Skip to main content
Erschienen in: Rock Mechanics and Rock Engineering 9/2021

21.06.2021 | Original Paper

Influence of Intermediate Principal Stress on the Strainburst Characteristics of Beishan Granite with Consideration of End Effect

verfasst von: X. G. Zhao, J. Wang, M. Cai, G. S. Su

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 9/2021

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

An experimental study on the strainburst characteristics of Beishan granite under different intermediate principal stress (σ2) loading conditions was conducted using a servo-controlled true-triaxial rockburst test machine equipped with an acoustic emission (AE) monitoring system. The primary objective is to investigate the influence of end effect under loading in the σ2 direction on the strainburst behaviors of the rock. Rectangular prism specimens with dimensions of approximately 200 × 100 × 100 mm3 were prepared and divided into two groups. For the first group, the specimens were in direct contact with platens during loading. For the second group, the specimen’s two surfaces loaded by σ2 were daubed with a layer of anti-friction agent to reduce the end friction of the platens. In the test, a loading mode, which kept one specimen surface free and applied loads on another five surfaces of the specimen, was used to simulate the stress state of a rock element on the excavation boundary. A high-speed video camera was used to capture the failure process of the specimens. The experimental results indicate that regardless of the use of the anti-friction agent or not, strainburst characteristics of the specimens depend on the magnitude of σ2. With increasing σ2, the degree of violence during rock failure presents an increasing trend and the dynamic failure process of the free specimen surface changes from local rock ejection to full-face burst. However, the σ2-dependent crack initiation, peak strength, failure mode and energy release characteristics of the lubricated specimens differ significantly from those of the non-lubricated ones. With increasing σ2, rock strengths increase to a peak value and then decrease, but the peak strength of the lubricated specimen is lower than that of the non-lubricated specimen under a given σ2. In addition, the peak strength difference between two groups increases as σ2 increases. Meanwhile, large end effect suppresses crack initiation of the specimens, causing crack initiation of the specimens to occur at higher stress levels, leading to higher peak strengths. Moreover, when σ2 = 1 MPa, the failure modes of the non-lubricated and lubricated specimens are similar. When σ2 is greater than 1 MPa, the number of the fractures in the surfaces loaded by σ2 for the lubricated specimens is larger than that for the non-lubricated specimens. In addition, the weight and the associated kinetic energy of ejected rock fragments from the lubricated specimen are higher than those from the non-lubricated specimen. The difference of the weight and the kinetic energy of the rock fragments between the non-lubricated and lubricated specimens increases with increasing σ2.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Adoko AC, Gokceoglu C, Wu L, Zuo QJ (2013) Knowledge-based and data-driven fuzzy modeling for rockburst prediction. Int J Rock Mech Min Sci 61:86–95CrossRef Adoko AC, Gokceoglu C, Wu L, Zuo QJ (2013) Knowledge-based and data-driven fuzzy modeling for rockburst prediction. Int J Rock Mech Min Sci 61:86–95CrossRef
Zurück zum Zitat Al-Ajmi AM, Zimmerman RW (2005) Relation between the Mogi and the Coulomb failure criteria. Int J Rock Mech Min Sci 42:431–439CrossRef Al-Ajmi AM, Zimmerman RW (2005) Relation between the Mogi and the Coulomb failure criteria. Int J Rock Mech Min Sci 42:431–439CrossRef
Zurück zum Zitat Brace WF, Paulding BW, Scholz CH (1966) Dilatancy in the fracture of crystalline rocks. J Geophys Res 71:3939–3953CrossRef Brace WF, Paulding BW, Scholz CH (1966) Dilatancy in the fracture of crystalline rocks. J Geophys Res 71:3939–3953CrossRef
Zurück zum Zitat Brady BT, Leighton FW (1977) Seismicity anomaly prior to a moderate rock burst: a case study. Int J Rock Mech Min Sci Geomech Abst 14:127–132CrossRef Brady BT, Leighton FW (1977) Seismicity anomaly prior to a moderate rock burst: a case study. Int J Rock Mech Min Sci Geomech Abst 14:127–132CrossRef
Zurück zum Zitat Broch E, Sørheim S (1984) Experiences from the planning, construction and supporting of a road tunnel subjected to heavy rockbursting. Rock Mech Rock Eng 17:15–35CrossRef Broch E, Sørheim S (1984) Experiences from the planning, construction and supporting of a road tunnel subjected to heavy rockbursting. Rock Mech Rock Eng 17:15–35CrossRef
