The effective factor of regulating of rheophysical characteristics of liquid systems in oil recovery is use of physical and physical-chemical methods. The convincing outcomes of applying of physical-magnetic and electric fields are obtained on thermodynamic properties of liquid systems in processes of oil recovery, cleaning of propellant and oils, etc. Results of theoretical, experimental, and field studies and applying of the new methods of increasing of oil recovery efficiency by treating of aqueous systems by electric and magnetic fields are observed.Control over nonequilibrium processes occurring in the porous strata and pipes in the course of flow of reservoir fluids requires the search for new solutions and methods based on the idea of reducing the share of chemical reagents used in the technological processes. The necessity of raising such an issue originates from the problem of effective reduction of expenses that are acute for many spheres of production and scientific activity.The problem becomes more acute in oil-and-gas recovery technologies, where the expenses for conducting industrial operations make up a considerable portion of financial costs. Therefore, a search for new methods to effect the recovery of hydrocarbons will make it possible to regulate and control nonequilibrium processes occurring in the wellreservoir system. In the investigations of academician A. Kh. Mirzadjanzade and his science school much attention is given to the use of physical fields in the processes of recovery, preparation, and transportation of oil and oil products. A high efficiency was reached using the methods of processing of water and oil-and-water systems by physical fields (temperature field, electric and permanent magnetic field, pressure field, etc.) (Borsutsky et al., 2000).
Experimental Results and DiscussionOur earlier investigations revealed the fact of the reaction of rheological properties of non-Newtonian oils to the temperature variation. In this sense, the use of temperature
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