Shamil G. Mingulov
Professor, Ph.D., Dr.Sci.
Professor, Ph.D., Dr.Sci.
27
Total cited
3
Hirsch index

## Articles

Geotechnical Engineering and Engineering Geology
• Date submitted
2021-05-31
• Date accepted
2022-03-24
• Date published
2022-07-13

## Mathematical model of linear and non-linear proppant concentration increase during hydraulic fracturing – a solution for sequential injection of a number of proppant types

Article preview

It is known that much of the technology aimed at intensifying fluid inflow by means of hydraulic fracturing involves the use of proppant. In order to transport and position grains in the fracture, a uniform supply of proppant with a given concentration into the fracturing fluid is ensured. The aim of the operation is to eliminate the occurrence of distortions in the injection program of proppant HF. A mathematically accurate linear increase of concentration under given conditions is possible only if the transient concentration is correctly defined. The proposed approach allows to correctly form a proppant HF work program for both linear and non-linear increase in proppant concentration. The scientific novelty of the work lies in application of a new mathematical model for direct calculation of injection program parameters, previously determined by trial and error method. A mathematical model of linear and non-linear increase of proppant concentration during HF was developed. For the first time, an analytical solution is presented that allows direct calculation of parameters of the main HF stages, including transient concentrations for given masses of the various types of proppant. The application of the mathematical model in formation of a treatment plan allows maintaining correct proppant mass distribution by fractions, which facilitates implementation of information and analytical systems, data transfer directly from a work program into databases. It is suggested to improve spreadsheet forms used in production, which would allow applying mathematical model of work program formation at each HF process without additional labour costs. The obtained mathematical model can be used to improve the software applied in the design, modelling and engineering support of HF processes.

How to cite: Kochetkov A.V., Fattakhov I.G., Mukhametshin V.V., Kuleshova L.S., Mingulov S.G. Mathematical model of linear and non-linear proppant concentration increase during hydraulic fracturing – a solution for sequential injection of a number of proppant types // Journal of Mining Institute. 2022. Vol. 254. p. 210-216. DOI: 10.31897/PMI.2022.10
Technical-organizational solutions for re-equipment and modernization of productions
• Date submitted
2004-11-20
• Date accepted
2004-12-16
• Date published
2005-06-01

## Diagnostics of field pipelines as a means to increase the reliability of pipeline systems

Article preview

The issues of safety and reliability of operation of field pipelines, methods of control of field pipelines - inspection, revision and diagnostics are considered.

How to cite: Gabdrakhmanov N.K., Mingulov S.G., Strizhnev V.A., Karimov R.D. Diagnostics of field pipelines as a means to increase the reliability of pipeline systems // Journal of Mining Institute. 2005. Vol. 164. p. 95-96.