Zurück zum Zitat Brown ET, Gonano LP (1974) Improved compression test technique for soft rock. J Geotech Geoenviron Eng 100:196–199 Brown ET, Gonano LP (1974) Improved compression test technique for soft rock. J Geotech Geoenviron Eng 100:196–199
Zurück zum Zitat Cai M (2008) Influence of intermediate principal stress on rock fracturing and strength near excavation boundaries-Insight from numerical modeling. Int J Rock Mech Min Sci 45:763–772CrossRef Cai M (2008) Influence of intermediate principal stress on rock fracturing and strength near excavation boundaries-Insight from numerical modeling. Int J Rock Mech Min Sci 45:763–772CrossRef
Zurück zum Zitat Cai M (2009) A simple method to estimate tensile strength and Hoek-Brown strength parameter mi of brittle rocks, In: Diederichs M, Grasselli G (eds.), Proceedings of the 3rd CANUS Rock mechanics symposium, Toronto, Paper 4063, 12p Cai M (2009) A simple method to estimate tensile strength and Hoek-Brown strength parameter mi of brittle rocks, In: Diederichs M, Grasselli G (eds.), Proceedings of the 3rd CANUS Rock mechanics symposium, Toronto, Paper 4063, 12p
Zurück zum Zitat Cai M (2010) Practical estimates of tensile strength and Hoek-Brown strength parameter mi of brittle rocks. Rock Mech Rock Eng 43:167–184CrossRef Cai M (2010) Practical estimates of tensile strength and Hoek-Brown strength parameter mi of brittle rocks. Rock Mech Rock Eng 43:167–184CrossRef
Zurück zum Zitat Cai M (2013) Principles of rock support in burst-prone ground. Tunn Undergr Space Technol 36:46–56CrossRef Cai M (2013) Principles of rock support in burst-prone ground. Tunn Undergr Space Technol 36:46–56CrossRef
Zurück zum Zitat Cai M, Champaigne D (2012) Influence of bolt-grout bonding on MCB cone bolt performance. Int J Rock Mech Min Sci 49:165–175CrossRef Cai M, Champaigne D (2012) Influence of bolt-grout bonding on MCB cone bolt performance. Int J Rock Mech Min Sci 49:165–175CrossRef
Zurück zum Zitat Cai M, Kaiser PK (2018) Rockburst support reference book—volume I: Rockburst phenomenon and support characteristics. www.mirarco.org Cai M, Kaiser PK (2018) Rockburst support reference book—volume I: Rockburst phenomenon and support characteristics. www.​mirarco.​org
Zurück zum Zitat Chang C, Haimson B (2000) True triaxial strength and deformability of the German Continental Deep Drilling Program (KTB) deep hole amphibolite. J Geophys Res 105:18999–19013CrossRef Chang C, Haimson B (2000) True triaxial strength and deformability of the German Continental Deep Drilling Program (KTB) deep hole amphibolite. J Geophys Res 105:18999–19013CrossRef
Zurück zum Zitat Chang C, Haimson B (2012) A failure criterion for rocks based on true triaxial testing. Rock Mech Rock Eng 45:1007–1010CrossRef Chang C, Haimson B (2012) A failure criterion for rocks based on true triaxial testing. Rock Mech Rock Eng 45:1007–1010CrossRef
Zurück zum Zitat Cook NGW (1965) A note on rockburst considered as a problem of stability. J S Afr Inst Min Metall 65:437–446 Cook NGW (1965) A note on rockburst considered as a problem of stability. J S Afr Inst Min Metall 65:437–446
Zurück zum Zitat Cook NGW, Hoek E, Pretorius JPG, Ortlepp WD, Salamon MDG (1966) Rock mechanics applied to the study of rockbursts. J S Afr Inst Min Metall 66:435–528 Cook NGW, Hoek E, Pretorius JPG, Ortlepp WD, Salamon MDG (1966) Rock mechanics applied to the study of rockbursts. J S Afr Inst Min Metall 66:435–528
Zurück zum Zitat Diederichs MS (2007) The 2003 Canadian Geotechnical Colloquium: mechanistic interpretation and practical application of damage and spalling prediction criteria for deep tunnelling. Can Geotech J 44:1082–1116CrossRef Diederichs MS (2007) The 2003 Canadian Geotechnical Colloquium: mechanistic interpretation and practical application of damage and spalling prediction criteria for deep tunnelling. Can Geotech J 44:1082–1116CrossRef
Zurück zum Zitat Eberhardt E, Stead D, Stimpson B (1999) Quantifying progressive pre-peak brittle fracture damage in rock during uniaxial compression. Int J Rock Mech Min Sci 36:361–380CrossRef Eberhardt E, Stead D, Stimpson B (1999) Quantifying progressive pre-peak brittle fracture damage in rock during uniaxial compression. Int J Rock Mech Min Sci 36:361–380CrossRef
Zurück zum Zitat Fairhurst CE, Hudson JA (1999) Draft ISRM suggested method for the complete stress-strain curve for intact rock in uniaxial compression. Int J Rock Mech Min Sci 36:279–289 Fairhurst CE, Hudson JA (1999) Draft ISRM suggested method for the complete stress-strain curve for intact rock in uniaxial compression. Int J Rock Mech Min Sci 36:279–289
