主要论文著作
代表性论文:
1. 谷坤生,周剑*,戴福初,张路青(2024).地震P波倾斜入射下单面坡动力响应分析.地球物理学报(SCI). (接收待刊)
2.Xiao Peng,Jian Zhou*, Luqing Zhang et al., (2024). A novel bi-modular elastic algorithm inParticle Flow Code for thermal cracking modeling of rock.Theoretical and Applied Fracture Mechanics, 130, 104257.
3.Wang, S.,Zhou, J.*, Zhang, L., Han, Z., & Kong, Y. (2023). Modeling Interactions between Hydraulic and Closed Natural Fractures in Brittle Crystalline Rocks: A Fluid–Solid Coupling Grain-Based Approach for Characterizing Microcracking Behaviors.Rock Mechanics and Rock Engineering, 1-32.https://doi.org/10.1007/s00603-023-03594-8
4.Li, R., Zhang, L., Han, Z.,Zhou, J., Wang, S., & Schüttrumpf, H. (2023). Effect of interlayer mixed zone and effective stress on permeability anisotropy of NGH turbidite reservoir.Energy, 284, 129172.
5.Wang, S.,Zhou, J.*, Zhang, L., Han, Z., & Kong, Y. (2023). Numerical investigation of interactions between hydraulic and pre-existing opening-mode fractures in crystalline rocks based on a hydro-grain-based model.Geoenergy Science and Engineering, 229, 212073.
6.Wang, S.,Zhou, J.*, Zhang, L. et al. (2023).Modeling Injection-Induced Fracture Propagation in Crystalline Rocks by a Fluid–Solid Coupling Grain-Based Model.Rock Mech Rock Eng56, 5781–5814. https://doi.org/10.1007/s00603-023-03374-4
7.Li, R., Zhang, L.,Zhou, J., Han, Z., Pan, Z., & Schüttrumpf, H. (2023). Investigation on permeability anisotropy in unconsolidated hydrate-bearing sediments based on pore-scale numerical simulation: Effect of mineral particle shape and pore-filling.Energy, 267, 126456.
8.周剑,张路青(2022).基于间接边界元方法的SH波倾斜入射下边坡动力响应特征.地球科学,47(12):1-12.(EI)
9.马显东,周剑*,张路青,孙娟娟,黄福有.强震区公路沿线崩塌危岩体特征提取及失稳分析[J].岩石力学与工程学报,2022,41(S1):2901-2914.(EI)
10.Wang, S.,Zhou, J.*, Zhang, L., Han, Z., & Zhang, F. (2021). Parameter studies on the mineral boundary strength influencing the fracturing of the crystalline rock based on a novel Grain-Based Model.Engineering Fracture Mechanics, 107388.
11.Zhou, J.*, Zhang, L., Qi, S., & Yang, D. (2020). Empirical ratio of dynamic to static stiffness for propped artificial fractures under variable normal stress.Engineering Geology, 105683.
12.Zhou J, Zhang, L., Li, X.*, & Pan, Z*. (2019). Experimental and modeling study of the stress-dependent permeability of a single fracture in shale under high effective stress.Fuel, 257, 116078.
13.Zhou J*, Lan, H., Zhang, L., Yang, D., Song, J., & Wang, S. (2019). Novel grain-based model for simulation of brittle failure of Alxa porphyritic granite.Engineering Geology, 251, 100-114.
14.Zhang L.,Zhou J*., et al. (2018). Sensitivity analysis on the interaction between hydraulic and natural fractures based on an explicitly coupled hydro-geomechanical model in PFC2D.Journal ofPetroleumScience andEngineering, 167, 638-653.
15.Zhou, J., Zhang, L., Pan, Z., & Han, Z. (2017).Numerical studies of interactions between hydraulic and natural fractures by Smooth Joint Model.Journal of Natural Gas Science and Engineering,46, 592-602.
16.Zhou J., Zhang L., et al., 2016.Numerical investigation of fluid-driven near-borehole fracture propagation in laminated reservoir rock using PFC2D.Journal of Natural Gas Science and Engineering, 36, Part A, 719-733.