Казанский (Приволжский) федеральный университет, КФУ
КАЗАНСКИЙ
ФЕДЕРАЛЬНЫЙ УНИВЕРСИТЕТ
 
NUMERICAL MODEL, ALGORITHMS AND SOFTWARE FOR QUANTITATIVE ESTIMATION OF IMPLOSION IMPULSE-AMPLITUDE ACTION ON POROUS-FRACTURED MEDIUM IN WELL BOTTOM ZONE
Форма представленияСтатьи в зарубежных журналах и сборниках
Год публикации2018
Языканглийский
  • Конюхов Владимир Михайлович, автор
  • Библиографическое описание на языке оригинала Konyukhov V, Konyukhov I, Chekalin A., Numerical Model, Algorithms and Software for Quantitative Estimation of Implosion Impulse-Amplitude Action on Porous-Fractured Medium in Well Bottom Zone//Proceedings of 2018 IEEE East-West Design and Test Symposium, EWDTS 2018. - 2018. - Vol., Is.. - Art. № 8524723.
    Аннотация Mathematical, numerical and algorithmical models for computation of interconnected hydrodynamic processes in the producing well, oscillation of the implosion chamber on the elastic steel cable and filtration in the fractured-porous oil reservoir caused by hydraulic shock on bottom-hole formation zone is proposed. The iterative procedures and parallel algorithms to solve the system of non-linear algebraic equations are developed. These models are implemented in program package. The features of processes in the united implosion system «oil reservoir – well –chamber« are numerically studied. An influence of the various parameters on the length of created fractures in the bottom-hole zone is estimated. It is shown that chamber can shift for a few meters due to elongation of the cable. The displacement magnitude depends on material of the cable and the form of the chamber that determinate its viscous interaction with borehole fluid. The important result is also that there exists the optimal size of the chamber that provides the maximal effect from the implosion hydraulic shock.
    Ключевые слова Numerical Model Algorithms Software Implosion Impulse-Amplitude Action Porous-Fractured Medium Well Bottom Zone
    Название журнала Proceedings of 2018 IEEE East-West Design and Test Symposium, EWDTS 2018
    URL https://www.scopus.com/inward/record.uri?eid=2-s2.0-85057960127&doi=10.1109%2fEWDTS.2018.8524723&partnerID=40&md5=43c6062e7d2a592bf1a5036d805e8508
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