Experimental study on the complex electrical dispersion response characteristics of coal during hydraulic fracturing
LEI Dongji
LIU Liying
JIA Ziqiang
LIU Ning
Abstract:Objectives To investigate the dispersion response characteristics of the complex electrical proper-ties of coal during hydraulic fracturing,Methods the real part R and imaginary part X of the complex elec-trical resistance of the hydraulically fractured coal were measured.Their changes were analyzed to deter-mine the fracture development process within the coal body,and their dispersion characteristics were exam-ined using excitation polarization theory.Results The results showed that:(1)during the hydraulic fractur-ing process,the dispersion curves of the real part of the coal at each pressure point exhibited a"three-stage"pattern with frequency changes,while the imaginary part showed a"U-shaped"pattern.The real part of the dispersion curve shifted upward initially,then downward,and experienced a significant down-ward shift during fracturing.(2)The extreme value of the imaginary part sensitively reflected changes in re-sistance caused by small-scale elastic deformation and shear failure,while the frequency of the extreme value could identify larger-scale shear failure,serving as an effective indicator of coal rupture.(3)Due to excitation polarization at the solid-gas-solid interface during hydraulic fracturing,the real and imaginary parts of the coal exhibited"three-stage"and"U-shaped"variations with frequency,respectively.(4)As hydraulic fracturing progressed,elastic deformation occurred first,followed by shear failure,and eventu-ally,the water-conducting channels within the coal body became fully connected.This resulted in the dis-persion curve of the real part increasing initially,then decreasing,and dropping sharply during fracturing as water pressure changed.Conclusions The complex resistivity method was used to monitor the variations in complex electrical parameters with water pressure during the hydraulic fracturing process and to evaluate the fracture development process of the coal body.The excitation polarization theory was applied to analyze the re-sponse characteristics of these parameters with respect to water pressure and AC frequency.This study pro-vides an experimental foundation for evaluating coal seam fractures and fracturing effects using the spectral in-duced polarization method.
Keywords:complex resistivity methodhydraulic fracturingresponse characteristicsfrequency dispersion mechanisminduced polarization
Publication Date:2025-04-27
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:9( 42-50 )
Journal of Henan Polytechnic University(Natural Science)

Journal of Henan Polytechnic University(Natural Science)

ISTICPKU
ISSN:1673-9787
Year, Vol.(Issue):2025,44(2)