Zurück zum Zitat Feng GL, Feng XT, Chen BR, Xiao YX (2015a) Microseismic sequences associated with rockbursts in the tunnels of the Jinping II hydropower station. Int J Rock Mech Min Sci 80:89–100CrossRef Feng GL, Feng XT, Chen BR, Xiao YX (2015a) Microseismic sequences associated with rockbursts in the tunnels of the Jinping II hydropower station. Int J Rock Mech Min Sci 80:89–100CrossRef
Zurück zum Zitat Feng GL, Feng XT, Chen BR, Xiao YX, Yu Y (2015b) A microseismic method for dynamic warning of rockburst development processes in tunnels. Rock Mech Rock Eng 48:2061–2076CrossRef Feng GL, Feng XT, Chen BR, Xiao YX, Yu Y (2015b) A microseismic method for dynamic warning of rockburst development processes in tunnels. Rock Mech Rock Eng 48:2061–2076CrossRef
Zurück zum Zitat Feng XT, Chen BR, Li SJ, Zhang CQ, Xiao YX, Feng GL, Zhou H, Qiu SL, Zhao ZN, Yu Y, Chen DF, Ming HJ (2012) Studies on the evolution process of rockbursts in deep tunnels. J Rock Mech Geotech Eng 4:289–295CrossRef Feng XT, Chen BR, Li SJ, Zhang CQ, Xiao YX, Feng GL, Zhou H, Qiu SL, Zhao ZN, Yu Y, Chen DF, Ming HJ (2012) Studies on the evolution process of rockbursts in deep tunnels. J Rock Mech Geotech Eng 4:289–295CrossRef
Zurück zum Zitat Feng XT, Haimson B, Li XC, Chang CD, Ma XD, Zhang XW, Ingraham M, Suzuki K (2019) ISRM suggested method: determining deformation and failure characteristics of rocks subjected to true triaxial compression. Rock Mech Rock Eng 52:2011–2020CrossRef Feng XT, Haimson B, Li XC, Chang CD, Ma XD, Zhang XW, Ingraham M, Suzuki K (2019) ISRM suggested method: determining deformation and failure characteristics of rocks subjected to true triaxial compression. Rock Mech Rock Eng 52:2011–2020CrossRef
Zurück zum Zitat Feng XT, Kong R, Yang C, Zhang X, Wang Z, Han Q, Wang G (2020) A three-dimensional failure criterion for hard rocks under true triaxial compression. Rock Mech Rock Eng 53:25–29CrossRef Feng XT, Kong R, Yang C, Zhang X, Wang Z, Han Q, Wang G (2020) A three-dimensional failure criterion for hard rocks under true triaxial compression. Rock Mech Rock Eng 53:25–29CrossRef
Zurück zum Zitat Feng XT, Liu JP, Chen BR, Xiao YX, Feng GL, Zhang FP (2017a) Monitoring, warning, and control of rockburst in deep metal mines. Engineering 3:538–545CrossRef Feng XT, Liu JP, Chen BR, Xiao YX, Feng GL, Zhang FP (2017a) Monitoring, warning, and control of rockburst in deep metal mines. Engineering 3:538–545CrossRef
Zurück zum Zitat Feng XT, Zhang XW, Yang CX, Kong R, Liu XY, Peng S (2017b) Evaluation and reduction of the end friction effect in true triaxial tests on hard rocks. Int J Rock Mech Min Sci 97:144–148CrossRef Feng XT, Zhang XW, Yang CX, Kong R, Liu XY, Peng S (2017b) Evaluation and reduction of the end friction effect in true triaxial tests on hard rocks. Int J Rock Mech Min Sci 97:144–148CrossRef
Zurück zum Zitat Feng XT, Zhang XW, Kong R, Wang G (2016) A novel Mogi type true triaxial testing apparatus and its use to obtain complete stress–strain curves of hard rocks. Rock Mech Rock Eng 49:1649–1662CrossRef Feng XT, Zhang XW, Kong R, Wang G (2016) A novel Mogi type true triaxial testing apparatus and its use to obtain complete stress–strain curves of hard rocks. Rock Mech Rock Eng 49:1649–1662CrossRef
Zurück zum Zitat Gong QM, Yin LJ, Wu SY, Zhao J, Ting Y (2012) Rock burst and slabbing failure and its influence on TBM excavation at headrace tunnels in Jinping II hydropower station. Eng Geol 124:98–108CrossRef Gong QM, Yin LJ, Wu SY, Zhao J, Ting Y (2012) Rock burst and slabbing failure and its influence on TBM excavation at headrace tunnels in Jinping II hydropower station. Eng Geol 124:98–108CrossRef
Zurück zum Zitat Haimson B, Chang C (2000) A new true triaxial cell for testing mechanical properties of rock, and its use to determine rock strength and deformability of Westerly granite. Int J Rock Mech Min Sci 37:285–296CrossRef Haimson B, Chang C (2000) A new true triaxial cell for testing mechanical properties of rock, and its use to determine rock strength and deformability of Westerly granite. Int J Rock Mech Min Sci 37:285–296CrossRef
Zurück zum Zitat He MC, Gong WL, Wang J, Qi P, Tao ZG, Du S, Peng YY (2014) Development of a novel energy-absorbing bolt with extraordinarily large elongation and constant resistance. Int J Rock Mech Min Sci 67:29–42CrossRef He MC, Gong WL, Wang J, Qi P, Tao ZG, Du S, Peng YY (2014) Development of a novel energy-absorbing bolt with extraordinarily large elongation and constant resistance. Int J Rock Mech Min Sci 67:29–42CrossRef
