Artificial neural network (ANN) based prediction of proppant settling in horizontal wellbores during hydraulic fracturing. [PDF]
Jumaa M, Alajmei S, Hassan A, Bahri A.
europepmc +1 more source
Migration and Placement Laws of a Micropowder Proppant and Its Field Application. [PDF]
Li T, Zhang X, Li X.
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Performance of a High-Molecular-Weight AM/AA Copolymer in a CO<sub>2</sub>-Water Polymer Hybrid Fracturing Fluid Under High-Temperature and High-Pressure Conditions. [PDF]
Chen T +5 more
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Machine learning-enhanced fully coupled fluid-solid interaction models for proppant dynamics in hydraulic fractures. [PDF]
Wayo DDK, Irawan S, Wang L, Goliatt L.
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Study of multi-size proppant breakage mechanism under deep reservoir conditions for enhanced geothermal system development. [PDF]
Du B, Zhang G, Jin R, Zhu J, Zhou D.
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Integrated stimulation technology for ultra deep tight sandstone gas reservoirs with ultra low permeability in Sichuan Xujiahe formation. [PDF]
Li S +8 more
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Research Progress in the Application of Nanotechnology in Fracturing: A Review. [PDF]
Liang L +9 more
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Core-based recognition of well proppant particles using an enhanced ResNet model. [PDF]
Yin S, Yang E, Wang X, Dong C.
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Polyacrylamide-Based Polymers for Slickwater Fracturing Fluids: A Review of Molecular Design, Drag Reduction Mechanisms, and Gelation Methods. [PDF]
Cai W +6 more
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The Mechanisms and Applications of CO<sub>2</sub>‑Elevated Fracturing in Tight Sandstone Gas Reservoirs: A Comprehensive Investigation for Enhanced Oil and Gas Recovery. [PDF]
Zhao Z, Zhang Y, Huang Y, Zhang X.
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