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- W2808793302 abstract "Rational development of oil fields largely depends on the correct solution of a number of field problems, one of which is the calculation and justification of the optimal wells operation, the significant part of which is operated by a mechanized method, using the sucker rod pump unit. Aims and Objectives To develop a method for designing the optimal technological regime of producing wells of the Uzen oil field. To solve the problem of selecting pumping equipment and exhaust schedule, based on the criterion of well debit maximum. Results Based on the analysis of the nature of the modified Vogel inflow curve, the value of the minimum recommended downhole pressure for the XIV horizon wells exploitation on Uzen oil field is substantiated. A comprehensive approach to calculation of the predicted pumping value was developed. Empirical and semiempirical models are proposed for calculating volume efficiency of pump, which have been tested at oil field. The empirical model can be used for operational calculations with limited initial data. The semi-empirical model reflects the physical nature of the processes occurring in the downhole system, causing the loss of pump flow. A method is proposed for calculating the optimal technological regime of the XIV horizon wells at Uzen oil field, including the optimal well production rate determination, pumping speed and the pump diameter. An example of a graphical solution to the problem of justifying the optimum operating regime for one of the XIV horizon wells on Uzen oil field is presented. The results of field experiments conducted at the XIV horizon wells on Uzen oil field confirmed the adequacy of the presented mathematical model and the methodology of design of the technological regime based on it." @default.
- W2808793302 created "2018-06-29" @default.
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- W2808793302 date "2018-06-01" @default.
- W2808793302 modified "2023-09-26" @default.
- W2808793302 title "METHOD OF DESIGNING THE OPTIMUM OPERATION REGIME OF PRODUCTION WELLS AT UZEN OIL FIELD" @default.
- W2808793302 doi "https://doi.org/10.17122/ntj-oil-2018-3-59-71" @default.
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