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2025年MultiFracS应用盘点-用户发表论文列表

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多物理场断裂分析软件 MultiFracS 自 2022 年初对外发布以来,凭借其在连续 - 非连续介质断裂模拟、多物理场耦合分析等方面的独特优势,已成为科研工作者开展创新性研究的得力工具。2025 年,用户使用该软件发表的科研成果再创新高,据不完全统计,有27篇论文发表于 International Journal of Solids and Structures、Rock Mechanics and Rock Engineering、Tunnelling and Underground Space Technology、Engineering Geology、Applied Thermal Engineering等领域顶尖期刊和国内外主流期刊上,应用场景持续拓展,覆盖隧道工程、地热开发、油气开采、铀矿开采、电池材料等多个关键领域,充分彰显了软件的强大适用性。

期待 2026 年,有更多科研工作者加入 MultiFracS 用户大家庭,在更多新兴领域开展探索性研究,产出更多具有影响力的科研成果,共同推动MultiFracS多物理场断裂力学数值模拟技术的发展与工程应用!

如果您也使用 MultiFracS 软件发表了论文,欢迎联系我们补充收录,让更多人看到您的研究成果。

2025年用户发表论文列表

(1)Li Y, Guo Y, Zhang Y, et al. Modeling of diffusion-induced inter-/transgranular cracking in polycrystal NCM particles: Effects of external force and boundary constraints[J]. International Journal of Solids and Structures, 2025, 313: 113300.  

(2)Liu T, Cheng L, Yang F, et al. Study on Mechanical Properties and Crack Evolution Mechanis m of Cross-Fractured Rock Mass Under Fissure Water Pressure[J]. Rock Mechanics and Rock Engineering, 2025: 1-25.  

(3)Huang K, Huang S, Ding X, et al. Study on the deformation and failure mechanis m of tertiary water-rich soft rock tunnels based on the moisture migration-fracture coupling model[J]. Tunnelling and Underground Space Technology, 2025, 163: 106715.  

(4)Niu Q, Zhao X, Chang J, et al. Numerical simulation on physical composite stimulation and geothermal development performance of hot dry rock: A Case study from Matouying Uplift, China[J]. Applied Thermal Engineering, 2025, 267: 125714.  

(5)Qin Y, Yu L, Wang M, et al. Intelligent optimization of TBM cutter spacing and FDEM-based investigation of rock breakage considering brittleness[J]. Underground Space, 2025.  

(6)Zhao Y, Li M, Qiu X, et al. Mechanical response properties and acoustic emission characteristics of rock-backfilling composites under uniaxial compression[J]. Engineering Failure Ana lysis, 2025: 110394.  

(7)Xie Z, Long T, Wu X, et al. Radial borehole fracturing in the multilayered shale oil reservoir based on a 3D discrete lattice model[J]. Engineering Geology, 2025: 108444.  

(8)Liu T, Cheng L, Wang Z, et al. The mechanical properties and microscopic failure mechanis m of fractured granite under fissure water pressure[J]. Engineering Failure A nalysis, 2025, 171: 109393.  

(9)Suo Y, Wei X H, Zhao Y J, et al. Simulation an alysis of hydraulic fracture initiation and propagation mechanis ms under mixed-mode and reservoir fracturing[J]. Petroleum Science, 2025.  

(10)Zhang J, Fu X, Tan C, et al. Study on local primary support method for tunnels based on the zoning results of excavation disturbed zone[J]. Environmental Earth Sciences, 2025, 84(10): 278.  

(11)Chen Y, Wang Q, Yuan W, et al. Permeability evolution of uranium reservoirs under multi-field coupling (gas-temperature-force-seepage) and artificial intelligence multi-parameter target optimization study[J]. Physics of Fluids, 2025, 37(3).  

(12)Yang R, Long T, Shen Y, et al. Numerical investigation of fracture propagation mechanis m subjected to cyclic soft fracturing in naturally fractured HDR reservoirs[C]//ARMA US Rock Mechanics/Geomechanics Symposium. ARMA, 2025: D032S039R006.  

(13)Wang T, Zeng G, Hu D, et al. Numerical study on the mechanical properties, failure mode, energy dissipation, and acoustic emission of defected-rocks under uniaxial compression[J]. Scientific Reports, 2025, 15(1): 9595.  

(14)Hu Y, Wang Y, Wang Q, et al. The propagation laws of hydraulic fractures under the influence of natural fracture zones[J]. Physics of Fluids, 2025, 37(1).  

(15)Suo Y, Zhang X, Zhao Y, et al. Mechanis ms of hydraulic fracture propagation in bedded shale: Insights from finite discrete element simulations[J]. Physics of Fluids, 2025, 37(8).  

(16)Xi Y, Sun M, Li G, et al. Crack Development in Compacted Loess Subjected to Wet–Dry Cycles: Experimental Observations and Numerical Modeling[J]. Buildings, 2025, 15(15): 2625.  

(17)Wang Q, Chen Y, Li X, et al. Closed-loop intelligent optimization of blasting-induced permeability enhancement in low-permeability sandstone-type uranium deposits: Coupling boundary conditions, fracture features, and flow rate[J]. Physics of Fluids, 2025, 37(8).  

(18)Ji X, Wang Q, Yuan W, et al. Rapid extraction of coal seam gas and intelligent control of parameters based on directional drilling, blasting, and infiltration enhancement[J]. AIP Advances, 2025, 15(11).  

(19)Hu Y, et al. A nalysis and countermeasures of asymmetric failure in layered surrounding rock tunnels based on FDEM: A case study[J]. Engineering Failure An alysis, 2025, 167: 109049.  

(20)曾波王玉丰宋毅四川盆地南部深层页岩储层天然裂缝 对体积压裂裂缝网络的影响[J]. Petroleum Geology & Oilfield Development in Daqing, 2025, 44(3).  

(21)张熙远李祥龙左庭基于 FDEM 的含铜钠长岩冲击破裂过程与能量耗散特征研究[J]. 高压物理学报, 2025.  

(22)王强王玉丰赵金洲深层页岩气井压裂窜扰生产一体化数值模拟[J]. Natural Gas Industry, 2025, 45(8).  

(23)马军强王红胜董国伟煤系岩层水力裂缝扩展轨迹及压裂效果智能预测研究[J]. 采矿与岩层控制工程学报, 2025.  

(24)左庭祥龙王建国冲击荷载下含铜矿岩能量耗散的数值模拟[J]. 爆炸与冲击, 2025, 45(5): 053202-1-053202-14.  

(25) A linear fracture constitutive model for the two-dimensional finite-discrete element method (FDEM) and its parameters calibration procedure[J]. Engineering An alysis with Boundary Elements, 2025, 176: 106228.  

(26)A coupled FDEM–SPH model for simulating problems of fluid–solid interaction[J]. International Journal for Numerical and An alytical Methods in Geomechanics, 2025, 49(14): 3317-3336.  

(27)A 3D discrete model for soil desiccation cracking in consideration of moisture diffusion[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2025, 17(1): 614-635.

来源:MultiFracS多物理场断裂分析软件
ACTMechanicalDeform断裂化学油气芯片云计算UM离散元爆炸材料控制MultiFracS
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首次发布时间:2026-01-07
最近编辑:7月前
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MultiFracS多物理场断裂分析软件
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