Acoustic emission and kinetic fracture theory for time-dependent breakage of granite
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作者:
Winner, Ryan A.
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Univ Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Texas A&M Univ, Harold Vance Dept Petr Engn, College Stn, TX USAUniv Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Winner, Ryan A.
[1
,5
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Lu, Guanyi
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Univ Pittsburgh, Dept Civil & Environm Engn, Pittsburgh, PA 15260 USAUniv Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Lu, Guanyi
[2
]
Prioul, Romain
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Schlumberger Doll Res Ctr, Cambridge, MA USAUniv Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Prioul, Romain
[3
]
Aidagulov, Gallyam
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Schlumberger Dhahran Carbonate Res, Al Khobar, Saudi ArabiaUniv Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Aidagulov, Gallyam
[4
]
Bunger, Andrew P.
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Univ Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Univ Pittsburgh, Dept Civil & Environm Engn, Pittsburgh, PA 15260 USAUniv Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
Bunger, Andrew P.
[1
,2
]
机构:
[1] Univ Pittsburgh, Dept Chem & Petr Engn, Pittsburgh, PA 15261 USA
[2] Univ Pittsburgh, Dept Civil & Environm Engn, Pittsburgh, PA 15260 USA
[3] Schlumberger Doll Res Ctr, Cambridge, MA USA
[4] Schlumberger Dhahran Carbonate Res, Al Khobar, Saudi Arabia
[5] Texas A&M Univ, Harold Vance Dept Petr Engn, College Stn, TX USA
Earthquakes, mine failures, and initiation of hydraulic fractures have all been associated with time-delayed breakage of rocks subjected to loads insufficient to incur instantaneous failure. To better model and identify failure precursors for rocks under these so-called static fatigue conditions, Acoustic Emission (AE) was monitored in beams of Coldspring Charcoal Granite subjected to constant three point loading. As a result of varying the magnitude of the loading, the times to failure range from O (10(1)) to O (10(5)) seconds. The experiments show a number of consistencies in the AE data. In all cases the event rate exponentially declines for a period that is about 0.4-0.6 of the total time to failure. This period is followed by a period in which the event rate exponentially increases. The total number of events generated during these two periods is also consistent among the experiments. Motivated by these observations, we propose a modified kinetic fracture theory that captures both the period of event rate decline and the period of event rate increase. It does this by firstly accounting for early time depletion of available bonds for breakage, similar to previous models. The model also accounts for generation of critically stressed bonds in the vicinity of previous bond breakages due to stress redistribution, thereby also predicting the event rate increase and further providing consistency with the observed tendency of the events to become increasingly concentrated around the eventual plane of failure as time progresses.
机构:
Stockholm Univ, Dept Geol Sci, Bolin Ctr Climate Res, SE-10691 Stockholm, SwedenStockholm Univ, Dept Geol Sci, Bolin Ctr Climate Res, SE-10691 Stockholm, Sweden
Zhao, Zhihong
Liu, Longcheng
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Royal Inst Technol, Dept Chem Engn & Technol, Stockholm, SwedenStockholm Univ, Dept Geol Sci, Bolin Ctr Climate Res, SE-10691 Stockholm, Sweden
Liu, Longcheng
Neretnieks, Ivars
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Royal Inst Technol, Dept Chem Engn & Technol, Stockholm, SwedenStockholm Univ, Dept Geol Sci, Bolin Ctr Climate Res, SE-10691 Stockholm, Sweden
Neretnieks, Ivars
Jing, Lanru
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Royal Inst Technol, Dept Land & Water Resources Engn, Stockholm, SwedenStockholm Univ, Dept Geol Sci, Bolin Ctr Climate Res, SE-10691 Stockholm, Sweden
机构:
Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Jiang, Mengfei
Feng, Xia-Ting
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Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Feng, Xia-Ting
Zhao, Jun
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Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Zhao, Jun
Yang, Chengxiang
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Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Yang, Chengxiang
Wang, Gang
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Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Wang, Gang
Fan, Chen
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Northeastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China
Northeastern Univ, Key Lab Liaoning Prov Deep Engn & Intelligent Tech, Shenyang 110819, Peoples R ChinaNortheastern Univ, Key Lab, Minist Educ Safe Min Deep Met Mines, Shenyang 110819, Peoples R China