Small-bore bidirectional two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure underground pipeline

A two-way, two-dimensional, self-adaptive technology, applied in the direction of machine/structural component testing, measuring devices, instruments, etc., can solve problems such as inability to adapt to downhole oil and gas pipeline detection, and achieve the effect of increasing wear resistance

Active Publication Date: 2017-05-31
BEIJING HUAHANG RADIO MEASUREMENT & RES INST
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Problems solved by technology

[0003] The invention provides a small-diameter two-way two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure downhole pipelines, aiming to solve the problem that the existing equipment cannot adapt to the detection of downhole oil and gas pipelines under high-temperature and high-pressure environments

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  • Small-bore bidirectional two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure underground pipeline
  • Small-bore bidirectional two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure underground pipeline
  • Small-bore bidirectional two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure underground pipeline

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[0049] The present invention will be described in detail below in conjunction with the accompanying drawings. Wherein, the accompanying drawings constitute a part of the present application, and together with the embodiments of the present invention, are used to explain the principles of the present invention.

[0050] Such as Figure 1 to Figure 7 As shown, a small-diameter two-way two-dimensional floating adaptive mechanism for high-temperature and high-pressure downhole pipelines, the adaptive mechanism includes: a central frame 1, a detection arm assembly 2, a sensor seat 3, and a displacement sensor 4;

[0051] The central frame 1 is hollow inside, with flanges at both ends and a columnar polyhedron in the middle, and the two ends are symmetrical. There are 18 flange stepped holes 13 and 8 flanges evenly distributed on the flange. light hole 14;

[0052] Both ends of the central frame 1 are provided with bosses 15, and the side walls of the bosses 15 are provided with s...

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Abstract

The invention provides a small-bore bidirectional two-dimensional floating self-adaptive mechanism for a high-temperature and high-pressure underground pipeline. The small-bore bidirectional two-dimensional floating self-adaptive mechanism is characterized in that detection arm components are mounted around a center framework of the self-adaptive mechanism, two sensor seats are mounted at two ends of the center framework respectively, and displacement sensors are evenly mounted around each sensor seat; the detection arm components are mounted on the center framework and are adaptive to the inner diameter changes of a measured pipeline to allow probe modules to constantly fit the inner wall of the pipeline; displacement sensor probes are connected with probe push rods to convert the inner diameter radial changes of the pipeline into axial displacement of the displacement sensors. The small-bore bidirectional two-dimensional floating self-adaptive mechanism has the advantages that peripheral 360-degree inner diameter variation and defect detection of the pipeline can be realized, and each group of magnetic circuit modules can radially float independently to adapt to pipeline inner diameter variation conditions; the mechanism can axially bidirectionally move to adapt to the bidirectional movement of descending and retracting of a weak magnetic well diameter combined sleeve logging instrument in the pipeline, the problem of detector passability is solved, and whole product research and development are assisted.

Description

technical field [0001] The invention relates to the technical field of casing deformation and leakage detection in oil pipelines, in particular to a small-caliber bidirectional two-dimensional floating self-adaptive mechanism for high-temperature and high-pressure downhole pipelines. Background technique [0002] Petroleum occupies an extremely important strategic position in the national economy. Exploiting oil from the formation is the main method of oil recovery, which can be divided into self-spraying oil recovery method and mechanical oil recovery method according to the oil recovery method. At present, the mechanical oil recovery method in my country occupies the primary position, exceeding the proportion of oil wells by 91%. All oil wells have casing and tubing, and mechanical oil recovery wells also include oil rods and drill collars. Casing, tubing, and sucker rods in oil wells are all made of steel. Due to the harsh working environment, they are prone to corrosio...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01B7/24G01M3/00
CPCG01B7/24G01M3/005
Inventor 刘洋李禄祥曲国英田士涛刘飞刘晶鑫王妮郑莉熊鑫
Owner BEIJING HUAHANG RADIO MEASUREMENT & RES INST
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