Abstract:In order to analyze damage evolution state of coal sample in hydraulic fracture process,a joint test method combining borehole strain and electrical resistivity has been proposed. The borehole strain and electrical resistivity response characteristic of coal samples in hydraulic fracture process have been studied with self-developed hydraulic fracture experimental system. The curves of borehole strain,electrical resistivity and water pressure have been obtained while the response mechanism is analyzed. The results show that there is strong regularity in borehole strain and electrical resistivity curves. The borehole strain curves show “V” shape while the electrical resistivity curves show “” shape. When water takes up the space of borehole,the electrical resistivity of coal samples reaches the minimum value. When the borehole fractured,borehole strain and electrical resistivity increase to the maximum value gradually. Borehole strain reflects the deformation characteristic of borehole during hydraulic fracture process while the electrical resistivity reflects the initiation and development of fissure inner coal samples. Volume fracturing of coal samples causes the dilatation of fissure,resulting in sudden change of electrical resistivity. The curves of borehole strain,electrical resistivity and water pressure have rich information for fracturing of coal sample in hydraulic fracture process. And it provides a new method to analyze initiation behavior of coal sample in hydraulic fracture process.
李术才,许新骥,刘征宇,等. 单轴压缩条件下砂岩破坏全过程电阻率与声发射响应特征及损伤演化[J]. 岩石力学与工程学报,2014,33(1):14-23.(LI Shucai,XUXinji,LIU Zhengyu,et al. Electrical resistivity and acoustic emission response characteristic and damage evolution of sandstone during whole process of uniaxial compression[J]. Chinese Journal of Rock Mechanics and Engineering,2014,33(1):14-23.(in Chinese))
[2]
王俊璇,赵明阶,苏初明. 岩石在受载条件下电阻率变化特征研究综述[J]. 重庆交通大学学报:自然科学版,2011,30(3):419-423.(WANG Junxuan,ZHAO Mingjie,SU Chuming. Research review ofresistivity variation characteristic under load conditions of rock[J].Journal of Chongqing Jiaotong University:Natural Science,2011,30(3):419-423.(in Chinese))
[3]
郝锦绮,冯锐,周建国,等. 岩石破裂过程中电阻率变化机制的探讨[J]. 地球物理学报,2002,45(3):426-434.(HAO Jinqi,FENG Rui,ZHOU Jianguo,et al. Study on the mechanism of resistivity changesduring rock cracking[J]. Chinese Journal of Geophysics,2002,45(3):426-434.(in Chinese))
[4]
陈耕野,田军,姚广仁. 岩石应力的电学效应及其断裂演化规律[J]. 岩石力学与工程学报,2005,24(11):1832-1 840.(CHEN Gengye,TIAN Jun,YAO Guangren. Electrical effect of rock stress and its fractureevolution laws[J]. Chinese Journal of Rock Mechanics and Engineering,2005,24(11):1832-1840.(in Chinese))
[5]
刘斌,李术才,李树忱,等. 电阻率层析成像法监测系统在矿井突水模型试验中的应用[J]. 岩石力学与工程学报,2010,29(2):297-306.(LIU Bin,LI Shucai,LI Shuchen,et al. Application of electrical resistivity tomography monitoring system to mine water inrush model test[J]. Chinese Journal of Rock Mechanics and Engineering,2010,29(2):297-306.(in Chinese))
[6]
刘树才,刘鑫明,姜志海,等. 煤层底板导水裂隙演化规律的电法探测研究[J]. 岩石力学与工程学报,2009,28(2):348-356.(LIU Shucai,LIU Xinming,JIANG Zhihai,et al. Research on electrical prediction for evaluating water conducting fracture zones in coal seam floor[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(2):348-356.(in Chinese))
[7]
BRACE W F,ORANGE A S. Electrical resistivity changes in saturatedrock under stress[J]. Science,1966,153(3 743):1525- 1526.
[8]
付伟,汪稔,胡明鉴,等. 不同温度下冻土单轴抗压强度与电阻率关系研究[J]. 岩土力学,2009,30(1):73-78.(FU Wei,WANG Ren,HU Mingjian,et al. Study of relationship between uniaxial compressible strength and electrical resistivity of frozen soil under different temperatures[J]. Rock and Soil Mechanics,2009,30(1):73-78.(in Chinese))
[9]
李德春,舒继森. 岩体破坏过程中的电阻率变化试验[J]. 中国矿业大学学报,1999,28(5):491-493.(LI Dechun,SHU Jisen. Experiment of resistivity variation of rocks infailure process[J]. Journal of China University of Mining andTechnology,1999,28(5):491-493.(in Chinese))
[10]
张流,黄建国. 水对岩石变形过程中电阻率变化的影响[J]. 地震,2003,23(1):8-14.(ZHANG Liu,HUANG Jianguo. Influence of water on electrical resistivity of deforming rock samples[J]. Earthquake,2003,23(1):8-14.(in Chinese))
[11]
WANG Y H,LIU Y F,MA H T. Changing regularity of rock damagevariable and resistivity under loading condition[J]. Safety Science,2012,50(4):718-722.
[12]
WANG YG,WEI JP,YANG S. Experimental research onelectrical parameters variation of loaded coal[J]. Procedia Engineering,2011,26:890-897.
[13]
孟磊,刘明举,王云刚. 构造煤单轴压缩条件下电阻率变化规律的试验研究[J]. 煤炭学报,2011,35(12):2028-2032.(MENG Lei,LIU Mingju,WANG Yungang. Study on the rules of electricalresistivity variation of tectonic coal in uniaxial compression experiment[J].Journal of China Coal Society,2010,35(12):2028- 2032.(in Chinese))
[14]
陈鹏,王恩元,朱亚飞. 受载煤体电阻率变化规律的试验研究[J]. 煤炭学报,2013,38(4):548-553.CHEN Peng,WANG Enyuan,ZHU Yafei. Experimental study on resistivity variation regularities of loading coal[J].Journal of China Coal Society,2013,38(4):548-553.(in Chinese))
[15]
王恩元,陈鹏,李忠辉,等. 受载煤体全应力-应变过程电阻率响应规律[J]. 煤炭学报,2014,39(11):2220-2225.(WANG Enyuan,CHEN Peng,LI Zhonghui,et al. Resistivity response in complete stress-strain process of loaded coal[J]. Journal of ChinaCoal Society,2014,39(11):2220-2225.(in Chinese))
[16]
陈鹏. 煤与瓦斯突出区域危险性的直流电法响应及应用研究[博士学位论文][D]. 北京:中国矿业大学,2013.(CHEN Peng. Direct current electric method response of regional coal and gas outburst danger and its application[Ph. D. Thesis][D]. Beijing:China Universityof Mining and Technology,2013.(in Chinese))
[17]
EVANS K F,ZAPPONE A,KRAFT T,et al. A survey of the induced seismic responses to fluid injection in geothermal and CO2reservoirs in Europe[J]. Geothermics,2012,41(1):30-54.
[18]
张金成,王小剑. 煤层压裂裂缝动态法监测技术研究[J]. 天然气工业,2004,24(5):107-109.(ZHANG Jicheng,WANG Xiaojian. Dynamic monitor method for fractures of coal seam[J]. Natural Gas Industry,2004,24(5):107-109.(in Chinese))