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Negative pressure well cementing system and control method thereof

A negative pressure cementing and pressure technology, which is used in earth-moving drilling, wellbore/well components, sealing/packing, etc. Cementing problems and the effect of improving cementing quality

Active Publication Date: 2010-06-02
北京德美高科科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, if there is a leakage zone 14 or a pressure-sensitive formation in the open hole section 13, it is difficult for the cement slurry 16 to flow back to the liner hanger 2. The surface should be at the position of the sealing device 5, but after the well leakage occurs, since the formation pressure P of the lost zone 14 is lower than the pressure generated by the mud column in the entire wellbore, the static liquid level of the mud in the wellbore should be lower than the position of the sealing device 5 , its height from the ground is H1, its distance from the bottom of the well is H2, and the false high mud density is R1, then P=R1*H2, in this case cementing, the cement slurry 16 is suspended from the lost zone 14 to the liner Difficulty will be encountered when device 2 returns
[0006] like figure 2 As shown, it is a schematic diagram of the cement slurry that cannot be returned to the ideal height in the prior art when the well is lost. If the cement continues to go up, the static liquid level of the mud in the wellbore must rise. If the dynamic liquid level of the mud in the wellbore rises to the height H3 from the ground during the cement slurry injection process, the distance from it to the bottom of the well is H4. Since H3 is smaller than H1, H4 is larger than H2, and the formation pressure of the lost zone 14 is P=R1*H2, obviously P

Method used

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  • Negative pressure well cementing system and control method thereof
  • Negative pressure well cementing system and control method thereof
  • Negative pressure well cementing system and control method thereof

Examples

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Effect test

Embodiment 1

[0041] image 3 It is a schematic diagram of the negative pressure cementing system of the first embodiment of the present invention. The negative pressure cementing system of the present invention includes: drill pipe 1, liner hanger 2, liner 3, pouring device 4, sealing device 5, Sonar depth sounder 6, fluid flow meter 7, gas flow meter and pressure sensor 8, pressure relief valve 9, gas compression device 10 and computer 11, drill pipe 1, liner hanger 2 and liner 3 are screwed in sequence , the filling device 4 is connected with the drill pipe 1, the sonar depth sounder 6 is placed on the ground near the wellhead, the fluid flow meter 7 is installed on the pipeline between the filling device 4 and the drill pipe 1, the pressure relief valve 9, The gas compression device 10 is connected to the gas flow meter and the pressure sensor 8 in sequence through pipelines, the gas flow meter and the pressure sensor 8 are connected to the sealing device 5 through the pipeline, and the...

Embodiment 2

[0053] Embodiment 2 is basically the same as Embodiment 1, except that the filling device 4 is connected with the drill pipe 1, and the gas compression device 10 is connected with the sealing device 5. The details are as follows Figure 8 As shown, a negative pressure cementing system of the present invention includes: drill pipe 1, liner hanger 2, liner 3, pouring device 4, well sealing device 5, sonar sounder 6, fluid flow rate Meter 7, gas flow meter and pressure sensor 8, pressure relief valve 9, gas compression device 10 and computer 11, drill pipe 1, liner hanger 2 and liner 3 are connected in sequence, and filling device 4 is connected to the sealing device through the pipeline 5 are connected, the sonar sounder 6 is placed on the ground near the well, the fluid flow meter 7 is installed on the pipeline between the injection device 4 and the well sealing device 5, the pressure relief valve 9, the gas compression device 10, the gas flow rate Meter and pressure sensor 8 a...

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Abstract

The invention discloses a negative pressure cementing system and the corresponding control method, which comprises a drill rod, a liner suspension, a liner, a filling device and a well-sealing device;wherein the drill rod, the liner suspension and the liner are connected in sequence; the filling device is linked to the drill rod; the drill rod also comprises a sonar sounder, a fluid flow meter, agas flow meter and a pressure transducer, a pressure relief valve, a gas compression device and a computer; the sonar sounder is placed on the ground near the well opening; the fluid flow meter is arranged on the pipeline between the filling device and the drill rod; the pressure relief valve, the gas compression device, the gas flow meter and the pressure transducer are connected in sequence through pipelines; the gas flow meter and the pressure transducer are connected in sequence with the well-sealing device through pipelines; the filling device, the fluid flow meter, the sonar sounder, the gas flow meter and the pressure transducer, the pressure relief valve and the gas compression device are respectively connected with the computer through cables. The invention effectively fulfills cementing operation in case of leakage, thereby improving cementing quality and solving the cementing problem of leakage.

Description

technical field [0001] The invention relates to a negative pressure well cementing system for petroleum drilling engineering, in particular to a negative pressure well cementing system and a control method thereof. Background technique [0002] Well cementing is a very important process in petroleum drilling engineering. Its main method is to put the casing (a special steel pipe) down the well, pump the cement slurry from the casing, and the cement slurry from the gap between the outside of the casing and the well wall. After returning, the cement slurry stays in this annular gap and solidifies into cement stone, which fixes the unstable well wall or separates the fluid (oil, gas and water) in the deep formation, which is convenient for layered production during oil production. [0003] However, due to the inhomogeneity of formation pressure at different depths, lost circulation is very easy to occur during drilling. After lost circulation, it is difficult for the cement slu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E21B33/13
Inventor 余代美
Owner 北京德美高科科技股份有限公司