Citation: | WANG Shuai, YU Qing-lei, WANG Ling. Effect of fracture roughness on permeability coefficient under uniaxial compression[J]. Chinese Journal of Engineering, 2021, 43(7): 915-924. doi: 10.13374/j.issn2095-9389.2020.05.26.001 |
[1] |
Rong G, Yang J, Cheng L, et al. Laboratory investigation of nonlinear flow characteristics in rough fractures during shear process. J Hydrol, 2016, 541: 1385 doi: 10.1016/j.jhydrol.2016.08.043
|
[2] |
王志榮, 宋沛, 溫震洋, 等. 裂隙性儲層水平井起裂行為的控制. 工程科學學報, 2020, 42(11):1449
Wang Z R, Song P, Wen Z Y, et al. Control of fracturing behavior of fractured reservoir under horizontal wells. Chin J Eng, 2020, 42(11): 1449
|
[3] |
Ju Y, Dong J B, Gao F, et al. Evaluation of water permeability of rough fractures based on a self-affine fractal model and optimized segmentation algorithm. Adv Water Resources, 2019, 129: 99 doi: 10.1016/j.advwatres.2019.05.007
|
[4] |
Rezaei Niya S M, Selvadurai A P S. Correlation of joint roughness coefficient and permeability of a fracture. Int J Rock Mech Min Sci, 2019, 113: 150 doi: 10.1016/j.ijrmms.2018.12.008
|
[5] |
Zhang X, Chai J R, Qin Y, et al. Experimental study on seepage and stress of single-fracture radiation flow. KSCE J Civil Eng, 2019, 23(3): 1132 doi: 10.1007/s12205-019-1519-7
|
[6] |
Zhu J T, Cheng Y Y. Effective permeability of fractal fracture rocks: Significance of turbulent flow and fractal scaling. Int J Heat Mass Transfer, 2018, 116: 549 doi: 10.1016/j.ijheatmasstransfer.2017.09.026
|
[7] |
許光祥, 張永興, 哈秋舲. 粗糙裂隙滲流的超立方和次立方定律及其試驗研究. 水利學報, 2003(3):74 doi: 10.3321/j.issn:0559-9350.2003.03.014
Xu G X, Zhang Y X, Ha Q L. Super-cubic and sub-cubic law of rough fracture seepage and its experiments study. J Hydraulic Eng, 2003(3): 74 doi: 10.3321/j.issn:0559-9350.2003.03.014
|
[8] |
速寶玉, 詹美禮, 趙堅. 仿天然巖體裂隙滲流的實驗研究. 巖土工程學報, 1995(5):19 doi: 10.3321/j.issn:1000-4548.1995.05.004
Su B Y, Zhan M L, Zhao J. Study on fracture seepage in the imitative nature rock. Chin J Geotech Eng, 1995(5): 19 doi: 10.3321/j.issn:1000-4548.1995.05.004
|
[9] |
鞠楊, 張欽剛, 楊永明, 等. 巖體粗糙單裂隙流體滲流機制的實驗研究. 中國科學: 技術科學, 2013, 43(10):1144 doi: 10.1360/ze2013-43-10-1144
Ju Y, Zhang Q G, Yang Y M, et al. An experimental investigation on the mechanism of fluid flow through single rough fracture of rock. Sci Sin Technol, 2013, 43(10): 1144 doi: 10.1360/ze2013-43-10-1144
|
[10] |
賀玉龍, 陶玉敬, 楊立中. 不同節理粗糙度系數單裂隙滲流特性試驗研究. 巖石力學與工程學報, 2010, 29(增刊 1):3235
He Y L, Tao Y J, Yang L Z. Experimental research on hydraulic behaviors in a single joint with various values of JRC. Chin J Rock Mech Eng, 2010, 29(Suppl 1): 3235
|
[11] |
段慕白, 李皋, 孟英峰, 等. 不同節理粗糙度系數的裂隙滲流規律研究. 水資源與水工程學報, 2013, 24(5):41 doi: 10.11705/j.issn.1672-643X.2013.05.009
Duan M B, Li G, Meng Y F, et al. Research on regulation of fracture seepage in different joint roughness coefficients. J Water Resour Water Eng, 2013, 24(5): 41 doi: 10.11705/j.issn.1672-643X.2013.05.009
|
[12] |
趙佳偉, 蘭紅波, 楊昆, 等. 電場驅動熔融噴射沉積高分辨率3D打印. 工程科學學報, 2019, 41(5):652
Zhao J W, Lan H D, Yang K, et al. High-resolution fused deposition 3D printing based on electric-field-driven jet. Chin J Eng, 2019, 41(5): 652
|
[13] |
