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Mechanistic Study on the Effect of Seepage Force on Hydraulic Fracture Initiation

FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES(2024)

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摘要
The flow of fracturing fluid through rock pores generates a seepage force (SF) that disrupts the existing stress equilibrium and significantly affects rock deformation and failure. Despite its impact, the effect of SF on hydraulic fracture (HF) initiation has yet to be fully understood. In this study, a mechanistic model of SF's impact on fracture initiation was established through analysis of the force balance on a microscopic element. Using the finite difference method, a transient hydro-mechanical model was developed to simulate fluid seepage-induced stress distribution and pore pressure variation around a wellbore. Model results were validated through comparison with an analytical solution of pore pressure. The influence of SF on fracture initiation was investigated by conducting simulations with various wellbore pressurization rates and fracturing fluid viscosities. The results showed that fluid viscosity and pressurization rate have a significant impact on fracture initiation pressure (FIP) and SF-induced circumferential stress. A larger SF-induced circumferential stress and a lower FIP were observed when the viscosity and pressurization rate were smaller. A higher Biot coefficient results in stronger SF and reduced FIP. The theoretical mechanical model of seepage force established in this paper can provide crucial theoretical support for understanding the mechanism of fracture initiation and propagation, as well as for optimizing the effectiveness of hydraulic fracturing construction. The impact of seepage force on rocks is analyzed by establishing a theoretical mechanical model. The mechanism of seepage forces on fracture initiation is studied for the first time. The influence of fluid viscosity and wellbore pressurization rate on fracture initiation is illustrated. image
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关键词
finite difference method,fracture initiation pressure,hydraulic fracture initiation,hydraulic fracturing,seepage force
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