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Prospective resources estimation and production rate forecast based on three-dimensional lithofacies geological model of Tula shale terrigenous deposits

Authors: A.B. Deryushev, M.A. Nosov, S.N. Krivoshchekov (Perm National Research Polytechnic University, RF, Perm)

Key words: simulation, cyclite, hydrocarbon resources, Enapaevsky site, sand body.

The article offers a somewhat different scheme for constructing a three-dimensional lithofacies geological model. This scheme allows simulating a more qualitative approach to determining resource exploration targets and predicting yields of exploration wells on the basis of the constructed three-dimensional distribution of geological and hydrodynamic parameters.

References

1. Zakrevskiy K.E., Geologicheskoe 3D modelirovanie (Geological 3D modeling), Moscow: IPTs “Maska” Publ., 2009, 376 p.

2. Deryushev A.B., Potekhin D.V., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta. Ser. Geologiya. Neftegazovoe i gornoe delo, 2011, no. 1, pp. 25-31.

3. Rukovodstvo pol'zovatelya programmnogo produkta IRAP RMS (User Manual the software IRAP RMS), Moscow, 2012, 3277 p.

4. Metodicheskie ukazaniya po sozdaniyu postoyanno deystvuyushchikh geologo-tekhnologicheskikh modeley neftyanykh i gazoneftyanykh mestorozhdeniy (Methodical instructions for establishment of permanent geological and engineering models of oil and gas deposits), Part 1. Geologicheskie modeli (Geologic models), Moscow: Publ. of OAO “VNIIOENG”, 2008, 36 p.

5. Melkishev O.A., Krivoshchekov S.N., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta, Ser. Geologiya. Neftegazovoe i gornoe delo, 2012, no. 4, pp. 33-41.

6. Nosov M.A., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta, Ser. Geologiya. Neftegazovoe i gornoe delo, 2012, no. 4, pp. 15-22.

Key words: simulation, cyclite, hydrocarbon resources, Enapaevsky site, sand body.

The article offers a somewhat different scheme for constructing a three-dimensional lithofacies geological model. This scheme allows simulating a more qualitative approach to determining resource exploration targets and predicting yields of exploration wells on the basis of the constructed three-dimensional distribution of geological and hydrodynamic parameters.

References

1. Zakrevskiy K.E., Geologicheskoe 3D modelirovanie (Geological 3D modeling), Moscow: IPTs “Maska” Publ., 2009, 376 p.

2. Deryushev A.B., Potekhin D.V., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta. Ser. Geologiya. Neftegazovoe i gornoe delo, 2011, no. 1, pp. 25-31.

3. Rukovodstvo pol'zovatelya programmnogo produkta IRAP RMS (User Manual the software IRAP RMS), Moscow, 2012, 3277 p.

4. Metodicheskie ukazaniya po sozdaniyu postoyanno deystvuyushchikh geologo-tekhnologicheskikh modeley neftyanykh i gazoneftyanykh mestorozhdeniy (Methodical instructions for establishment of permanent geological and engineering models of oil and gas deposits), Part 1. Geologicheskie modeli (Geologic models), Moscow: Publ. of OAO “VNIIOENG”, 2008, 36 p.

5. Melkishev O.A., Krivoshchekov S.N., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta, Ser. Geologiya. Neftegazovoe i gornoe delo, 2012, no. 4, pp. 33-41.

6. Nosov M.A., Vestnik Permskogo natsional'nogo issledovatel'skogo politekhnicheskogo universiteta, Ser. Geologiya. Neftegazovoe i gornoe delo, 2012, no. 4, pp. 15-22.


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