About How does energy storage fracturing work
The principle of this patented technology is that during periods of abundant electricity, a pump is used to inject water into artificial fractures, converting electrical energy into elastic potential energy and stress potential energy stored in the surrounding rocks.
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6 FAQs about [How does energy storage fracturing work ]
What is energy storage hydraulic fracturing?
During energy storage hydraulic fracturing, a large volume of fracturing fluid is injected into the formation. The resulting displacement that occurs between the fracturing fluid and the oil improves the development of tight oil reservoirs.
Can hydraulic fracturing be used to store energy in artificial fractures?
Traditional energy storage methods often struggle to simultaneously meet the demands of long storage duration, large capacity, high efficiency, and low cost. In this study, we present and verify the feasibility of a new energy storage method that utilizes hydraulic fracturing technology to store electrical energy in artificial fractures.
Can hydraulic fracturing provide underground energy storage in shale formations?
In this study, we propose a new underground energy storage technology based on hydraulic fracturing in shale formations (As shown in ). This patented technology utilizes underground artificial fractures created by hydraulic fracturing to store potential energy.
How does hydraulic fracturing work?
This patented technology utilizes underground artificial fractures created by hydraulic fracturing to store potential energy. During low electricity consumption, water is pumped from surface reservoirs into the shale strata to open the fractures, converting electrical energy into elastic and stress potential energy.
Does fracturing fluid meet requirements for energy storage hydraulic fracting?
The defined composition of the fracturing fluid met requirements for energy storage hydraulic fracturing. It was demonstrated that the tight oil in small pores was effectively substituted by the fracturing fluid, and subsequently aggregated in the large pores.
How does fracturing work?
With the help of capillary forces, the fracturing fluid is driven into a narrow pore throat, which replaces tight oil from the matrix with extra–low permeability into a high permeability zone; this realizes the effective utilization of the tight oil distributed in the pore throat of the matrix in a deep reservoir [ 29 ].
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