Применение алгоритма муравьиной оптимизации для построения оптимальной траектории скважины
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Ali А., Braun T., Delgago R., Li L., Plamb D., Smirnov N., Marsden R., Prado-Velarde E., Ramsey L., Spuner D., Stoun T., Stuffer T. 2005. Modelirovanie mekhanicheskikh svoystv geologicheskoy sredy kak sredstvo rasshifrovki napryazheniy v gornykh porodakh [Modeling of the mechanical properties of geological medium as understanding of stress in the rock]. Neftegazovoe obozrenie. 5:4-23. (in Russian)
Barskiy I.L. 2005. O novykh podkhodakh k matematicheskomu obespecheniyu provodki naklonno napravlennykh i gorizontalnykh skvazhin [About new approach to mathematic provision of the installation of inclined and horizontal wells]. Tekhnologii TEK, 3:22 (in Russian)
Strik Y.N., Ilyash V.V. 2004. Burenie razvedochnykh skvazhin [Drilling of the
exploration wells]. Voronezhskiy gosudarstvennyy universitet. Voronezh, p. 64 (in Russian)
Khabirova L.K., Bildanov R.R. 2012. Povyshenie effectivnosti bureniya gorizontalnykh skvazhin na osnove geologogidrodinamicheskogo modelirovaniya [Increase of effectiveness of horizontal wells drilling based on the geological hydrodynamic modeling]. TatNIPIneft, Bugulma, pp. 1-12 (in Russian)
Al-Bajalan A.R. 2015. Planning UBD in horizontal well to minimize formation damage. J. Pet. Environ. Biotechnol. 6:212. doi:10.4172/2157-7463.1000212
Miller C. 2009, Horizontal well planning for the Woodford Shale and other gas shales in the Mid-Continent, USA (abstract): AAPG MidContinent Meeting, Official Program, p. 23
DOI: http://dx.doi.org/10.17072/psu.geol.17.2.134
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