Zurück zum Zitat He MC, Jia XN, Coli M, Livi E, Luís S (2012a) Experimental study of rockbursts in underground quarrying of Carrara marble. Int J Rock Mech Min Sci 52:1–8CrossRef He MC, Jia XN, Coli M, Livi E, Luís S (2012a) Experimental study of rockbursts in underground quarrying of Carrara marble. Int J Rock Mech Min Sci 52:1–8CrossRef
Zurück zum Zitat He MC, Miao JL, Feng JL (2010) Rock burst process of limestone and its acoustic emission characteristics under true-triaxial unloading conditions. Int J Rock Mech Min Sci 47:286–298CrossRef He MC, Miao JL, Feng JL (2010) Rock burst process of limestone and its acoustic emission characteristics under true-triaxial unloading conditions. Int J Rock Mech Min Sci 47:286–298CrossRef
Zurück zum Zitat He MC, Miao JL, Li DJ (2007) Experimental study on rockburst processes of granite specimen at great depth. Chin J Rock Mechan Eng 26:865–876 ((in Chinese)) He MC, Miao JL, Li DJ (2007) Experimental study on rockburst processes of granite specimen at great depth. Chin J Rock Mechan Eng 26:865–876 ((in Chinese))
Zurück zum Zitat He MC, Nie W, Zhao ZY, Guo W (2012b) Experimental Investigation of bedding plane orientation on the rockburst behavior of sandstone. Rock Mech Rock Eng 45:311–326CrossRef He MC, Nie W, Zhao ZY, Guo W (2012b) Experimental Investigation of bedding plane orientation on the rockburst behavior of sandstone. Rock Mech Rock Eng 45:311–326CrossRef
Zurück zum Zitat He MC, e Sousa LR, Miranda T, Zhu GL (2015) Rockburst laboratory tests database — Application of data mining techniques. Eng Geol 185:116–130CrossRef He MC, e Sousa LR, Miranda T, Zhu GL (2015) Rockburst laboratory tests database — Application of data mining techniques. Eng Geol 185:116–130CrossRef
Zurück zum Zitat Hedley DGF (1992) Rockburst handbook for Ontario hardrock mines, CANMET Special Report SP92-1E Hedley DGF (1992) Rockburst handbook for Ontario hardrock mines, CANMET Special Report SP92-1E
Zurück zum Zitat ISRM (1978) Suggested methods for determining tensile strength of rock materials. Int J Rock Mech Min Sci Geomech Abst 15:99–103CrossRef ISRM (1978) Suggested methods for determining tensile strength of rock materials. Int J Rock Mech Min Sci Geomech Abst 15:99–103CrossRef
Zurück zum Zitat ISRM (1979) Suggested methods for determining water content, porosity, density, absorption and related properties and swelling and slake-durability index properties. Int J Rock Mech Min Sci Geomech Abst 16:143–151CrossRef ISRM (1979) Suggested methods for determining water content, porosity, density, absorption and related properties and swelling and slake-durability index properties. Int J Rock Mech Min Sci Geomech Abst 16:143–151CrossRef
Zurück zum Zitat Jiang Q, Su GS, Feng XT, Cui J, Pan PZ, Jiang JQ (2015) Observation of rock fragment ejection in post-failure response. Int J Rock Mech Min Sci 74:30–37CrossRef Jiang Q, Su GS, Feng XT, Cui J, Pan PZ, Jiang JQ (2015) Observation of rock fragment ejection in post-failure response. Int J Rock Mech Min Sci 74:30–37CrossRef
Zurück zum Zitat Kaiser PK (2009) Seismic hazard evaluation in underground construction. In: Proceedings of Seventh International Symposium on Rock burst and Seismicity in Mines, Dalian, pp 1–26 Kaiser PK (2009) Seismic hazard evaluation in underground construction. In: Proceedings of Seventh International Symposium on Rock burst and Seismicity in Mines, Dalian, pp 1–26
Zurück zum Zitat Kaiser PK, Cai M (2012) Design of rock support system under rockburst condition. J Rock Mech Geotech Eng 4:215–227CrossRef Kaiser PK, Cai M (2012) Design of rock support system under rockburst condition. J Rock Mech Geotech Eng 4:215–227CrossRef
Zurück zum Zitat Kaiser PK, Diederichs MS, Martin CD, Sharp J, Steiner W (2000) Underground works in hard rock tunnelling and mining. Keynote lecture at GeoEng2000. Technomic Publishing Co, Melbourne, pp 841–926 Kaiser PK, Diederichs MS, Martin CD, Sharp J, Steiner W (2000) Underground works in hard rock tunnelling and mining. Keynote lecture at GeoEng2000. Technomic Publishing Co, Melbourne, pp 841–926
Zurück zum Zitat Kaiser PK, McCreath DR, Tannant DD (1996) Canadian rockburst support handbook. CAMIRO, Sudbury Kaiser PK, McCreath DR, Tannant DD (1996) Canadian rockburst support handbook. CAMIRO, Sudbury
Zurück zum Zitat Konicek P, Ptacek J, Waclawik P, Kajzar V (2018) Long-term Czech experiences with rockbursts with applicability to today’s underground coal mines. Rock Mech Rock Eng 52:1447–1458CrossRef Konicek P, Ptacek J, Waclawik P, Kajzar V (2018) Long-term Czech experiences with rockbursts with applicability to today’s underground coal mines. Rock Mech Rock Eng 52:1447–1458CrossRef
