Calculating Acoustic Channel for a Crack-Like Corrosion–Mechanical Defect

Author:

Zhukov A. D.,Grigoriev M. V.,Danilov V. N.

Publisher

Pleiades Publishing Ltd

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference24 articles.

1. RD (Guidance Document) 23.040.00-KTN-011-11. Classification of defects of main and technological pipelines [Electronic resource] // URL: http: //www.tehlit. ru/1lib_norma_doc/54/54762/index.htm#i12079. Accessed November 23, 2018 (the title as displayed on the screen).

2. Zhukov, A.D., Problem statement for detection and identification of combined defects during the inline inspection of oil-pipelines by high resolution acostic inline inspection tools, Kontrol’ Diagn., 2019, no. 4, pp. 28–33.

3. Specifications and requirements for in-line inspection of pipelines—Version 2016 [Electronic Resource], in Pipeline Operators Forum (POF), 2016. URL: https://www.pipelineoperators.org/downloads-links/. Accessed June 6, 2019.

4. Willems, H., Kopp, G., and Haro, V., Sizing crack indications from ultrasonic ILI: Challenges and options. [Electronic Resource], in 12th Pipeline Technol. Conf., Berlin, May 2–4, 2017. URL:https://www.ndt-global.com/ re-sources/sizing-crack-indications-from-ultrasonic-ili challen- ges-and-options. Accessed June 6, 2019.

5. Ermolov, I.N. and Grebennik, V.S., Dependence of the amplitude of ultrasonic signal on the size and depth of defect in the immersion method of testing, Zavod. Lab., 1962, no. 1, pp. 56–60.

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