The process of hydraulic fracturing of shale gas reservoir will consume large amounts of water. Duo to the high density
and diffusivity of gas,supercritical CO2 can replace water as fracturing fluid,showing a very good application prospects.
Based on this,we proposed increasing the permeability of shale gas reservoir with supercritical CO2 fracturing and independently
developed experimental device. The device is mainly composed of the CO2 booster system,triaxial loading and control
system,oil bath temperature control system,acoustic emission system,and its axial pressure control range is 0∼100 MPa,
confining pressure control range is 0∼25 MPa,maximum heating temperature is 100 ?C,specimen size is 100 mm×200 mm.
The apparatus can precisely control CO2 phase and acquire data of shale rupture stress-strain,pressure,temperature,acoustic
emission signals,and can get supercritical CO2-induced shale gas reservoir permeability dynamics of cracking shale process in
multi-field(stress,temperature,pressure)coupling conditions,providing experimental platform for supercritical CO2 fracturing
increasing shale gas reservoir permeability mechanism study.