Effects of pre-fracturing fluids on pore-fracture structure and mechanical properties of deep coal
Abstract
Abstract Hydraulic fracturing is a key technology for enhancing coalbed methane recovery. Preconditioning the reservoir with acidizing or oxidative fluids can significantly improve stimulation outcomes; however, comparative studies evaluating these fluids in coal seams are still limited. In this work, deep coal samples (depth > 2500 m) were treated with five different pre-fracturing fluids—slick water (PAM), hydrochloric acid (HCl), hydrochloric and hydrofluoric (HCl + HF) acid, sodium hypochlorite (NaClO), and hydrogen peroxide (H 2 O 2 )—and their effects on porosity, permeability, and mechanical properties were systematically compared using low-field NMR, SEM, and mechanical testing. The potential relationships between changes in mechanical parameters and pore-fracture structure were also examined. Results show that all five fluids increased total porosity by 33.98 ~ 45.04%. The HCl + HF produced the most dramatic permeability enhancement (13,561.54%), whereas HCl alone reduced permeability by 78.01%. Moreover, HCl + HF led to the most pronounced reduction in both compressive and tensile strength. Kendall correlation analysis revealed several significant relationships: Young’s modulus ( E ) correlated negatively with total porosity ( φ t ) and average roughness ( R a ); Poisson’s ratio ( ν ) showed a positive correlation with φ t ; and tensile strength ( R t ) was negatively correlated with R a . These findings provide practical insights for selecting pre-fracturing fluids based on desired reservoir weakening or permeability enhancement objectives.
Article Details
Authors (5)
Xiaoxiang Wang
Zirui Sun
Ming Li
Lei Yue
State Key Laboratory of High Pressure and Superhard Materials, College of Physics
Desheng Zhou