Влияние фронта нагнетаемых вод на эффективность гидроразрыва пласта
Т Ю Юсифов, И Г Фаттахов, Э Ю Юсифов, Н Г Каримова, Л. В. Петрова, А Р Сафиуллина
Abstract
Т Ю Юсифов, И Г Фаттахов, Э Ю Юсифов, Н Г Каримова, Л. В. Петрова, А Р Сафиуллина
Abstract
The paper demonstrated experience with hydraulic fracturing (HF) on the areas of the front water that is pumped into wells. The dependence of the efficiency of hydraulic fracturing on the nature of the spread of water-injection wells to maintain reservoir pressure (RP). An approach for stimulation fluid to the wells. Comparison of the effects of the use of hydraulic fracturing under static (SFIW) and dynamic front injection water (DFIW). The way to minimize the negative impact of the injected water front (FIW) on the effects of hydraulic fracturing, to reduce the risk of breaking through the cracks after fracturing lot of water injection pressure maintenance. Identifying promising use of hydraulic fracturing in wells with FIW. The factors causing the validity of the use of hydraulic fracturing in areas of the SFIW. Evaluate the results of the EMG embedded in the squares FIW in heterogeneous and homogeneous productive reservoir beds.
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The paper demonstrated experience with hydraulic fracturing (HF) on the areas of the front water that is pumped into wells. The dependence of the efficiency of hydraulic fracturing on the nature of the spread of water-injection wells to maintain reservoir pressure (RP). An approach for stimulation fluid to the wells. Comparison of the effects of the use of hydraulic fracturing under static (SFIW) and dynamic front injection water (DFIW). The way to minimize the negative impact of the injected water front (FIW) on the effects of hydraulic fracturing, to reduce the risk of breaking through the cracks after fracturing lot of water injection pressure maintenance. Identifying promising use of hydraulic fracturing in wells with FIW. The factors causing the validity of the use of hydraulic fracturing in areas of the SFIW. Evaluate the results of the EMG embedded in the squares FIW in heterogeneous and homogeneous productive reservoir beds.
Key concepts: Hydraulic fracturing, Well stimulation, Petroleum engineering, Water injection (oil production), Front (military), Injection well, Geology, Homogeneous