and a measurement location where the channel is suitable for accepting the cable means and the sensing means, and cable installation means for installing the sensing means and cable means from inside the container means into the channel means and placing the sensing means at the measurement location, and in which the cable installation means includes strength member means for the cable means, the strength member means comprising a cable with an internal cavity and a longitudinal slit which is operable to allow the cable means to be received in the internal cavity.
- 14. Apparatus according to claim 1 and including cable pay out means for controlling the rate at which the cable means deploys.
- 15. Apparatus according to claim 14 in which the cable pay out means includes a wheel assembly.
- 16. An apparatus for installing a sensor at a measurement location which is accessible by a channel means and at which at least one physical parameter is to be measured, comprising:a sensor for sensing the at least one physical parameter; a cable means in communication with the sensor and communicatively connectable to an instrumentation means; a container means to contain the sensor and the cable means prior to installation of the sensor; and a cable installation means for installing the sensor and the cable means from the container means into the channel means and placing the sensor at the measurement location, the cable installation means comprising means for propelling fluid along the channel means.
- 17. An apparatus according to 16, wherein the sensor comprises a sensing means.
- 18. An apparatus according to claim 16, wherein the sensor comprises an optical fibre sensor.
- 19. An apparatus according to claim 16, wherein the cable means comprises an optical fibre cable comprising an optical fibre waveguide.
- 20. An apparatus according to claim 16, further comprising a channel connector means for making a channel connection between the container means and the channel means.
- 21. An apparatus according to claim 16, wherein the means for propelling fluid along the channel means comprises a power supply means in communication with the container means.
- 22. An apparatus according to claim 16, wherein the sensor comprises a sensor selected from the group consisting of a pressure sensor. a temperature sensor, an acoustic energy sensor, and an electric current sensor.
- 23. An apparatus according to claim 20, wherein the container means is an enclosed container, and wherein the cable installation means further comprises a cable removal means for removing the sensor and the cable means from inside the channel means back into the container means, and wherein the channel connector means includes a channel break means for breaking the connection between the container means and the channel means.
- 24. An apparatus according to claim 23, wherein the container means is configured to be received within a container holder means disposed between the channel means and the channel connector means, and wherein the container means comprises a container insertion means for inserting the container means into the container holder means so that the channel connection is made.
- 25. An apparatus according to claim 24, wherein the container means further comprises a container removal means for removing the container means from the container holder means so that the channel connection is broken.
- 26. An apparatus according to claim 16, wherein the container means comprises a pressure vessel, and wherein the apparatus further comprises a cable dispensing means disposed within the pressure vessel and from which the cable means is pulled out while the sensing means is being installed at the measurement location.
- 27. An apparatus according to claim 26 further comprising a cable pay out means comprising a wheel assembly and a drive shaft, wherein the drive shaft drives the wheel assembly, and wherein the wheel assembly pulls the cable means out of the cable dispensing means.
- 28. An apparatus for the measurement of at least one physical parameter at a remote measurement location which is accessible by a channel means, comprising:a sensor configured to sense the at least one physical parameter; an instrumentation means for interrogating the sensing means and making a measurement of the at least one physical parameter; a cable means in communication with the sensor and the instrumentation means; a container means to contain the sensor and the cable means prior to installation of the sensor at the measurement location; and a cable installation means for installing the sensor and the cable means from the container means into the channel means and placing the sensor at the measurement location the cable installation means comprising means for propelling fluid along the channel means.
- 29. An apparatus according to claim 28, wherein the sensor comprises a sensing means.
- 30. An apparatus according to claim 28, wherein the sensor comprises an optical fibre sensor.
- 31. An apparatus according to claim 28, wherein the sensor comprises a sensor selected from the group consisting of a pressure sensor, a temperature sensor, an acoustic energy sensor, and an electric current sensor.
- 32. An apparatus according to claim 28, wherein the cable means comprises an optical fibre cable comprising an optical fibre waveguide.
- 33. An apparatus according to claim 28, further comprising a channel connector means for making a connection between the container means and the channel means.
- 34. An apparatus according to claim 28, wherein the means for propelling fluid along the channel means comprises a power supply means in communication with the container means.
- 35. An apparatus according to claim 34, wherein the power supply means produces hydraulic power.
- 36. An apparatus according to claim 28, further comprising a container holder means to support the container means.
- 37. An apparatus according to claim 28, further comprising a channel means for providing a channel between the container means and a measurement location, wherein the channel is suitable for accepting the cable means and the sensing means.
- 38. An apparatus according to claim 37, wherein the channel means comprises a safety valve.
- 39. An apparatus according to claim 37, wherein the channel means terminates in a valve allowing fluid communication between the channel means and the measurement location.
- 40. An apparatus according to claim 37, wherein the channel means comprises a closed loop between the container means and the measurement location.
- 41. An apparatus according to claim 40, wherein the channel means is comprises a valve allowing fluid communication between the channel means and the measurement location.
- 42. An apparatus according to claim 28, wherein the container means defines an enclosed volume.
- 43. An apparatus according to claim 42, wherein the instrumentation means is located inside of the enclosed volume defined by the container means.
