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IssuesArchive of Issues2002-5pp.132-139

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V. L. Barabanov and S. D. Vasyutinskaya, "Specific features of the stress state of a saturated reservoir in the neighborhood of a perturbing well," Mech. Solids. 37 (5), 132-139 (2002)
Year 2002 Volume 37 Number 5 Pages 132-139
Title Specific features of the stress state of a saturated reservoir in the neighborhood of a perturbing well
Author(s) V. L. Barabanov (Moscow)
S. D. Vasyutinskaya (Moscow)
Abstract We study analytical solutions of a 3D porosity-elasticity problem for the perturbed stress state of a saturated reservoir near a well. The behavior of the medium is described in terms of Biot's theory. Perturbations are transmitted to the reservoir through a finite well interval either in the form of a radial load applied to the solid matrix or in the form of a fluid withdrawal with an arbitrary rate. Volume and shear stresses are calculated for the parameters corresponding to real geological conditions. Calculation results are compared with solutions of the problem of elasticity in a half-space and with the traditional solution of the problem of fluid withdrawal through a single well. It is shown that taking into account the nonlocal deformation of a saturated medium near a perturbing well may considerably affect the evaluation of seepage parameters.
References
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2.  A. F. Zazovskii, "On the stress state of a fluid saturated reservoir near a producing well," Izv. AN SSSR. MTT [Mechanics of solids], No. 3, pp. 111-119, 1980.
3.  V. N. Nikolaevskii and T. K. Ramazanov, "Stress-strain state of a reservoir and pressure recovery in a well," in Mechanics of Solids [in Russian], pp. 94-105, Nauka, Moscow, 1986.
4.  A. A. Grausman, "Evaluation of irreversible deformation of reservoirs in oil, gas, and water production," Geolog. Nefti i Gaza, No. 4, pp. 23-24, 1995.
5.  Yu. A. Kashnikov and S. G. Ashikhmin, "A numerical model of rock shear in oil production," in Problems of Rock Mechanics. Proceedings of the 11th Russian Conf. in Rock Mechanics, pp. 193-198, St. Petersburg, 1997.
6.  A. V. Karakin, "On porous-elastic stresses arising during seepage in a thin layer with plane-parallel boundaries. Part 1," Geoinformatika, No. 4, pp. 3-14, 1997.
7.  N. G. Burago and A. N. Kovshov, "Numerical analysis of processes of deformation of a layered rock mass in the neighborhood of an oil well," Izv. AN. MTT [Mechanics of Solids], No. 1, pp. 139-143, 1999.
8.  V. N. Kondratiev and S. B. Trutneva, "Laboratory modelling of fracture of arch structures over regions of decompression arising in oil and gas production," in Problems in Rock Mechanics. Proc. 11th Russian Conf. on Rock Mechanics, pp. 249-254, St. Petersburg, 1997.
9.  A. A. Bariakh, A. I. Kudryashov, N. A. Eremina, and E. A. Gracheva, "Evaluation of oil production effect on the geodynamic state of reservoirs," Fiz. Tekhn. Probl. Razrabotki Polezn. Iskop., No. 2, pp. 31-42, 1998.
10.  Yu. A. Kashnikov and S. G. Ashikhmin, "The effect of oil production in elastic regime on the variation of the stress-strain state of the rock mass. Part 1. Analysis of instrumental surveys. A model of deformation of an oil reservoir under loading," Fiz. Tekhn. Probl. Razrabotki Polezn. Iskop., No. 5, pp. 71-80, 1998.
11.  Yu. A. Kashnikov and S. G. Ashikhmin, "The effect of oil production in elastic regime on the variation of the stress-strain state of the rock mass. Part 2. Results of numerical simulation," Fiz. Tekhn. Probl. Razrabotki Polezn. Iskop., No. 3, pp. 51-57, 1999.
12.  V. M. Alexandrov and D. A. Pozharskii, Nonclassical 3D Problems in Contact Mechanics for Elastic Solids [in Russian], Faktorial, Moscow, 1998.
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14.  V. A. Mironenko and V. M. Shestakov, Theory and Methods of Interpretation of Seepage Experiments [in Russian], Nedra, Moscow, 1978.
Received 10 March 2000
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