Results 161 to 170 of about 11,647 (186)
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Reservoir Depletion-Induced Proppant Embedment and Dynamic Fracture Closure
SPE Middle East Oil and Gas Show and Conference, 2019Abstract An optimized stimulation design not only achieves high productivity during early times, but also necessitates maintaining conductive flow paths during the life of a well. Because of proppant settling and bridging, proppants are not uniformly distributed within developed fracture networks.
Jian Huang +3 more
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A Model to Calculate Fracture Conductivity Considering Proppant Transport and Embedment Depth
Chemistry and Technology of Fuels and Oils, 2021The accuracy of predicting fracture conductivity is very important in hydraulic fracturing. However, most models pay more attention to the solution of fracture conductivity value, without considering the distribution of the fracture conductivity. It is also important to couple the proppant embedment depth and fracture conductivity, especially for the ...
Zhao-zhong Yang +5 more
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Improved discrete element modeling for proppant embedment into rock surfaces
Acta Geotechnica, 2019Brinell indentation tests were performed on Montney siltstone, and the results were compared with discrete element indentation simulations that use the micro-parameters calibrated using compression test data from the same siltstone samples. The simulated proppant indentation into the rock surface can be 15% less than the laboratory measurements.
Wenbo Zheng +4 more
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Computation model of proppant embedment depth based on dimensional analysis
Journal of Coal Science and Engineering (China), 2013Hydraulic fracturing is designed to form a high-conductivity fracture. The proppant will embed into the formation rock, especially in soft rock, owing to the interaction between proppant and fracture surface after fracture closure. Proppant embedment would reduce the fracture width and then lower the fracture conductivity.
Cong Lu, Jian-Chun Guo
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Embedment of High Strength Proppant into Low-Permeability Reservoir Rock
SPE/DOE Low Permeability Gas Reservoirs Symposium, 1981ABSTRACT Embedment of sintered bauxite into Berea, sandstone core, and shale core at closure pressures up to 10,000 psi (69 MPa) is reported. Several variables influencing fracture closure are examined: closure pressure, proppant size and size distribution, proppant concentration (up to a monolayer), formation hardness and surface ...
Leonard J. Volk +3 more
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Indentaion Hardness for Improved Proppant Embedment Prediction in Shale Formations
SPE European Formation Damage Conference and Exhibition, 2015Abstract The aim of hydraulic fracturing is the generation and maintenance of highly permeable pathways. To achieve this, a high hydraulic pressure is applied to overcome the breakdown pressure in developed formations. To avoid the closure of the generated fractures due to the acting in-situ stress in the subsurface, proppantsareused ...
Martin Mueller, Mohammed Amro
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Impact of Remedial Acid Practices on Proppant Embedment and Fracture Face Permeability
SPE Annual Technical Conference and Exhibition, 2020Abstract Acid stimulation is a common remedial practice for formations that produce below the target production rates. Acid stimulation can be performed during the early-life of a well, soon after the well is put on production, or more typically, following a production period once production rates have started to decline.
Oya Karazincir +5 more
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Modeling Fracture Closure with Proppant Settling and Embedment during Shut-In and Production
SPE Drilling & Completion, 2020Summary Fracture closure and proppant settling are two fully coupled processes during both shut-in and production. Proppant distribution greatly affects the residual fracture width and conductivity evolution, whereas fracture closure might limit proppant settling and force the proppant to crush or embed into the rock.
Shuang Zheng +2 more
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Nanoindentation on Fluid-altered Shale and Implications for Proppant Embedment
Proceedings of the 11th Unconventional Resources Technology Conference, 2023Qingyun Li +3 more
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