Lightweight proppants in unconventional oil and natural gas development: A review

Sustainable Materials and Technologies - Tập 33 - Trang e00484 - 2022
Zijia Liao, Xiaogang Li1, Lei Ge2, Zhaozhong Yang1, Jingyi Zhu1, Qi Xue, Hao Wang2
1State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, 610500, China
2Centre for Future Materials, University of Southern Queensland, Springfield, QLD 4300, Australia

Tài liệu tham khảo

Brook, 2014, Why nuclear energy is sustainable and has to be part of the energy mix, SM&T, 1–2, 8 Jia, 2021, The mechanism of unconventional hydrocarbon formation: Hydrocarbon self-sealing and intermolecular forces, PED, 48, 507 2022, Reuters Zhang, 2011, Research advance of resin coated proppants, Reguxing Shuzhi., 26, 55 Montgomery, 2010, Hydraulic fracturing. History of an enduring technology, J. Pet. Technol., 62, 26, 10.2118/1210-0026-JPT Underdown, 1985, New proppant for deep hydraulic fracturing, J. Pet. Technol., 37, 98, 10.2118/10889-PA Liang, 2015, Overview of existing proppant technologies and challenges Wang, 2010, Advance of ceramic proppants for oil hydraulic fracture, Bull. Chinese Ceramic Soc., 29, 633 Posey, 2005 Radwan, 2017, Proppant: a review of over 30 field trials in low permeability formations Jackson, 2017 Palisch, 2018, Far-field proppant detection using electromagnetic methods: latest field results, SPE Prod. Oper., 33, 557 Tu, 2010 Zhu, 2021, Prediction of the settling velocity of the rod-shaped proppant in vertical fracture using artificial neural network, J. Pet. Sci. Eng., 200, 10.1016/j.petrol.2020.108158 Zhao, 2021, Transdisciplinary application of functional materials in petroleum engineering, MSF., 1035, 649, 10.4028/www.scientific.net/MSF.1035.649 Brannon, 2009 Han, 2016, Maximizing productivity with ultra-lightweight proppant in unconventional wells: simulations and field cases Duenckel, 2014, Improvements in downhole chemical delivery: development of multifunctional proppants Flowers, 2003 Rickards, 2006, High strength, Ultralightweight Proppant lends new dimensions to Hydraulic Fracturing applications, SPE Prod & Oper., 21, 212 Mack, 2013, Development and field testing of advanced ceramic proppants Jones, 1985 Parse, 2012 Mou, 2017, Preparation and performance of the hollow bauxite ceramic proppant, J. Synth. Cryst., 46, 1244 Liang, 2015 Fan, 2018, Preparation and properties of ultra-low density proppants for use in hydraulic fracturing, J. Pet. Sci. Eng., 163, 100, 10.1016/j.petrol.2017.10.024 Urbanek, 2006 Rohring, 2014 Eluru, 2018 Sinclair, 1983 Bestaoui-Spurr, 2014 Mahoney, 2013 Cao, 2020, Self-suspending proppant manufacturing method and its property evaluation, J. Pet. Sci. Eng., 192, 10.1016/j.petrol.2020.107251 Li, 2018, Influence of sintering temperature on performance of Mullite-corundum Proppant prepared by adding compound additive, J. Synth Cryst., 47, 1850 LaFollette, 2011 Han, 2014, Synthesis of low-density heat-resisting polystyrene/graphite composite microspheres used as water carrying fracturing proppants, Polym.-Plast. Technol. Eng., 53, 1647, 10.1080/03602559.2014.919648 Luo, 2021, Preparation and characterization of a self-suspending ultra-low density proppant, RSC Adv., 52, 33083, 10.1039/D1RA05611E Liu, 2018, On the preparation and performance of the proppants at low-density with the water-based drilling cuttings of shale gas, J. Saf. Environ., 18, 1155 Hao, 2017, Preparation and characterization of low-density ceramic proppant containing coal gangue additive, Mater. Res. Innov., 23, 61, 10.1080/14328917.2017.1376785 Tian, 2008, The exploration of making acidproof fracturing proppants using red mud, J. Hazard. Mater., 160, 589, 10.1016/j.jhazmat.2008.03.032 Chen, 2017, Effect of MnO2 on the properties of Mullite-based ceramics, Chem. Lett., 46, 327, 10.1246/cl.161012 Zou, 2019, The low temperature preparation of ultra low density ceramic proppants by adding fly ash, Ceramics-Silikáty, 64, 107, 10.13168/cs.2019.0055 Kasprzyk, 2018, Preparation of a ceramic proppants for hydraulic fracturing using F – Type fly ash, Arch. Metall. Mater., 63, 1065 Chen, 2013, High strength lightweight glass-ceramics sintered from fly ash: a potential proppant material, T Indian Ceram Soc., 72, 124, 10.1080/0371750X.2013.817582 Wu, 2017, Preparation and characterization of ceramic proppants with low density and high strength using fly ash, J. Alloy. Compd., 442, 10.1016/j.jallcom.2017.01.262 Yang, 2021 Nguyen, 2019 Stegemoeller, 2011 Fuss, 2017 McDaniel, 2020 Zhang, 2019 Radwan, 2017 Quintero, 2018, Enhanced Proppant Suspension