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[1] Jin, Y.*, L. Xianhe, S. Huibo, Z. Junling, P. Jienan (2019), General fractal topography: an open mathematical framework to characterize and model mono-scale-invariances, Nonlinear Dynam, 96(4), 2413-2436. SCI1区(小类)
[2] Jin, Y.*, J. Zheng, X. Liu, J. Pan, S. Liu (2019), Control mechanisms of self-affine, rough cleat networks on flow dynamics in coal reservoir, Energy, 189, 116146. SCI1区(小类)
[3] Jin, Y.*, J. Dong, X. Zhang, X. Li, Y. Wu (2017), Scale and size effects on fluid flow through self-affine rough fractures, Int J. Heat Mass Tran, 105, 443-451. SCI2区
[4] Jin, Y.*, X. Li, M. Zhao, X. Liu, H. Li (2017), A mathematical model of fluid flow in tight porous media based on fractal assumptions, Int J. Heat Mass Tran, 108, Part A, 1078-1088. SCI2区
[5] Jin, Y.*, Y. Wu, H. Li, M. Zhao, J. Pan (2017), Definition of fractal topography to essential understanding of scale-invariance, Sci. Rep, 7, 46672. SCI2区
[6] Jin, Y.*, Y. B. Zhu, X. Li, J. L. Zheng, J. B. Dong (2015), Scaling Invariant Effects on the Permeability of Fractal Porous Media, Transport Porous Med, 109(2), 433-453. SCI3区
[7] Jin, Y. *, J. B. Dong, J. L. Zheng, X. Li, Y. Wu (2015), Kinematical measurement of hydraulic tortuosity of fluid flow in porous media, Int J. Mod Phys C, 26(2), 1550017. SCI4区
[8] Wang, B. Y., Y. JIN*, Q. Chen, J. L. Zheng, Y. B. Zhu, X. B. Zhang (2014), Derivation of permeability-pore relationship for fractal porous reservoirs using series-parallel flow resistance model and lattice Boltzmann method, Fractals, 22(3), 1440005. SCI2区
[9] Niu, Q., J. Pan, Y. Jin, H. Wang, M. Li, Z. Ji, K. Wang, Z. Wang (2019), Fractal study of adsorption-pores in pulverized coals with various metamorphism degrees using N2 adsorption, X-ray scattering and image analysis methods, J. Petrol Sci Eng, 176, 584-593. SCI3区
[10] Shi, X., J. Pan, Q. Hou, Y. Jin, Z. Wang, Q. Niu, M. Li (2018), Micrometer-scale fractures in coal related to coal rank based on micro-CT scanning and fractal theory, Fuel, 212, 162-172. SCI2区
[11] Pan, J., Y. Zhao, Q. Hou, Y. Jin (2015), Nanoscale Pores in Coal Related to Coal Rank and Deformation Structures, Transport Porous Med, 107(2), 543-554. SCI3区
[12] 金毅*, 郑军领, 董佳斌, 黄存捍, 李翔, 吴影 (2015), 自仿射粗糙割理中流体渗流的分形定律, 科学通报, 60(21), 2036-2047. 一级学报
[13] 金毅*, 祝一搏, 吴影, 郑军领, 董佳斌, 李翔 (2014), 煤储层粗糙割理中煤层气运移机理数值分析, 煤炭学报, 39(9), 1834-1842. EI
[14] 吕闰生, 金毅, 刘高峰 (2017), 中高煤阶煤储层水力压裂消突能量耗散特性, 采矿与安全工程学报, 34(5), 1015-1020, 1026. EI
[15] 金毅*, 赵梦余, 刘顺喜, 刘仙鹤 (2018), 基于压汞法的煤基质压缩对孔隙分形特征的影响, 中国煤炭, (08), 103-109.
[16] 金毅*, 刘仙鹤, 张朔, 张玥夕子 (2018), 一种广义自相似曲线分形建模方法, 河南理工大学学报(自然科学版), (05), 152-156.
[17] 金毅*, 李辉, 平瑞, 牛永斌, 张翔宇 (2018), 自仿射割理网络表征及流体渗流LBM模拟, 河南理工大学学报(自然科学版), (04), 55-60.