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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/41475
Title: Optimal scheduling of operating modes of the gas transmission system
Other Titles: Оптимальне планування режимів роботи газотранспортної системи
Authors: Притула, Н.
Фролов, В.
Притула, М.
Prytula, N.
Frolov, V.
Prytula, M.
Affiliation: Філія "Науково-дослiдний інститут транспорту газу" ПАТ "УКРТРАНСГАЗ"
Центр математичного моделювання Інституту прикладних проблем механіки і математики ім. Я. С. Підстригача НАН України
Institute of Gas Transmission PJSC Ukrtransgas
Centre of Mathematical Modelling of Pidstryhach Institute for Applied Problems of Mechanics and Mathematics NAS of Ukraine
Bibliographic description (Ukraine): Prytula N. Optimal scheduling of operating modes of the gas transmission system / N. Prytula, V. Frolov, M. Prytula // Mathematical Modeling and Computing. — Lviv : Lviv Politechnic Publishing House, 2017. — Vol 4. — No 1. — P. 78–86.
Bibliographic description (International): Prytula N. Optimal scheduling of operating modes of the gas transmission system / N. Prytula, V. Frolov, M. Prytula // Mathematical Modeling and Computing. — Lviv : Lviv Politechnic Publishing House, 2017. — Vol 4. — No 1. — P. 78–86.
Is part of: Mathematical Modeling and Computing, 1 (4), 2017
Issue: 1
Volume: 4
Issue Date: 15-Jun-2017
Publisher: Lviv Politechnic Publishing House
Place of the edition/event: Lviv
UDC: 621.64.029
Keywords: оптимізація
критерій оптимальності
газотранспортна система
компресорна станція
потенціал оптимізації
optimization
criterion of an optimality
gas transmission system
compressor station
optimization potential
Number of pages: 9
Page range: 78-86
Start page: 78
End page: 86
Abstract: Сформульовано оптимiзацiйнi задачi транспортування газу для рiзних критерiїв оптимальностi. Проаналiзовано фактори, якi впливають як на розрахунок режим- них параметрiв, так i складнiсть алгоритмiв пошуку їхнiх оптимальних значень. Пiд час проведення числових експериментiв продемонстровано окремi класи задач, якi розв’язанi в оптимiзацiйнiй постановцi.
The optimization problems of gas transmission for different optimality criteria are presented. The analysis of factors that influence both calculation of operating mode parameters and complexity of algorithms of search of their optimal values is carried out. In the course of conducting numerical experiments, some classes of problems being solved in an optimization statement are demonstrated.
URI: https://ena.lpnu.ua/handle/ntb/41475
ISSN: 2312-9794
Copyright owner: © 2017 Lviv Polytechnic National University CMM IAPMM NASU
References (Ukraine): [1] KulikV. S. Alhoritm optimizatsii transporta haza cherez razvetvliennuiu GTS. Truboprovodnyi transport: teoriia i praktika. 2, 22–25 (2014), (in Russian).
[2] Sardanashvili S.A. Rascietnyie metody algoritmy. Moscow, GUP Izdatielstvo "Neft i gaz" RGU nefti i gaza (2005), (in Russian).
[3] SeleznievV.E., AlioshinV.V., KlyshinG. S. Metody s tekhnolohii chyslennogo modelirovaniia gazoprovodnykh systiem. Moscow, Editorial URSS (2002), (in Russian).
[4] SukharievM.G., StavrovskiiYe.R. Optimizatsiia sistem transporta gaza. Moscow, Nedra (1975), (in Russian).
[5] SIMONE Research Group s.r.o. Equations and Methods, Version 5.6. May 2007.
[6] PrytulaN.M. Rozrakhunok parametriv potokorozpodilu hazu v hazotransportnii systemi (statsionarnyi vypadok). Fizyko-matematychne modeliuvannia ta informatsiini tekhnolohii. 5, 146–155 (2007), (in Ukranian).
[7] PrytulaN.M. Zadachi optymizatsii potokorozpodilu v hazotransportnykh systemakh. Visnyk Natsionalnoho universytetu “Lvivska politekhnika” Kompiuterni nauky ta informatsiini tekhnolohii. 604, 220–227 (2007), (in Ukranian).
[8] PrytulaN. Mathematical modelling of dynamic processes in gas transmission. Econtechmod. An international quarterly journal. 4 (3), 57–63 (2015).
[9] KerstingR., ShaibeD., Shrieder P., VaimanA. Avtonomnaia sistema Online-GANESI dlia zadach upravleniia gazoprovodnoi setiu. Gwf – Gas/Erdgas 125 – 1984.
References (International): [1] KulikV. S. Alhoritm optimizatsii transporta haza cherez razvetvliennuiu GTS. Truboprovodnyi transport: teoriia i praktika. 2, 22–25 (2014), (in Russian).
[2] Sardanashvili S.A. Rascietnyie metody algoritmy. Moscow, GUP Izdatielstvo "Neft i gaz" RGU nefti i gaza (2005), (in Russian).
[3] SeleznievV.E., AlioshinV.V., KlyshinG. S. Metody s tekhnolohii chyslennogo modelirovaniia gazoprovodnykh systiem. Moscow, Editorial URSS (2002), (in Russian).
[4] SukharievM.G., StavrovskiiYe.R. Optimizatsiia sistem transporta gaza. Moscow, Nedra (1975), (in Russian).
[5] SIMONE Research Group s.r.o. Equations and Methods, Version 5.6. May 2007.
[6] PrytulaN.M. Rozrakhunok parametriv potokorozpodilu hazu v hazotransportnii systemi (statsionarnyi vypadok). Fizyko-matematychne modeliuvannia ta informatsiini tekhnolohii. 5, 146–155 (2007), (in Ukranian).
[7] PrytulaN.M. Zadachi optymizatsii potokorozpodilu v hazotransportnykh systemakh. Visnyk Natsionalnoho universytetu "Lvivska politekhnika" Kompiuterni nauky ta informatsiini tekhnolohii. 604, 220–227 (2007), (in Ukranian).
[8] PrytulaN. Mathematical modelling of dynamic processes in gas transmission. Econtechmod. An international quarterly journal. 4 (3), 57–63 (2015).
[9] KerstingR., ShaibeD., Shrieder P., VaimanA. Avtonomnaia sistema Online-GANESI dlia zadach upravleniia gazoprovodnoi setiu. Gwf – Gas/Erdgas 125 – 1984.
Content type: Article
Appears in Collections:Mathematical Modeling And Computing. – 2017. – Vol. 4, No. 1

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