in a Fracturing Fluid Through Capillary Bridges Sinclair, 2009 Webb, 1997 Bourne, 1999 Neto, 2012, Ultralightweight proppants: an effective approach to address problems in long horizontal gravel packs offshore Brazil, SPE Drill. Complet., 27, 613, 10.2118/150581-PA Chen, 2012 Pavlova, 2019 Wei, 2020, Performance evaluation and field test of low- density nut shell proppant in CBM fracturing, Reservoir Eval. Develop., 10, 93 Kendrick, 2005 Lacy, 1997 Swanson, 1983, Fracture analysis of ceramic Proppants, J. Energ Resour., 105, 128, 10.1115/1.3230891 Chung, 1992 Tasdemirci, 2010, Split Hopkinson pressure bar multiple reloading and modeling of a 316 L stainless steel metallic hollow sphere structure, Int. J. Impact. Eng., 37, 250, 10.1016/j.ijimpeng.2009.06.010 Keleş, 2013, Stochastic failure of isotropic, brittle materials with uniform porosity, Acta Mater., 61, 2853, 10.1016/j.actamat.2013.01.024 Savchenko, 2014, The influence of porosity on the elasticity and strength of alumina and zirconia ceramics Serkova, 2018, Analysis of proppant particles porosity based on microCT image processing Liao, 2021, Mechanical behavior of hollow proppants based on finite element model, Energy Sci. Eng., 9, 772, 10.1002/ese3.863 Tokmakov, 2006, Urea and urea nitrate decomposition pathways: a quantum chemistry study, J. Phys. Chem. A, 110, 2759, 10.1021/jp0564647 Yu, 2016 Huang, 2007, The study of phenolic resin/epoxy resin enwrapped and modified nutshell composite material, Gaofenzi Cailiao Kexue Yu Gongcheng, 23, 199 Mou, 2017 Perruchot, 2001, Synthesis of well-defined, polymer-grafted silica particles by aqueous, Atrp. LANGMUIR., 17, 4479, 10.1021/la0102758 Lu, 2022, Xu Shaly detritus embedded epoxy-resin coated proppants, Petrol. Sci. Sun, 2015, Profermance of resin Coated unburned ultra-low density Fracturing Proppant, Bull. Chinese Ceramic Soc., 34, 2900 McDaniel, 2007 Bestaoui-Spurr, 2018, Controlling proppant wettability leads to increase flowback recovery and flow in frac-packs Goyal, 2017 Zhao, 2019, Experimental study on a new type of self-propping fracturing technology, Energy, 183, 249, 10.1016/j.energy.2019.06.137 Santos, 2018, Expandable proppants to moderate production drop in hydraulically fractured wells, J. Nat. Gas Sci. Eng., 55 (Jul, 182, 10.1016/j.jngse.2018.04.026 Harrington, 1979 Pan, 2020, Progress of simulation study on the migration and distribution of proppants in hydraulic fractures, Nat. Gas Ind., 40, 54 Brannon, 2006 Wen, 2015, Dynamic experiment on slick-water prop-carrying capacity, Oil Drilling Prod. Technol., 37, 97 Xu, 2019, Transportation and distribution laws of proppants in tortuous micro-fractures, Acta Pet. Sin., 40(8) (Aug, 965 Yang, 2019, Numerical study on proppant transport and placement in complex fractures system of shale formation using eulerian multiphase model approach Gong, 2020, Proppant placement in complex fracture geometries: a computational fluid dynamics study, J. Nat. Gas Sci. Eng., 79, 10.1016/j.jngse.2020.103295 Akhshik, 2022, Simulation of proppant transport at intersection of hydraulic fracture and natural fracture of wellbores using CFD-DEM, Particuology, 63, 112, 10.1016/j.partic.2021.05.005 Zhang, 2017, Simulation of the transport and placement of multi-sized proppant in hydraulic fractures using a coupled CFD-DEM approach, Adv. Powder Technol., 28, 1704, 10.1016/j.apt.2017.04.008 Chang, 2017, Model development of proppant transport through hydraulic fracture network and parametric study, J Petrol. Sci. Eng., 150, 224, 10.1016/j.petrol.2016.12.003 Yang, 2021, A model to calculate fracture conductivity considering Proppant transport and embedment depth, Chem. Tech. Fuels. Oil., 57, 499, 10.1007/s10553-021-01273-4 Wu, 2015, A model for gas transport in microfractures of shale and tight gas reservoirs, AICHE J., 61, 2079, 10.1002/aic.14791 Zhou, 2016, Experimental investigation of the effect of imbibition on shale permeability during hydraulic fracturing, J. Nat. Gas. Sci. Eng., 413, 10.1016/j.jngse.2016.01.023 Cortez-Montalvo, 2018 Danso, 2020, Recent advances in Multifunctional Proppant Technology and increased well output with Micro and Nano Proppants, J. Pet. Sci. Eng., 196 Dahl, 2015 Dahl, 2015 Aslannezhad, 2021, Micro-proppant placement in hydraulic and natural fracture stimulation in unconventional reservoirs: a review, Energy Rep., 7, 8997, 10.1016/j.egyr.2021.11.220 Zhang, 2021, Combined micro-proppant and supercritical carbon dioxide (SC-CO2) fracturing in shale gas reservoirs: a review, Fuel., 305, 121431, 10.1016/j.fuel.2021.121431