Mathematical Models for the Integrity Control of the Linear Parts of Gas Mains
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,General Mathematics,Statistics and Probability
Link
https://link.springer.com/content/pdf/10.1007/s10958-023-06564-1.pdf
Reference15 articles.
1. A. F. Voevodin and V. S. Nikiforovskaya, “A numerical method for identifying the location of a fluid leak in a pipeline,” Sib. Zh. Indutr. Mat., 12, No. 1, 25–30 (2009); English translation: J. Appl. Ind. Math., 4, No. 2, 276–281 (2010); https://doi.org/10.1134/S1990478910020171.
2. V. F. Chekurin and O. M. Khymko, “Transient processes of gas flow in a pipeline caused by a local leak,” Mat. Met. Fiz.-Mekh. Polya, 62, No. 3, 143–158 (2019).
3. G. Anderson, Thermodynamics of Natural Systems, Cambridge Univ. Press, New York (2005).
4. V. Chekurin and O. Khymko, “Numerical modeling transient processes in a long gas pipeline,” Math. Model. Comput., 6, No. 2, 220–238 (2019); https://doi.org/10.23939/mmc2019.02.220.
5. V. Chekurin, R. Kushnir, Yu. Ponomarev, M. Prytula, and O. Khymko, “A model of a system for gas transmission pipeline integrity monitoring,” in: G. Bolzon, G. Gabetta, and H. Nykyforchyn (editors), Degradation Assessment and Failure Prevention of Pipeline Systems, Ser. Lecture Notes in Civil Engineering, Vol. 102, Springer (2021), pp. 99–114; https://doi.org/10.1007/978-3-030-58073-5_8.
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