Zurück zum Zitat Kwasniewski M, Takahashi M, Li X (2003) Volume changes in sandstone under true triaxial compression conditions, ISRM 2003 - Technology roadmap for rock mechanics. South African Institute of Mining and Metallurg, pp 683–688 Kwasniewski M, Takahashi M, Li X (2003) Volume changes in sandstone under true triaxial compression conditions, ISRM 2003 - Technology roadmap for rock mechanics. South African Institute of Mining and Metallurg, pp 683–688
Zurück zum Zitat Labuz JF, Bridell JM (1993) Reducing frictional constraint in compression testing through lubrication. Int J Rock Mech Min Sci Geomech Abst 30:451–455CrossRef Labuz JF, Bridell JM (1993) Reducing frictional constraint in compression testing through lubrication. Int J Rock Mech Min Sci Geomech Abst 30:451–455CrossRef
Zurück zum Zitat Lajtai EZ (1974) Brittle fracture in compression. Int J FractMech 10:525–536CrossRef Lajtai EZ (1974) Brittle fracture in compression. Int J FractMech 10:525–536CrossRef
Zurück zum Zitat Lee H, Haimson BC (2011) True triaxial strength, deformability, and brittle failure of granodiorite from the San Andreas Fault Observatory at Depth. Int J Rock Mech Min Sci 48:1199–1207CrossRef Lee H, Haimson BC (2011) True triaxial strength, deformability, and brittle failure of granodiorite from the San Andreas Fault Observatory at Depth. Int J Rock Mech Min Sci 48:1199–1207CrossRef
Zurück zum Zitat Leveille P, Sepehri M, Apel DB (2017) Rockbursting potential of kimberlite: a case study of Diavik diamond mine. Rock Mech Rock Eng 50:3223–3231CrossRef Leveille P, Sepehri M, Apel DB (2017) Rockbursting potential of kimberlite: a case study of Diavik diamond mine. Rock Mech Rock Eng 50:3223–3231CrossRef
Zurück zum Zitat Li CC (2010) A new energy-absorbing bolt for rock support in high stress rock masses. Int J Rock Mech Min Sci 47:396–404CrossRef Li CC (2010) A new energy-absorbing bolt for rock support in high stress rock masses. Int J Rock Mech Min Sci 47:396–404CrossRef
Zurück zum Zitat Li SJ, Feng XT, Li ZH, Chen BR, Zhang CQ, Zhou H (2012) In situ monitoring of rockburst nucleation and evolution in the deeply buried tunnels of Jinping II hydropower station. Eng Geol 137–138:85–96CrossRef Li SJ, Feng XT, Li ZH, Chen BR, Zhang CQ, Zhou H (2012) In situ monitoring of rockburst nucleation and evolution in the deeply buried tunnels of Jinping II hydropower station. Eng Geol 137–138:85–96CrossRef
Zurück zum Zitat Li XB, Du K, Li DY (2015) True triaxial strength and failure modes of cubic rock specimens with unloading the minor principal stress. Rock Mech Rock Eng 48:2185–2196CrossRef Li XB, Du K, Li DY (2015) True triaxial strength and failure modes of cubic rock specimens with unloading the minor principal stress. Rock Mech Rock Eng 48:2185–2196CrossRef
Zurück zum Zitat Li XB, Feng F, Li DY, Du K, Ranjith PG, Rostami J (2018) Failure characteristics of granite influenced by sample height-to-width ratios and intermediate principal stress under true-triaxial unloading conditions. Rock Mech Rock Eng 51:1321–1345CrossRef Li XB, Feng F, Li DY, Du K, Ranjith PG, Rostami J (2018) Failure characteristics of granite influenced by sample height-to-width ratios and intermediate principal stress under true-triaxial unloading conditions. Rock Mech Rock Eng 51:1321–1345CrossRef
Zurück zum Zitat Linkov AM (1996) Rockbursts and the instability of rock masses. Int J Rock Mech Min Sci Geomech Abst 33:727–732CrossRef Linkov AM (1996) Rockbursts and the instability of rock masses. Int J Rock Mech Min Sci Geomech Abst 33:727–732CrossRef
Zurück zum Zitat Ma TH, Tang CA, Tang LX, Zhang WD, Wang L (2015) Rockburst characteristics and microseismic monitoring of deep-buried tunnels for Jinping II Hydropower Station. Tunn Undergr Space Technol 49:345–368CrossRef Ma TH, Tang CA, Tang LX, Zhang WD, Wang L (2015) Rockburst characteristics and microseismic monitoring of deep-buried tunnels for Jinping II Hydropower Station. Tunn Undergr Space Technol 49:345–368CrossRef
Zurück zum Zitat Manouchehrian A, Cai M (2016) Simulation of unstable rock failure under unloading conditions. Can Geotech J 53:22–34CrossRef Manouchehrian A, Cai M (2016) Simulation of unstable rock failure under unloading conditions. Can Geotech J 53:22–34CrossRef
Zurück zum Zitat Manouchehrian A, Cai M (2018) Numerical modeling of rockburst near fault zones in deep tunnels. Tunn Undergr Space Technol 80:164–180CrossRef Manouchehrian A, Cai M (2018) Numerical modeling of rockburst near fault zones in deep tunnels. Tunn Undergr Space Technol 80:164–180CrossRef
