It is well known that petroleum companies assume measures to rise in profitability and efficiency of oil transportation. Although various experimental and analytical studies have contributed to achieve this objective it is still not bring to fruition. One of the technological innovations is to generate density wave differential.
This article is about of high oil viscosity reservoirs, where due-to low initial oil saturation, presence of gas cap and bottom water, high depth, low thickness the application of «cold» and «thermal» methods is unprofitable, and microwave heating is a perspective technology transport.
Method for monitoring of inductance coils (actuating and measuring) state in gauges is proposed. Discrete representation of processes running in inductance coils is offered. Discrete inductance model is built. Difference equations describing operation principle of this model have been received and solution of these equations for this model is found. The application of difference equations and recurrence mathematical procedures for inductive structures analysis at breakdown of was justified. It was taken the features of breakdown of the basic homogeneous topology and topology inductor model
The application of a separator, which prevents coagulation and aggregation of the viscous fractions of oil with the transport on the conduit, is immediate. Is obtained formula for the optimum diameter of the ball separator of viscous flow in the conduit. The principle of stability with respect to Lyapunov is used.
The possibility of the particle size measuring suspensions by means of the method of photon correlation spectroscopy. Graphs are given of the statistical distributions of the measured parameters of the two tested types of dispersed media. Studies have been shown that the method allows obtain data about the particle size.
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