Quantitative characterization of fracture surface undulations and gas-guiding patterns in fractured rocks under steady loading

Zihan Chen , Quanle Zou , Feixiang Lv , Qican Ran , Xiaoyan Sun , Xianwei Heng

Int J Min Sci Technol ›› 2025, Vol. 35 ›› Issue (10) : 1753 -1773.

PDF (13554KB)
Int J Min Sci Technol ›› 2025, Vol. 35 ›› Issue (10) :1753 -1773. DOI: 10.1016/j.ijmst.2025.08.017
Research article
research-article
Quantitative characterization of fracture surface undulations and gas-guiding patterns in fractured rocks under steady loading
Author information +
History +
PDF (13554KB)

Abstract

Fractures in rock strata serve as flow pathways for gas flow. The undulation of fracture channels can influence the guidance of gas flow. In this context, four-point bending experiments on prefabricated fractured rocks at different angles under stable stepped loading stress. The experiment results clarified the evolutionary law that the undulation degree of the rock tensile fracture surface is separated by an initial fracture angle of 45°. The high undulation intervals were less than 45°, whereas the low undulation intervals were more than 45°. Furthermore, the relative undulation degree, undulation frequency, and matching degree of the fracture surface were quantified. The relationship between the change in fracture surface undulation and gas flow guidance was established. Based on this, the stability, tortuosity, and uniformity of the gas flow in the fracture channel were quantitatively characterized. Subsequently, numerical models of the fracture channels were constructed to validate the indices proposed in this study. The results of the study clarified the influence of different initial fracture angles on the undulation changes of fracture surfaces, and established the relationship between these changes and gas flow, which is conducive to understanding the role of internal fracture channels in rocks in guiding the gas flow process.

Keywords

Tensile damage / Fracture surface roughness / Pattern of undulation / Gas-guiding process / Flow characteristics

Cite this article

Download citation ▾
Zihan Chen, Quanle Zou, Feixiang Lv, Qican Ran, Xiaoyan Sun, Xianwei Heng. Quantitative characterization of fracture surface undulations and gas-guiding patterns in fractured rocks under steady loading. Int J Min Sci Technol, 2025, 35(10): 1753-1773 DOI:10.1016/j.ijmst.2025.08.017

登录浏览全文

4963

注册一个新账户 忘记密码

Acknowledgments

This work was financially supported by the National Natural Science Foundation of China (No. 52522405) and Henan Provincial Natural Science Foundation (No. 252300421323).

References

[1]

Ran QC, Liang YP, Yang ZL, Zou QL, Ye CF, Tian CL, Wu ZP, Zhang BC, Wang WZ. Deterioration mechanisms of coal mechanical properties under uniaxial multi-level cyclic loading considering initial damage effects. Int J Rock Mech Min Sci 2025; 186:106006.

[2]

Xu JL, Qian MG. Study and application of dominant stratum theory for control of strata movement. China Min Mag 2001; 10(6):54-6. in Chinese.

[3]

Zhang BC, Liang YP, Zou QL, Ding LQ, Ran QC. Experimental investigation into the damage evolution of sandstone under decreasing-amplitude stress rates and its implications for coalbed methane exploitation. Environ Earth Sci 2023; 82(9):208.

[4]

Feng MS. Research on overburden rock breaking law in shallow c oal mining. Doctoral dissertation. Fuxin: Liaoning Technical University; 2014. in Chinese.

[5]

Karacan CÖ. Modeling and analysis of gas capture from sealed sections of abandoned coal mines. Int J Coal Geol 2015; 138:30-41.

[6]

Huang P, Zhang JX, Yan XJ, Spearing AJS, Li M, Liu SW. Deformation response of roof in solid backfilling coal mining based on viscoelastic properties of waste gangue. Int J Min Sci Technol 2021; 31(2):279-89.

[7]

Chen ZH, Zou QL, Gao SK, Zhan JF, Chen CM, Ran QC, Sun XY. Long-term evolution of overlying rock fractures in mined-out areas and its effect on gas flow conductivity. Fuel 2023; 353:129213.

[8]

Jiang XY, Wu D, Zhao ZX, Yang Y, Tian JW, Wang FL. Experimental and numerical study on the damage evolution and acoustic emission multi-parameter responses of single flaw sandstone under uniaxial compression. Theor Appl Fract Mech 2024; 133:104535.

[9]

Wang J, Zhu WS, Ma HP. Crack propagation of jointed rock and application. Appl Mech Mater 2011;117-119:476-9.

[10]

Zhou J, Wang KZ, Zhou WD, Yao YL, Xie T. Uniaxial compressive damage characteristics of rock-like materials with prefabricated conjugate cracks. Appl Sci 2024; 14(2):823.

