Coupled thermo-hydro-mechanical analysis of stimulation and production for fractured geothermal reservoirs S Li, XT Feng, D Zhang, H Tang Applied Energy 247, 40-59, 2019 | 126 | 2019 |
A fully coupled thermo-hydro-mechanical, three-dimensional model for hydraulic stimulation treatments S Li, X Li, D Zhang Journal of Natural Gas Science and Engineering 34, 64-84, 2016 | 86 | 2016 |
How effective is carbon dioxide as an alternative fracturing fluid? S Li, D Zhang SPE Journal 24 (02), 857-876, 2019 | 65 | 2019 |
Analysis of stress interference among multiple hydraulic fractures using a fully three-dimensional displacement discontinuity method H Tang, S Wang, R Zhang, S Li, L Zhang, YS Wu Journal of Petroleum Science and Engineering 179, 378-393, 2019 | 64 | 2019 |
A multi-continuum multiple flow mechanism simulator for unconventional oil and gas recovery X Li, D Zhang, S Li Journal of Natural Gas Science and Engineering 26, 652-669, 2015 | 61 | 2015 |
A new approach to the modeling of hydraulic-fracturing treatments in naturally fractured reservoirs S Li, D Zhang, X Li SPE Journal 22 (04), 1,064-1,081, 2017 | 57 | 2017 |
Stimulation Mechanism and Design of Enhanced Geothermal Systems: A Comprehensive Review S Li, S Wang, H Tang Renewable and Sustainable Energy Reviews 155, 111914, 2022 | 50 | 2022 |
A fully coupled model for hydraulic-fracture growth during multiwell-fracturing treatments: enhancing fracture complexity S Li, D Zhang SPE Production & Operations 33 (02), 235-250, 2018 | 47 | 2018 |
The effect of heterogeneity on hydraulic fracturing in shale H Tang, S Li, D Zhang Journal of Petroleum Science and Engineering 162, 292-308, 2018 | 44 | 2018 |
Fluid and heat flow in enhanced geothermal systems considering fracture geometrical and topological complexities: An extended embedded discrete fracture model S Zheng, S Li, D Zhang Renewable Energy 179, 163-178, 2021 | 27 | 2021 |
Hydromechanical Modeling of Nonplanar Three‐Dimensional Fracture Propagation Using an Iteratively Coupled Approach S Li, A Firoozabadi, D Zhang Journal of Geophysical Research: Solid Earth 125 (08), e2020JB020115, 2020 | 26 | 2020 |
A high-efficiency 3D boundary element method for estimating the stress/displacement field induced by complex fracture networks H Fan, S Li, XT Feng, X Zhu Journal of Petroleum Science and Engineering 187, 106815, 2020 | 24 | 2020 |
Three‐Dimensional Hydrochemical Model for Dissolutional Growth of Fractures in Karst Aquifers S Li, Z Kang, XT Feng, Z Pan, X Huang, D Zhang Water Resources Research 56 (3), e2019WR025631, 2020 | 22 | 2020 |
Development of 3-D Curved Fracture Swarms in Shale Rock Driven by Rapid Fluid Pressure Buildup: Insights from Numerical Modeling S Li, D Zhang Geophysical Research Letters 48 (08), e2021GL092638, 2021 | 14 | 2021 |
Three-dimensional thermoporoelastic modeling of hydrofracturing and fluid circulation in hot dry rock S Li, D Zhang Journal of Geophysical Research: Solid Earth 128 (2), e2022JB025673, 2023 | 13 | 2023 |
Understanding and predicting proppant bedload transport in hydraulic fracture via numerical simulation D Wang, S Li, D Zhang, Z Pan Powder Technology 417, 118232, 2023 | 8 | 2023 |
An Analytical Solution of Pressure and Displacement Induced by Recovery of Poroelastic Reservoirs and its Applications S Wang, S Li, YS Wu SPE Journal, 10.2118/214290-PA, 2023 | 3 | 2023 |
Geomechanical Model for Frictional Contacting and Intersecting Fracture Networks: An Improved 3D Displacement Discontinuity Method H Fan, J Shao, S Li SPE Journal 27 (06), 3896–3913., 2022 | 3 | 2022 |
Evaluating the transport performance of novel-shaped proppant in slickwater fracturing with the multi-scale modeling framework J Zeng, H Li, S Li, D Zhang SPE Journal 27 (04), 2093–2108., 2022 | 3 | 2022 |
Staging optimization of multi-stage perforation fracturing based on unsupervised machine learning D Zhang, Y Wei, S Li, Y Chen, J Xu Journal of China University of Petroleum (Edition of Natural Science) 45 (4 …, 2021 | 3 | 2021 |