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Integrated model for complex management of reservoir engineering and field construction

Authors: R.R. Ismagilov (Gazpromneft-Razvitie LLC, RF, Saint-Petersburg), U.V. Maksimov, O.S. Ushmaev, A.F. Mozhchil, N.Z. Gilmutdinova (Gazpromneft NTC LLC, RF, Saint-Petersburg)

Key words: Integrated conceptual design, complex approach to reservoir engineering, capital cost optimization, cost engineering.

The main objective of conceptual design is to determine the optimal ratio of capital investments in drilling and completion the oilfield and the potential result of these investments. This article describes the creation of an automated system which will be capable of solve optimization problems in the interconnection of reservoir, wells, surface facilities (determination of the optimal profile of oil production, the optimization of technical solutions for the construction of wells and infrastructure, etc.); use the cost-engineering tools; automate iterative approach.

References
1. Khasanov M.M., Sugaipov D.A., Ushmaev O.S. et al., Development of cost engineering in Gazprom Neft JSC (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2013, no. 12, pp. 14 –16.
2. Karsakov V.A., Tret'yakov S.V., Devyat'yarov S.S., Pasynkov A.G, Drilling cost optimization during conceptual project phase of field development (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2013, no. 12, pp. 33–35. 

Key words: Integrated conceptual design, complex approach to reservoir engineering, capital cost optimization, cost engineering.

The main objective of conceptual design is to determine the optimal ratio of capital investments in drilling and completion the oilfield and the potential result of these investments. This article describes the creation of an automated system which will be capable of solve optimization problems in the interconnection of reservoir, wells, surface facilities (determination of the optimal profile of oil production, the optimization of technical solutions for the construction of wells and infrastructure, etc.); use the cost-engineering tools; automate iterative approach.

References
1. Khasanov M.M., Sugaipov D.A., Ushmaev O.S. et al., Development of cost engineering in Gazprom Neft JSC (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2013, no. 12, pp. 14 –16.
2. Karsakov V.A., Tret'yakov S.V., Devyat'yarov S.S., Pasynkov A.G, Drilling cost optimization during conceptual project phase of field development (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2013, no. 12, pp. 33–35. 


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