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【“夢溪”地學專家論壇 第241期】 12.18 Fluid-dependent Shear Slip Behaviors and Implications on Fracture Frictional Strength Reduction and Permeability Evolution

發布日期:2024年12月16日      作者:李勇     編輯:李勇     審核:黃旭日     瀏覽:[]

匯報題目:Fluid-dependent Shear Slip Behaviors and Implications on Fracture Frictional Strength Reduction and Permeability Evolution

報告人:Long FanAssociate Professor

報告時間:20241218日(星期三)下午15:00-16:30

報告地點:明辨樓C104

報告人單位:University of Alaska Fairbanks

報告人簡介:

Dr. Long Fan is an Associate Professor of College of Engineering and Mines at the University of Alaska Fairbanks. He holds PhD. degree in Earth and Mineral Engineering from Pennsylvania State University, His research interests include experimental geomechanics, carbon sequestration, flid-rock interaction in porous media, and rear earth mineral extraction. As Pl, he has successfully secured finding from various US federal agencies, including US National Science Foundation, US Environmental Protection Agency, US Department of Energy and industrial partners.

主講內容簡介:

Human-induced earthquake is related to large volumes of fluid injection in underground including wasted water, hot steam, CO2, N2, foams, and their mixtures. These injected fluids can potentially generate new fractures and/or reactivate pre-existing faults/cleats. Fluid-rock interaction is an important yet challenging issue in geomechanics, ranging from seismic events to hydraulic fracturing. In this talk, preliminary lab results of fluids injection induced fault sliding will be discussed, Various fluids (helium, carbon dioxide, water, and moisturized methane) were injected into coal to investigate the dynamic characteristics of friction coefficients and permeability evolution during faulting. The friction strength of rock fracture significantly dropped after injecting sorbing fluids, which could lead to fault reactivation at a low pore pressure. Fracture permeability during sliding is sensitive to the softening effect of injected fluids. The rate-state-friction parameters with various sliding speeds indicated a continuous friction increase with sliding distance. These results can provide improved understanding of geohazards prevention and prediction.

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         主辦單位:                   天然氣地質四川省重點實驗室

能源礦產資源開發與利用國際聯合研究中心

地球科學與技術學院

科學技術發展研究院

 

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