- 44. An apparatus according to claim 42, wherein the instrumentation means is located outside of the enclosed volume defined by the container means.
- 45. A method for installing a sensor at a measurement location which is accessible by a channel means and at which at least one physical parameter is to be measured with a sensor in communication with a cable means, comprising:placing at least part of the cable means and the sensor in a container means which is in fluid communication with the channel means; propelling fluid along the channel means in the direction of the measurement location to cause fluid forces to install the cable means in the channel means and to install the sensor at the measurement location; and connecting the cable means to an instrumentation means to allow interrogation of the sensor and a measurement to be made of the at least one physical parameter.
- 46. A method for installing a sensor at a measurement location which is accessible by a channel means and at which at least one physical parameter is to be measured with a sensor in communication with a cable means, comprising:placing at least part of the cable means and the sensor in a container means which is in fluid communication with the channel means; propelling fluid along the channel means in the direction of the measurement location to cause fluid forces to install the cable means in the channel means and to install the sensor at the measurement location; and prior to propelling fluid along the channel means, placing the container means in a container holder means which is in fluid communication with the channel means.
- 47. A method in accordance with claim 46, further comprising the step of propelling fluid along the channel means to cause fluid drag to remove the cable means from the channel means and the sensor from the measurement location.
- 48. A method in accordance with claim 47, further comprising the step of removing the container from the container holder means after the cable means has been removed from the channel means and the sensor has been removed from the measurement location.
- 49. A method in accordance with claim 47, wherein the container means is placed in the container bolder means at the wellhead of a subsea oil well.
- 50. A method for installing a sensor at a measurement location which is accessible by a channel means and at which at least one physical parameter is to be measured with a sensor in communication with a cable means, comprising:placing at least part of the cable means and the sensor in a container means which is in fluid communication with the channel means; propelling fluid along the channel means in the direction of the measurement location to cause fluid forces to install the cable means in the channel means and to install the sensor at the measurement location; and using as the channel means an existing chemical injection channel means which is fitted to one of an oil well or a gas well.
- 51. A method for removing a sensor, and a cable means connected to the sensor, from a channel means in which the sensor and the cable means are deployed comprising:propelling fluid along the channel means to cause fluid forces to remove the sensor and the cable means from the channel means; and wherein the sensor, and the cable means connected to the sensor, are removed to a container means in fluid communication with the channel means, and wherein the fluid is propelled in the direction of the container means to cause the sensor and the cable means to be removed from the channel means to the container means.
- 52. The method of claim 51, wherein the fluid is propelled in a direction from the sensor along the cable means towards the container means.
- 53. The method of claim 51, wherein the channel means comprises a loop having a first portion in fluid communication with the container means and containing the cable means and the sensor, and a second portion in fluid communication with the container means, and wherein the fluid is propelled in a direction from the first portion of the channel means towards the second portion of the channel means.
- 54. The method of claim 51, wherein the channel means comprises a loop having a first portion in fluid communication with the container means and containing the cable means and the sensor, and a second portion in fluid communication with the container means, and wherein the fluid is propelled in a direction from the second portion of the channel means towards the first portion of the channel means.
- 55. A method for sensing at least one physical parameter existing at one or more remote measurement locations which are accessible along a cavity, comprising:providing at least one sensor supported upon a cable, the sensor being capable of sensing at least one physical parameter; passing at least portions of the cable along a channel; propelling fluid along the channel to force at least portions of the cable and at least one sensor along the channel; and installing the at least one sensor at one or more desired remote measurement locations; sensing sensor information from the at least one sensor.
- 56. A method according to claim 55 and farther defined be communicating sensor information along at least one optical fiber forming at least part of the cable.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9324334 |
Nov 1993 |
GB |
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CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 08/318,704 filed under 35 U.S.C. 371 on Jan. 17, 1995 from PCT Application No. PCT/GB93/00907 filed Apr. 30, 1993, now U.S. Pat. No. 5,582,064, and hereby incorporated by reference, which in turn claims priority to United Kingdom Patent application number GB/9209434, filed May 1, 1992, now abandoned.
US Referenced Citations (24)
Foreign Referenced Citations (3)
Number |
Date |
Country |
947104 |
Jan 1964 |
GB |
2284257B |
Jun 1998 |
GB |
3-249705 |
Nov 1991 |
JP |
Non-Patent Literature Citations (2)
Entry |
M. Farhadiroushan, D.A. Svendsen, P.B. Withers, E.L.E. Kluth; Downhole Optical Fibre Pressure and Temperature Sensor System; 1992; pp. 77. |
E.L.E. Kluth, M. Farhadiroushan, D.A. Svendsen, P.W. Withers, G. Beresford; Fiber Optics, Hydraulics Sense Downhole Pressure and Temperature; Jun. 1993; pp. 21-24. |
Divisions (1)
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08/340023 |
Nov 1994 |
US |
Child |
09/183327 |
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US |
Continuation in Parts (1)
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08/318704 |
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Child |
08/340023 |
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Reissues (1)
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08/340023 |
Nov 1994 |
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09/183327 |
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US |