Looking for breakthrough ideas for innovation challenges? Try Patsnap Eureka!

Buried steel pipeline damage full-tensor geomagnetic detection system and implementation method

A geomagnetic detection, full tensor technology, applied in pipeline systems, material magnetic variables, mechanical equipment, etc., to achieve efficient extraction and reliable identification, high reliability, and flexible application

Active Publication Date: 2019-02-22
BEIJING UNIV OF TECH
View PDF6 Cites 8 Cited by
  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to solve the defects and deficiencies existing in the existing detection equipment and methods, the present invention proposes a buried steel pipeline damage full-tensor geomagnetic detection system and its implementation method, using FPGA and ARM dual main control systems and magnetic gradient full-scale Based on quantitative theory, multi-sensor array probes are designed to realize reliable identification and effective extraction of non-excavation magnetic field signals on pipeline damage ground in complex environments

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
View more

Image

Smart Image Click on the blue labels to locate them in the text.
Viewing Examples
Smart Image
  • Buried steel pipeline damage full-tensor geomagnetic detection system and implementation method
  • Buried steel pipeline damage full-tensor geomagnetic detection system and implementation method
  • Buried steel pipeline damage full-tensor geomagnetic detection system and implementation method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0042] A buried steel pipeline damage full-tensor geomagnetic detection system and its implementation method according to the present invention are based on the geomagnetic theory and the magnetic gradient full-tensor analysis method, and a multi-sensor array probe is designed, which is controlled by FPGA and ARM dual main control cores Each module cooperates to realize the target magnetic field detection, and then realizes the ground non-excavation diagnosis identification and location of the buried steel pipeline body damage. figure 1 It is a schematic diagram of a full-tensor geomagnetic detection system for buried steel pipeline damage and its implementation method according to the present invention, including: a system power management module (1), a signal conditioning module (2), a full-tensor geomagnetic detection probe (3), and a multi-element array Structure (4), three-axis tunnel magnetoresistive sensor (5), data line (6), data information high-speed processing module...

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
Login to View More

PUM

No PUM Login to View More

Abstract

The invention discloses a buried steel pipeline damage full-tensor geomagnetic detection system and an implementation method. A signal conditioning module is used for conditioning multi-channel differential analog voltage signals output by a tunnel magnetic resistance multi-element sensor array probe; a data information high-speed processing module is composed of an FPGA as a main control chip; apipeline damage feature extraction and identification module is controlled by an ARM; a damage positioning module is used for acquiring longitude and latitude coordinate information, the pipeline detection route is calculated, and the damage position is positioned; the field environment is combined to divide and independently process the magnetic field information of different pipe sections, meanwhile, the 15-axis data is deeply excavated, array advantages are brought into play, the gradient of the three-dimensional damage magnetic field signals in the three directions of the XYZ is calculated, a magnetic gradient full tensor matrix is constructed, and effective extraction and identification of pipeline damage information are realized. According to the buried steel pipeline damage full-tensor geomagnetic detection system, an additional excitation source is not needed, a feasible scheme for non-excavation detection on the ground of the buried steel pipeline is provided, and a certain reference and practical values are achieved.

Description

technical field [0001] The invention relates to the field of pipeline detection, in particular to a non-excavation detection technology for ground damage of buried steel pipelines. Background technique [0002] Some of my country's active oil and gas pipelines have entered the aging stage. Due to corrosion, third-party damage, natural disasters and other reasons, pipeline accidents occur frequently, which can easily lead to catastrophic accidents such as explosions, fires, and poisoning, causing heavy losses to people's lives and property. And seriously pollute the environment, social impact is bad. Therefore, in order to ensure the safe operation of the pipeline, the corresponding testing equipment and technical methods are particularly important. [0003] At present, manual inspection and external corrosion detection are generally used in pipeline inspection, which are not enough to effectively detect the pipeline itself, and cannot fundamentally make a reliable evaluation...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
Login to View More

Application Information

Patent Timeline
no application Login to View More
Patent Type & Authority Applications(China)
IPC IPC(8): F17D1/00F17D3/01F17D5/02G01N27/83
CPCF17D1/00F17D3/01F17D5/02G01N27/83
Inventor 王新华赵以振陈迎春帅义句海洋张涛
Owner BEIJING UNIV OF TECH
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Patsnap Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Patsnap Eureka Blog
Learn More
PatSnap group products