EOR (Oil Recovery Enhancement) Technology Using Shock Wave in the Fluid

Author:

Petrichenko Mikhail1,Vatin Nikolay1,Nemova Darya1,Kharkov Nikita1,Staritcyna Anastasiia1

Affiliation:

1. Donbas National Academy of Civil Engineering and Architecture

Abstract

In this research the alternative method is presented increases of oil recovery of an oil collector. Shock wave impact on layer. The technology is developed, advantage of this method is shown in comparison with layer hydraulic fracturing. For increase oil recovery and restoration of wells the traditional is widely applied technology of hydraulic fracturing of layer (flyuding), allowing on the short period to recover a well. Sense of a flyuding that hydrostatic pressure is created is considerable exceeding mountain and bringing to a rupture of a collector on one or several cracks. In this work the alternative technique of increase in oil recovery is offered by creation of a shock wave small intensity in the bottom fluid. With a high frequency of repeatability set of blows increases quantity of micro cracks in collector rock, increasing coefficient of permeability of layer without breaking its connectivity.

Publisher

Trans Tech Publications, Ltd.

Reference26 articles.

1. A.M. Krivtsov, O.S. Loboda, Description of elastic properties of diamond and sphalerite-structured diatomic crystals with the use of moment interaction, Physical Mesomechanics. 15 (3-4) 2012 238-244.

2. A.M. Krivtsov, O.S. Loboda, S.S. Khakalo, Comparison of micromodels describing the elastic properties of diamond, Mechanics of Solids. 47 (5) 2012 525-532.

3. O.S. Loboda, A.M. Krivtsov, Determination of mechanical properties of nanostructures with complex crystal lattice using moment interaction at microscale, Reviews on Advanced Materials Science. 20 (2) 2009 143-147.

4. M. Wiercigroch, A.M. Krivtsov, J. Wojewoda, Vibrational energy transfer via modulated impacts for percussive drilling, Journal of Theoretical and Applied Mechanics. 46 (3) 2008 715-726.

5. D.A. Indeitsev, A.M. Krivtsov, P.V. Tkachev, Molecular dynamics analysis of the relation between the spall strength and strain rate for solids, Doklady Physics. 51 (3) 2006 154-156.

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