Zurück zum Zitat Martin CD, Chandler NA (1994) The progressive fracture of Lac du Bonnet granite. Int J Rock Mech Min Sci Geomech Abst 31:643–659CrossRef Martin CD, Chandler NA (1994) The progressive fracture of Lac du Bonnet granite. Int J Rock Mech Min Sci Geomech Abst 31:643–659CrossRef
Zurück zum Zitat Miao SJ, Cai MF, Q.F. Guo, Huang ZJ, (2016) Rock burst prediction based on in-situ stress and energy accumulation theory. Int J Rock Mech Min Sci 83:86–94CrossRef Miao SJ, Cai MF, Q.F. Guo, Huang ZJ, (2016) Rock burst prediction based on in-situ stress and energy accumulation theory. Int J Rock Mech Min Sci 83:86–94CrossRef
Zurück zum Zitat Mogi K (1971) Fracture and flow of rocks under high triaxial compression. J Geophys Res 76:1255–1269CrossRef Mogi K (1971) Fracture and flow of rocks under high triaxial compression. J Geophys Res 76:1255–1269CrossRef
Zurück zum Zitat Mogi K (1972) Effect of the triaxial stress system on fracture and flow of rocks. Phys Earth Planetary 5:318–324CrossRef Mogi K (1972) Effect of the triaxial stress system on fracture and flow of rocks. Phys Earth Planetary 5:318–324CrossRef
Zurück zum Zitat Mogi K (1977) Dilatancy of rocks under general triaxial stress states with special reference to earthquake precursors. J Phys Earth 25:203–217CrossRef Mogi K (1977) Dilatancy of rocks under general triaxial stress states with special reference to earthquake precursors. J Phys Earth 25:203–217CrossRef
Zurück zum Zitat Mogi K (2007) Experimental rock mechanics. CRC Press, London Mogi K (2007) Experimental rock mechanics. CRC Press, London
Zurück zum Zitat Nicksiar M, Martin CD (2012) Evaluation of methods for determining crack initiation in compression tests on low-porosity rocks. Rock Mech Rock Eng 45:607–617CrossRef Nicksiar M, Martin CD (2012) Evaluation of methods for determining crack initiation in compression tests on low-porosity rocks. Rock Mech Rock Eng 45:607–617CrossRef
Zurück zum Zitat Ortlepp WD, Stacey TR (1994) Rockburst mechanisms in tunnels and shafts. Tunn Undergr Space Technol 9:59–65CrossRef Ortlepp WD, Stacey TR (1994) Rockburst mechanisms in tunnels and shafts. Tunn Undergr Space Technol 9:59–65CrossRef
Zurück zum Zitat Pan PZ, Feng XT, Hudson JA (2012) The influence of the intermediate principal stress on rock failure behaviour: a numerical study. Eng Geol 124:109–118CrossRef Pan PZ, Feng XT, Hudson JA (2012) The influence of the intermediate principal stress on rock failure behaviour: a numerical study. Eng Geol 124:109–118CrossRef
Zurück zum Zitat Pellegrino A, Sulem J, Barla G (1997) The effects of slenderness and lubrication on the uniaxial behavior of a soft limestone. Int J Rock Mech Min Sci 34:333–340CrossRef Pellegrino A, Sulem J, Barla G (1997) The effects of slenderness and lubrication on the uniaxial behavior of a soft limestone. Int J Rock Mech Min Sci 34:333–340CrossRef
Zurück zum Zitat Salamon MDG (1970) Stability, instability, and design of pillar workings. Int J Rock Mech Min Sci Geomech Abst 7:613–631CrossRef Salamon MDG (1970) Stability, instability, and design of pillar workings. Int J Rock Mech Min Sci Geomech Abst 7:613–631CrossRef
Zurück zum Zitat Singh SP (1987) The influence of rock properties on the occurrence and control of rockbursts. Min Sci Technol 5:11–18CrossRef Singh SP (1987) The influence of rock properties on the occurrence and control of rockbursts. Min Sci Technol 5:11–18CrossRef
Zurück zum Zitat Srinivasan C, Arora SK, Benady S (1999) Precursory monitoring of impending rockbursts in Kolar gold mines from microseismic emissions at deeper levels. Int J Rock Mech Min Sci 36:941–948CrossRef Srinivasan C, Arora SK, Benady S (1999) Precursory monitoring of impending rockbursts in Kolar gold mines from microseismic emissions at deeper levels. Int J Rock Mech Min Sci 36:941–948CrossRef
Zurück zum Zitat Stacey TR (1981) A simple extension strain criterion for fracture of brittle rock. Int J Rock Mech Min Sci Geomech Abst 18:469–474CrossRef Stacey TR (1981) A simple extension strain criterion for fracture of brittle rock. Int J Rock Mech Min Sci Geomech Abst 18:469–474CrossRef
Zurück zum Zitat Stacey TR (2016) Addressing the consequences of dynamic rock failure in underground excavations. Rock Mech Rock Eng 49:4091–4101CrossRef Stacey TR (2016) Addressing the consequences of dynamic rock failure in underground excavations. Rock Mech Rock Eng 49:4091–4101CrossRef
Zurück zum Zitat Strahle A (2001) Definition och beskrivning av parametrar för geologisk, geofysisk och bergmekanisk kartering av berg: R-01–19. Strahle A (2001) Definition och beskrivning av parametrar för geologisk, geofysisk och bergmekanisk kartering av berg: R-01–19.
