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Current Trends and Perspectives of Detection and Location for Buried Non-Metallic Pipelines

期刊

出版社

SPRINGER
DOI: 10.1186/s10033-021-00613-z

关键词

Non-metallic pipeline; Pipeline detection and location; Non-destructive test and evaluation; Acoustic technologies

资金

  1. Downhole Intelligent Measurement and Control Science and Technology Innovation Team of Southwest Petroleum University [2018CXTD04]
  2. National Natural Science Foundation of China [61701085, 51974273]
  3. Chengdu Municipal international science and technology cooperation project of China [2020-GH02-00016-HZ]
  4. 2020 National Mountain Highway Engineering Technology Research Center Open Fund Project [GSGZJ-2020-01]

向作者/读者索取更多资源

Buried pipelines are essential for modern cities, with non-metallic pipes increasingly replacing metal ones. While location technologies for buried metal pipelines are mature, those for non-metallic pipelines are still developing. Various detection and location methods have their own strengths and weaknesses, with suggestions provided for future development.
Buried pipelines are an essential component of the urban infrastructure of modern cities. Traditional buried pipes are mainly made of metal materials. With the development of material science and technology in recent years, non-metallic pipes, such as plastic pipes, ceramic pipes, and concrete pipes, are increasingly taking the place of pipes made from metal in various pipeline networks such as water supply, drainage, heat, industry, oil, and gas. The location technologies for the location of the buried metal pipeline have become mature, but detection and location technologies for the non-metallic pipelines are still developing. In this paper, current trends and future perspectives of detection and location of buried non-metallic pipelines are summarized. Initially, this paper reviews and analyzes electromagnetic induction technologies, electromagnetic wave technologies, and other physics-based technologies. It then focuses on acoustic detection and location technologies, and finally introduces emerging technologies. Then the technical characteristics of each detection and location method have been compared, with their strengths and weaknesses identified. The current trends and future perspectives of each buried non-metallic pipeline detection and location technology have also been defined. Finally, some suggestions for the future development of buried non-metallic pipeline detection and location technologies are provided.

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