[11]

Huang YH, Wu SY, Yang C. Experimental study on the failure behaviors of sandstone specimens with two fissures under triaxial loading and unloading conditions. Eng Fract Mech 2024; 298:109933.

[12]

Li B, He YZ, Li L, Zhang JX, Shi Z, Zhang YP. Damage evolution of rock containing prefabricated cracks based on infrared radiation and energy dissipation. Theor Appl Fract Mech 2023; 125:103853.

[13]

Mu K, Zhang MH, Yu J. Study on stress relaxation and acoustic emission of fractured rocks with different fissure inclinations. Case Stud Constr Mater 2024;20.

[14]

Salmi EF, Malinowska A, Hejmanowski R. Investigating the post-mining subsidence and the long-term stability of old mining excavations: Case of Cow Pasture Limestone Mine, West Midlands. UK Bull Eng Geol Environ 2020; 79(1):225-42.

[15]

Xia BW, Ma ZK, Hu HR, Li Y, Zhao WM. A prediction method of stress intensity factor for mode-I crack in coal rock based on deep learning. Theor Appl Fract Mech 2022; 122:103645.

[16]

Lu YL, Li WS, Wang LG, Meng XY, Wang B, Zhang KW, Zhang XD. In-situ microscale visualization experiments on microcracking and microdeformation behaviour around a pre-crack tip in a three-point bending sandstone. Int J Rock Mech Min Sci 2019; 114:175-85.

[17]

Sarkar S, Kumar R, Murthy VMSR. Experimental and numerical simulation of crack propagation in sandstone by semi circular bend test. Geotech Geol Eng 2019; 37(4):3157-69.

[18]

Gao YN, Shao XS, Wang YL, Hou P, Gao MZ. Does double pre-notches have a greater impact than single pre-Notch on the mechanical and fracture behavior of rock? Insights from three-point bending tests using the numerical approach of grain-based model. Theor Appl Fract Mech 2024; 133:104624.

[19]

Shah KS, Bin Mohd Hashim MH, Emad MZ, Junaid M, Khan NM. Effect of particle morphology on mechanical behavior of rock mass. Arab J Geosci 2020; 13(15):708.

[20]

Zhou AT, Xu ZY, Wang K, Liu YF, Feng YF, Zhu ZB. Experimental and numerical analysis of high-pressure gas-driven rock particle impact and fragmentation rock technology. Phys Fluids 2024; 36(12):126614.

[21]

Li B, Mo YY, Zou LC, Liu RC, Cvetkovic V. Influence of surface roughness on fluid flow and solute transport through 3D crossed rock fractures. J Hydrol 2020; 582:124284.

[22]

Crandall D, Bromhal G, Karpyn ZT. Numerical simulations examining the relationship between wall-roughness and fluid flow in rock fractures. Int J Rock Mech Min Sci 2010; 47(5):784-96.

[23]

Isrm. Suggested methods for the quantitative description of discontinuities in rock masses. Int J Rock Mech Min Sci Geomech Abstr 1979; 16(2):22.

[24]

Li BX, Zhang WM, Xue YG, Li ZQ, Kong FM, Kong R, Wang G. Approach to characterize rock fracture surface: Insight from roughness and fractal dimension. Eng Geol 2023; 325:107302.

[25]

Li BX, Zhang WM, Xue YG, Kong R, Zhu WS, Yu YH, Chen YJ. An image segmentation-based method for quantifying the rock failure mechanism under true triaxial compression. Int J Rock Mech Min Sci 2022; 158:105195.

[26]

Wu CZ, Chu J, Wu SF, Hong Y. 3D characterization of microbially induced carbonate precipitation in rock fracture and the resulted permeability reduction. Eng Geol 2019; 249:23-30.

[27]

Razavi N, Aliha MRM, Berto F. Application of an average strain energy density criterion to obtain the mixed mode fracture load of granite rock tested with the cracked asymmetric four-point bend specimens. Theor Appl Fract Mech 2018; 97:419-25.

[28]

Yang XJ, Zhang WR, Xue DJ, Tao ZG, Xi SD. Seepage analysis of orthogonal shear cracks in granite based on fractal theory. Geotech Geol Eng 2022; 40 (1):425-41.

[29]

Yang K, Li W, Gao L, Wang HF, Liu JZ, Lin J. Multiscale transport characteristics of coalbed methane in abandoned mines and its applications in gas recovery. Nat Resour Res 2023; 32(4):1621-37.

[30]

Zou QL, Chen ZH, Zhan JF, Chen CM, Gao SK, Kong FJ, Xia XF. Morphological evolution and flow conduction characteristics of fracture channels in f ractured sandstone under cyclic loading and unloading. Int J Min Sci Tech nol 2023; 33 (12):1527-40.

PDF (13554KB)

8

Accesses

0

Citation

Detail

Sections
Recommended

/