Zurück zum Zitat Su GS, Hu LH, Feng XT, Yan LB, Zhang GL, Yan SZ, Zhao B, Yan ZF (2018) True triaxial experimental study of rockbursts induced by ramp and cyclic dynamic disturbances. Rock Mech Rock Eng 51:1027–1045CrossRef Su GS, Hu LH, Feng XT, Yan LB, Zhang GL, Yan SZ, Zhao B, Yan ZF (2018) True triaxial experimental study of rockbursts induced by ramp and cyclic dynamic disturbances. Rock Mech Rock Eng 51:1027–1045CrossRef
Zurück zum Zitat Su GS, Chen ZY, Ju JW, Jiang JQ (2017a) Influence of temperature on the strainburst characteristics of granite under true triaxial loading conditions. Eng Geol 222:38–52CrossRef Su GS, Chen ZY, Ju JW, Jiang JQ (2017a) Influence of temperature on the strainburst characteristics of granite under true triaxial loading conditions. Eng Geol 222:38–52CrossRef
Zurück zum Zitat Su GS, Feng XT, Wang JH, Jiang JQ, Hu LH (2017b) Experimental study of remotely triggered rockburst induced by a tunnel axial dynamic disturbance under true-triaxial conditions. Rock Mech Rock Eng 50:2207–2226CrossRef Su GS, Feng XT, Wang JH, Jiang JQ, Hu LH (2017b) Experimental study of remotely triggered rockburst induced by a tunnel axial dynamic disturbance under true-triaxial conditions. Rock Mech Rock Eng 50:2207–2226CrossRef
Zurück zum Zitat Su GS, Jiang JQ, Zhai SB, Zhang GL (2017c) Influence of tunnel axis stress on strainburst: an experimental study. Rock Mech Rock Eng 50:1551–1567CrossRef Su GS, Jiang JQ, Zhai SB, Zhang GL (2017c) Influence of tunnel axis stress on strainburst: an experimental study. Rock Mech Rock Eng 50:1551–1567CrossRef
Zurück zum Zitat Su GS, Zhai SB, Jiang JQ, Zhang GL, Yan LB (2017d) Influence of radial stress gradient on strainbursts: an experimental study. Rock Mech Rock Eng 50:2659–2676CrossRef Su GS, Zhai SB, Jiang JQ, Zhang GL, Yan LB (2017d) Influence of radial stress gradient on strainbursts: an experimental study. Rock Mech Rock Eng 50:2659–2676CrossRef
Zurück zum Zitat Su GS, Jiang JQ, Feng XT, Mo C, Jiang Q (2016) Experimental study of ejection process in rockburst. Chin J Rock Mechan Eng 35:1990–1999 ((In Chinese)) Su GS, Jiang JQ, Feng XT, Mo C, Jiang Q (2016) Experimental study of ejection process in rockburst. Chin J Rock Mechan Eng 35:1990–1999 ((In Chinese))
Zurück zum Zitat Takahashi M, Koide H (1989) Effect of the intermediate principal stress on strength and deformation behavior of sedimentary rocks at the depth shallower than 2000 m, In: Z Ma and DG Seiler (eds.), International Symposium on Rock at Great Depth. Balkema, pp 19–26 Takahashi M, Koide H (1989) Effect of the intermediate principal stress on strength and deformation behavior of sedimentary rocks at the depth shallower than 2000 m, In: Z Ma and DG Seiler (eds.), International Symposium on Rock at Great Depth. Balkema, pp 19–26
Zurück zum Zitat Wang CL, Wu AX, Lu H, Bao TC, Liu XH (2015) Predicting rockburst tendency based on fuzzy matter–element model. Int J Rock Mech Min Sci 75:224–232CrossRef Wang CL, Wu AX, Lu H, Bao TC, Liu XH (2015) Predicting rockburst tendency based on fuzzy matter–element model. Int J Rock Mech Min Sci 75:224–232CrossRef
Zurück zum Zitat Wang J-A, Park HD (2001) Comprehensive prediction of rockburst based on analysis of strain energy in rocks. Tunn Undergr Space Technol 16:49–57CrossRef Wang J-A, Park HD (2001) Comprehensive prediction of rockburst based on analysis of strain energy in rocks. Tunn Undergr Space Technol 16:49–57CrossRef
Zurück zum Zitat Wang J, Chen L, Su R, Zhao XG (2018) The Beishan underground research laboratory for geological disposal of high-level radioactive waste in China: planning, site selection, site characterization and in situ tests. J Rock Mech Geotech Eng 10:411–435CrossRef Wang J, Chen L, Su R, Zhao XG (2018) The Beishan underground research laboratory for geological disposal of high-level radioactive waste in China: planning, site selection, site characterization and in situ tests. J Rock Mech Geotech Eng 10:411–435CrossRef
Zurück zum Zitat Wiebols G, Cook N (1968) An energy criterion for the strength of rock in polyaxial compression. Int J Rock Mech Min Sci Geomech Abst 5:529–549CrossRef Wiebols G, Cook N (1968) An energy criterion for the strength of rock in polyaxial compression. Int J Rock Mech Min Sci Geomech Abst 5:529–549CrossRef
Zurück zum Zitat Xu NW, Li TB, Dai F, Zhang R, Tang CA, Tang LX (2016) Microseismic monitoring of strainburst activities in deep tunnels at the Jinping II Hydropower Station, China. Rock Mech Rock Eng 49:981–1000CrossRef Xu NW, Li TB, Dai F, Zhang R, Tang CA, Tang LX (2016) Microseismic monitoring of strainburst activities in deep tunnels at the Jinping II Hydropower Station, China. Rock Mech Rock Eng 49:981–1000CrossRef
