Invention Grant
US09535037B2 Apparatus and method for monitoring the structural integrity of a pipeline by means of a superconducting magnet 有权
通过超导磁体监测管道的结构完整性的装置和方法

  • Patent Title: Apparatus and method for monitoring the structural integrity of a pipeline by means of a superconducting magnet
  • Patent Title (中): 通过超导磁体监测管道的结构完整性的装置和方法
  • Application No.: US14364129
    Application Date: 2012-12-20
  • Publication No.: US09535037B2
    Publication Date: 2017-01-03
  • Inventor: Alberto Giulio Di LulloGiordano PinarelloAlessandro Bailini
  • Applicant: Eni S.p.A.
  • Applicant Address: IT
  • Assignee: ENI S.P.A.
  • Current Assignee: ENI S.P.A.
  • Current Assignee Address: IT
  • Agency: Abel Law Group, LLP
  • Priority: ITMI2011A002451 20111230
  • International Application: PCT/IB2012/057556 WO 20121220
  • International Announcement: WO2013/098729 WO 20130704
  • Main IPC: G01N27/82
  • IPC: G01N27/82
Apparatus and method for monitoring the structural integrity of a pipeline by means of a superconducting magnet
Abstract:
An inspection apparatus (100) for monitoring the structural integrity of a pipeline (101) comprising a superconducting electromagnet (102) suitable for generating a magnetic field (106); a cryostat (103) suitable for containing and preserving said superconducting electromagnet (102) at a low temperature; at least two magnetic conveyors (104′, 104″) connected at opposite ends of the cryostat (103) suitable for conveying the magnetic field (106) generated by the superconducting electromagnet (102) to the wall of the pipeline (101) and facilitating the closing of a magnetic circuit; at least one sensor system (105) for revealing the intensity of the magnetic field (106). A method for monitoring the structural integrity of a pipeline (101) using an inspection apparatus (100) according to the present invention. The inspection apparatus (100) according to the present invention advantageously allows the localization of possible structural imperfections or anomalies of the walls of a pipeline (101), using a more efficient magnet with respect to those normally used in the “pigs” known in the state of the art.
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