鞠楊, 謝和平, 鄭澤民, 等. 基于3D打印技術的巖體復雜結構與應力場的可視化方法. 科學通報, 2014, 59(32):3109 doi: 10.1360/csb2014-59-32-3109
Ju Y, Xie H P, Zheng Z M, et al. Visualization of the complex structure and stress field inside rock by means of 3D printing technology. Chin Sci Bull, 2014, 59(32): 3109 doi: 10.1360/csb2014-59-32-3109
|
[14] |
王培濤, 劉雨, 章亮, 等. 基于3D打印技術的裂隙巖體單軸壓縮特性試驗初探. 巖石力學與工程學報, 2018, 37(2):364
Wang P T, Liu Y, Zhang L, et al. Preliminary experimental study on uniaxial compressive properties of 3D printed fractured rock models. Chin J Rock Mech Eng, 2018, 37(2): 364
|
[15] |
Huang Y B, Zhang Y J, Yu Z W, et al. Experimental investigation of seepage and heat transfer in rough fractures for enhanced geothermal systems. Renewable Energy, 2019, 135: 846 doi: 10.1016/j.renene.2018.12.063
|
[16] |
Zhang Z Y, Nemcik J. Fluid flow regimes and nonlinear flow characteristics in deformable rock fractures. J Hydrol, 2013, 477: 139 doi: 10.1016/j.jhydrol.2012.11.024
|
[17] |
Chen Y D, Lian H J, Liang W G, et al. The influence of fracture geometry variation on non-Darcy flow in fractures under confining stresses. Int J Rock Mech Min Sci, 2019, 113: 59 doi: 10.1016/j.ijrmms.2018.11.017
|
[18] |
Yin Q, He L X, Jing H W, et al. Quantitative estimates of nonlinear flow characteristics of deformable rough-walled rock fractures with various lithologies. Processes, 2018, 6(9): 149 doi: 10.3390/pr6090149
|
[19] |
Zhou J Q, Hu S H, Fang S, et al. Nonlinear flow behavior at low Reynolds numbers through rough-walled fractures subjected to normal compressive loading. Int J Rock Mech Min Sci, 2015, 80: 202 doi: 10.1016/j.ijrmms.2015.09.027
|
[20] |
Barton N, Choubey V. The shear strength of rock joints in theory and practice. Rock Mech, 1977, 10(1-2): 1 doi: 10.1007/BF01261801
|
[21] |
張強, 李小春, 胡少斌, 等. 高應力下花崗巖耦合節理在剪切過程中滲透率演化特性. 巖土力學, 2018, 39(10):3641
Zhang Q, Li X C, Hu S B, et al. Permeability evolution of coupling granite joint during shearing under high-stress condition. Rock Soil Mech, 2018, 39(10): 3641
|
[22] |
仵彥卿, 張卓元. 巖體水力學導論. 成都: 西南交通大學出版社, 1994
Wu Y Q, Zhang Z Y. Introduction to Rock Mass Hydraulics. Chengdu: Southwest Jiaotong University Press, 1994
|
[23] |
Wang Z H, Xu C S, Dowd P. A modified cubic law for single-phase saturated laminar flow in rough rock fractures. Int J Rock Mech Min Sci, 2018, 103: 107 doi: 10.1016/j.ijrmms.2017.12.002
|
[24] |
潘汝江, 何翔. 巖石斷裂面曲折度影響下的粗糙單裂隙滲流規律. 遼寧工程技術大學學報(自然科學版), 2020, 39(4):293
Pan R J, He X. Seepage law of rough single fracture under the influence of tortuosity of rock fracture surface. J Liaoning Tech Univ Nat Sci Ed, 2020, 39(4): 293
|
[25] |
Chen Z, Qian J Z, Luo S H, et al. Experimental study of friction factor for groundwater flow in a single rough fracture. J Hydrodyn Ser B, 2009, 21(6): 820 doi: 10.1016/S1001-6058(08)60218-8
|
[26] |
Rong G, Yang J, Cheng L, et al. A Forchheimer equation-based flow model for fluid flow through rock fracture during shear. Rock Mech Rock Eng, 2018, 51(9): 2777 doi: 10.1007/s00603-018-1497-y
|
[27] |
Yin Q, Ma G W, Jing H W, et al. Hydraulic properties of 3D rough-walled fractures during shearing: An experimental study. J Hydrol, 2017, 555
|