Zurück zum Zitat Xu YH, Cai M, Feng XT, Zhang XW, Li YH (2020) A method to remove end effect for the determination of intrinsic 3D rock strength envelopes. Int J Rock Mech Min Sci 131:28–29CrossRef Xu YH, Cai M, Feng XT, Zhang XW, Li YH (2020) A method to remove end effect for the determination of intrinsic 3D rock strength envelopes. Int J Rock Mech Min Sci 131:28–29CrossRef
Zurück zum Zitat Xu YH, Cai M, Zhang XW, Feng XT (2017) Influence of end effect on rock strength in true triaxial compression test. Can Geotech J 54:862–880CrossRef Xu YH, Cai M, Zhang XW, Feng XT (2017) Influence of end effect on rock strength in true triaxial compression test. Can Geotech J 54:862–880CrossRef
Zurück zum Zitat You MQ (2009) True-triaxial strength criteria for rock. Int J Rock Mech Min Sci 46:115–127CrossRef You MQ (2009) True-triaxial strength criteria for rock. Int J Rock Mech Min Sci 46:115–127CrossRef
Zurück zum Zitat Yu MH, Zan YW, Zhao J, Yoshimine M (2002) A unified strength criterion for rock material. Int J Rock Mech Min Sci 39:975–989CrossRef Yu MH, Zan YW, Zhao J, Yoshimine M (2002) A unified strength criterion for rock material. Int J Rock Mech Min Sci 39:975–989CrossRef
Zurück zum Zitat Yun XY, Mitri HS, Yang XL, Wang YK (2010) Experimental investigation into biaxial compressive strength of granite. Int J Rock Mech Min Sci 47:334–341CrossRef Yun XY, Mitri HS, Yang XL, Wang YK (2010) Experimental investigation into biaxial compressive strength of granite. Int J Rock Mech Min Sci 47:334–341CrossRef
Zurück zum Zitat Zhang CQ, Feng XT, Zhou H, Qiu SL, Wu WP (2012) Case histories of four extremely intense rockbursts in deep tunnels. Rock Mech Rock Eng 45:275–288CrossRef Zhang CQ, Feng XT, Zhou H, Qiu SL, Wu WP (2012) Case histories of four extremely intense rockbursts in deep tunnels. Rock Mech Rock Eng 45:275–288CrossRef
Zurück zum Zitat Zhao XG, Cai M (2015) Influence of specimen height-to-width ratio on the strainburst characteristics of Tianhu granite under true-triaxial unloading conditions. Can Geotech J 52:890–902CrossRef Zhao XG, Cai M (2015) Influence of specimen height-to-width ratio on the strainburst characteristics of Tianhu granite under true-triaxial unloading conditions. Can Geotech J 52:890–902CrossRef
Zurück zum Zitat Zhao XG, Cai M, Wang J, Li PF (2015a) Strength comparison between cylindrical and prism specimens of Beishan granite under uniaxial compression. Int J Rock Mech Min Sci 76:10–17CrossRef Zhao XG, Cai M, Wang J, Li PF (2015a) Strength comparison between cylindrical and prism specimens of Beishan granite under uniaxial compression. Int J Rock Mech Min Sci 76:10–17CrossRef
Zurück zum Zitat Zhao XG, Cai M, Wang J, Li PF, Ma LK (2015b) Objective determination of crack Initiation stress of brittle rocks under compression using AE measurement. Rock Mech Rock Eng 48:2473–2484CrossRef Zhao XG, Cai M, Wang J, Li PF, Ma LK (2015b) Objective determination of crack Initiation stress of brittle rocks under compression using AE measurement. Rock Mech Rock Eng 48:2473–2484CrossRef
Zurück zum Zitat Zhao XG, Wang J, Ma LK, Cai M, Li PF (2015c) A new approach to identify crack initiation stress of crystalline rocks under uniaxial compression condition, ISRM 2015, Montreal, Paper 221, 9p Zhao XG, Wang J, Ma LK, Cai M, Li PF (2015c) A new approach to identify crack initiation stress of crystalline rocks under uniaxial compression condition, ISRM 2015, Montreal, Paper 221, 9p
Zurück zum Zitat Zhao XG, Cai M, Wang J, Ma LK (2013) Damage stress and acoustic emission characteristics of the Beishan granite. Int J Rock Mech Min Sci 64:258–269CrossRef Zhao XG, Cai M, Wang J, Ma LK (2013) Damage stress and acoustic emission characteristics of the Beishan granite. Int J Rock Mech Min Sci 64:258–269CrossRef
Zurück zum Zitat Zhao XG, Wang J, Cai M, Cheng C, Ma LK, Su R, Zhao F, Li DJ (2014) Influence of unloading rate on the strainburst characteristics of Beishan granite under true-triaxial unloading conditions. Rock Mech Rock Eng 47:467–483CrossRef Zhao XG, Wang J, Cai M, Cheng C, Ma LK, Su R, Zhao F, Li DJ (2014) Influence of unloading rate on the strainburst characteristics of Beishan granite under true-triaxial unloading conditions. Rock Mech Rock Eng 47:467–483CrossRef
Zurück zum Zitat Zhu WC, Li ZH, Zhu L, Tang CA (2010) Numerical simulation on rockburst of underground opening triggered by dynamic disturbance. Tunn Undergr Space Technol 25:587–599CrossRef Zhu WC, Li ZH, Zhu L, Tang CA (2010) Numerical simulation on rockburst of underground opening triggered by dynamic disturbance. Tunn Undergr Space Technol 25:587–599CrossRef
Metadaten
Titel
Influence of Intermediate Principal Stress on the Strainburst Characteristics of Beishan Granite with Consideration of End Effect
verfasst von
X. G. Zhao
J. Wang
M. Cai
G. S. Su
Publikationsdatum
21.06.2021
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 9/2021
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-021-02526-8

Weitere Artikel der Ausgabe 9/2021

Rock Mechanics and Rock Engineering 9/2021 Zur Ausgabe