Mixed drilling fluid online density detection structure

A technology for detecting structure and density, which is used in earth-moving drilling, flushing wells, wellbore/well components, etc. It can solve the problems of wasting drilling fluid materials, unable to sense pressure correctly, and unable to detect density, etc., and achieve savings Density detection time, guaranteed sealing performance, and the effect of saving limited space

Active Publication Date: 2015-11-04
CHONGQING UNIVERSITY OF SCIENCE AND TECHNOLOGY
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AI Technical Summary

Problems solved by technology

[0003] The density detection device currently used is a general density meter installed in the drilling fluid tank to detect the density. This detection method needs to wait until the mixed drilling fluid in the drilling fluid tank is immersed in the sensor of the density meter to detect the density, which is lagging behind. To adjust the density once, the residual drilling fluid in the drilling fluid tank must be emptied to detect the adjusted density, which wastes drilling fluid materials. When manually testing the density, it is necessary to take samples from the drilling fluid tank. The action is dangerous and does not meet the requirements of safe operation.
In addition, the original density meter installation scheme is relatively cumbersome. It is necessary to install the original

Method used

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  • Mixed drilling fluid online density detection structure
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  • Mixed drilling fluid online density detection structure

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Embodiment Construction

[0026] see Figure 1a to Figure 1c , is a preferred embodiment of the mixed drilling fluid online density detection structure, including an inverted L-shaped main pipeline 1 of the mixed drilling fluid. The main pipeline 1 includes a horizontal main pipeline 1, a vertical main pipeline 1, and also includes A U-shaped density detection pipeline 2 and a differential pressure density meter 3, the density detection pipeline 2 includes a first vertical pipe, a second vertical pipe and a connecting pipe connected between the lower ends of the first vertical pipe and the second vertical pipe , the length of the first vertical pipe is greater than the length of the second vertical pipe, the upper end of the first vertical pipe communicates with the horizontal main pipe 1 through the connecting pipe, and the second vertical pipe communicates with the vertical main pipe 1 through the connecting pipe , forming a one-piece structure. The differential pressure density meter 3 is installed...

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Abstract

The invention discloses a mixed drilling fluid online density detection structure which comprises an inverted-L-shaped main mixed drilling fluid pipe. The main pipe comprises a horizontal main pipe and a vertical main pipe and further comprises a U-shaped density detection pipe and a differential pressure type density gauge. The density detection pipe comprises a first vertical pipe, a second vertical pipe and a connecting pipe connected between the first vertical pipe and the second vertical pipe, wherein the first vertical pipe is greater than the second vertical pipe in length, the upper end of the first vertical pipe is communicated with the horizontal main pipe, the second vertical pipe is communicated with the vertical main pipe, and the differential pressure type density gauge is installed on the density detection pipe. The mixed drilling fluid online density detection structure is simple, and the density of the mixed drilling fluid forwards flowing in the main pipe can be immediately and accurately detected.

Description

technical field [0001] The invention belongs to the technical field of drilling equipment and relates to a structure for detecting the online density of mixed drilling fluid. Background technique [0002] Compared with land and shallow sea drilling, the environment of deep sea drilling is more complicated, and the technology adopted is different from that of land. In many areas, there are narrow drilling fluid density windows, shallow gas, and shallow water. It is difficult to control the formation pressure, and it is very easy to It will cause overflow and other downhole complex situations, and in severe cases, it will lead to blowout and well leakage accidents, which will cause great difficulties to drilling. In order to control hazards such as shallow water flow, it is necessary to use a dynamic well killing system. Slurry device, which automatically adjusts to the required drilling fluid density, directly supplies the mud pump to continuously pump downhole into the well...

Claims

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Application Information

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IPC IPC(8): E21B21/00G01N9/26
Inventor 雷宗明赵士林王冬平黄靖富蔡文涛
Owner CHONGQING UNIVERSITY OF SCIENCE AND TECHNOLOGY
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