Downhole inspection system
First Claim
1. A system for inspecting conditions in and around a borehole, comprising:
- a length of conduit extending from the surface through the borehole down into the zone where inspection is to occur;
a sensor mounted on the lower end of said conduit for inspecting conditions within the borehole; and
means for pumping from the surface down the conduit into an inspection region adjacent the sensor, a fluid which provides a medium conducive to accurate inspection of conditions within the borehole by the sensor.
2 Assignments
0 Petitions
Accused Products
Abstract
A system and methods for the inspection of a well borehole and the formation around said borehole. The system includes a coiled tubing unit for injecting flexible coiled tubing into a wellbore through a wellhead, a pump and valves for control of injection of fluids such as water, nitrogen, light-hydrocarbons, natural gas, and carbon dioxide through the coiled tubing into the wellbore, and a sensor for visually inspecting and/or acoustically examining the wellbore and a region around the sensor within a slug of fluid injected into the wellbore from the coiled tubing. The method includes the steps of injecting coiled tubing having an inspection sensor into a wellbore to a selected location, injecting an optically transparent or acoustically homogenous fluid into the wellbore through the coiled tubing to form a slug of such fluid around the sensor, and transmitting signals from the sensor representative of well conditions to the surface. The method may be practiced to inspect only the region around the sensor at a selected depth in the well or may be continuously practiced to examine the length of the wellbore by producing the well and retrieving the coiled tubing and sensor at a controlled rate synchronized with the rate of well production.
64 Citations
41 Claims
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1. A system for inspecting conditions in and around a borehole, comprising:
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a length of conduit extending from the surface through the borehole down into the zone where inspection is to occur; a sensor mounted on the lower end of said conduit for inspecting conditions within the borehole; and means for pumping from the surface down the conduit into an inspection region adjacent the sensor, a fluid which provides a medium conducive to accurate inspection of conditions within the borehole by the sensor. - View Dependent Claims (2, 3, 4, 6, 7, 8)
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5. A system for inspecting conditions in and around a borehole, comprising:
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a length of conduit extending from the surface through the borehole down into the zone where inspection is to occur; an acoustic transmitter and receiver mounted near the lower end of said conduit for acoustically inspecting conditions within and around the borehole; and means for pumping from the surface down the conduit into an inspection region adjacent the sensor, an acoustically homogenous fluid which provides a medium conducive to accurate inspection of conditions within the borehole by said sensor.
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9. A method for inspecting the interior of a borehole, comprising:
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providing a length of conduit extending from the surface adjacent the borehole down in the borehole into the zone where inspection is to occur; providing a sensor mounted on the lower end of said conduit for inspecting conditions within the borehole; and pumping from the surface down the conduit and out the lower end thereof into an inspection region adjacent the sensor, a fluid which provides a medium conducive to accurate inspection of conditions within the borehole by the sensor. - View Dependent Claims (10, 11, 12, 14, 15, 16)
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13. A method for inspecting the interior of a borehole comprising;
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providing a length of conduit extending from the surface adjacent the borehole down in the borehole into the zone where inspection is to occur; providing an acoustic transmitter and receiver mounted adjacent the lower end of said conduit for acoustically inspecting conditions within and around the borehole; and pumping from the surface down the conduit and out the lower end thereof into an inspection region adjacent the sensor, an acoustically homogenous fluid which provides a medium conducive to accurate inspection of conditions within the borehole by said acoustic sensor.
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17. A system for inspecting the interior of a borehole, comprising:
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a coiled tubing unit including a reel having a length of tubing wound thereon and an injector for inserting the tubing on the reel down into a borehole to a location at which inspection is to occur; an inspection sensor mounted to the end of the coiled tubing to be inserted into the borehole; a pump connected to the end of the coiled tubing located at the surface for supplying pressurized optically transparent and/or acoustically homogenous fluid to said coiled tubing; a fluid injection nozzle means mounted to the lower end of the coiled tubing and in fluid communication with the interior of the tubing for allowing a flow of fluid from within the tubing out into the borehole; and means for controlling the operation of said fluid injection nozzle to allow the flow of a selected quantity of optically clear and/or acoustically homogenous fluid from within the tubing into the borehole to produce a clear fluid inspection zone within the borehole in the region of the sensor and enable said sensor to accurately inspect physical conditions within the borehole. - View Dependent Claims (18, 19, 20, 21, 22, 23, 24, 25, 26, 27)
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28. A method for inspecting the interior of a borehole comprising:
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providing a coiled tubing unit including a reel having a length of tubing wound thereon, an inspection sensor mounted to the unwound end of the coiled tubing, and a fluid injection nozzle mounted to the unwound end of the coiled tubing which is in fluid communication with the interior of the tubing for allowing the flow of fluid from within the tubing; inserting the coiled tubing down into the borehole to a location at which inspection is to occur; pumping an optically transparent and/or acoustically homogenous fluid into the coiled tubing from the surface; and controlling the operation of the fluid injection nozzle to allow the flow of a selected quantity of optically clear and/or acoustically homogenous fluid from within the tubing into the borehole to produce a clear fluid inspection zone within the borehole in the region of the inspection sensor and enable the sensor to accurately inspect physical conditions within the borehole. - View Dependent Claims (29, 30, 31, 32, 33, 34)
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35. A method for inspecting the interior of a borehole comprising:
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providing a length of conduit extending from the surface adjacent the borehole down in the borehole into the zone where inspection is to occur; providing a sensor mounted adjacent the lower end of said conduit for inspecting conditions within the borehole; pumping from the surface down the conduit and out the lower end thereof into an inspection region adjacent the sensor, a fluid which provides a medium conducive to accurate inspection of conditions within the borehole by the sensor; producing formation fluids through said borehole at a controlled rate; retrieving said conduit with said sensor from a pre-selected depth in said borehole to the surface at a controlled rate; and controlling the rate of production, the rate of retrieving said conduit to the surface, and the rate of pumping said fluid into said borehole adjacent said sensor to maintain a fluid slug around said sensor as said conduit with said sensor is retrieved to the surface for continuous inspection of said borehole from said pre-selected depth to the surface. - View Dependent Claims (36, 37)
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38. A method for inspecting conditions in and around a borehole of a producing well comprising:
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inserting coiled tubing having an inspection sensor mounted thereon through a wellhead downwardly into the borehole of said well to a pre-selected location in said borehole at which said inspection is to begin; pumping an optically transparent and/or acoustically homogenous fluid into said coiled tubing from the surface to said initial inspection location in said wellbore to form a slug of said fluid around said sensor; producing well fluids into said wellbore and upwardly in said wellbore at a controlled rate through said wellbore to the surface end of said wellbore; retrieving said coiled tubing with said sensor at a rate corresponding with the rate of well fluid production in said wellbore; and adjusting said well fluid production rate and retrieval rate of said coiled tubing to maintain said sensor within said slug of said fluid as said slug of fluid moves from said selected depth in said well to the surface whereby said sensor can continuously inspect said wellbore from said pre-selected depth in said wellbore to said wellhead. - View Dependent Claims (39, 40, 41)
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Specification