期刊文献+

Upper Limit for Rheological Strength of Crust in Continental Subduction Zone:Constraints Imposed by Laboratory Experiments 被引量:2

Upper Limit for Rheological Strength of Crust in Continental Subduction Zone:Constraints Imposed by Laboratory Experiments
下载PDF
导出
摘要 The transitional pressure of quartz coesite under the differential stress and highly strained conditions is far from the pressure of the stable field under the static pressure. Therefore, the effect of the differential stress should be considered when the depth of petrogenesis is estimated about ultrahigh pressure metamorphic (UHPM) rocks. The rheological strength of typical ultrahigh pressure rocks in continental subduction zone was derived from the results of the laboratory experiments. The results indicate the following three points. (1) The rheological strength of gabbro, similar to that of eclogite, is smaller than that of clinopyroxenite on the same condition. (2) The calculated strength of rocks (gabbro, eclogite and clinopyroxenite) related to UHPM decreases by nearly one order of magnitude with the temperature rising by 100 ℃ in the range between 600 and 900 ℃. The calculated strength is far greater than the faulting strength of rocks at 600 ℃, and is in several hundred to more than one thousand mega pascals at 700-800 ℃, which suggests that those rocks are located in the brittle deformation region at 600 ℃, but are in the semi brittle to plastic deformation region at 700-800 ℃. Obviously, the 700 ℃ is a brittle plastic transition boundary. (3) The calculated rheological strength in the localized deformation zone on a higher strain rate condition (1.6×10 -12 s -l ) is 2-5 times more than that in the distributed deformation zone on a lower strain rate condition (1.6×10 -14 s -1 ). The average rheological stress (1 600 MPa) at the strain rate of 10 -12 s -1 stands for the ultimate differential stress of UHPM rocks in the semi brittle flow field, and the average rheological stress (550-950 MPa) at the strain rate of l0 -14 - 10 -13 s -l stands for the ultimate differential stress of UHPM rocks in the plastic flow field, suggesting that the depth for the formation of UHPM rocks is more than 20-60 km below the depth estimated under static pressure condition due to the effect of the differential stress. The transitional pressure of quartz coesite under the differential stress and highly strained conditions is far from the pressure of the stable field under the static pressure. Therefore, the effect of the differential stress should be considered when the depth of petrogenesis is estimated about ultrahigh pressure metamorphic (UHPM) rocks. The rheological strength of typical ultrahigh pressure rocks in continental subduction zone was derived from the results of the laboratory experiments. The results indicate the following three points. (1) The rheological strength of gabbro, similar to that of eclogite, is smaller than that of clinopyroxenite on the same condition. (2) The calculated strength of rocks (gabbro, eclogite and clinopyroxenite) related to UHPM decreases by nearly one order of magnitude with the temperature rising by 100 ℃ in the range between 600 and 900 ℃. The calculated strength is far greater than the faulting strength of rocks at 600 ℃, and is in several hundred to more than one thousand mega pascals at 700-800 ℃, which suggests that those rocks are located in the brittle deformation region at 600 ℃, but are in the semi brittle to plastic deformation region at 700-800 ℃. Obviously, the 700 ℃ is a brittle plastic transition boundary. (3) The calculated rheological strength in the localized deformation zone on a higher strain rate condition (1.6×10 -12 s -l ) is 2-5 times more than that in the distributed deformation zone on a lower strain rate condition (1.6×10 -14 s -1 ). The average rheological stress (1 600 MPa) at the strain rate of 10 -12 s -1 stands for the ultimate differential stress of UHPM rocks in the semi brittle flow field, and the average rheological stress (550-950 MPa) at the strain rate of l0 -14 - 10 -13 s -l stands for the ultimate differential stress of UHPM rocks in the plastic flow field, suggesting that the depth for the formation of UHPM rocks is more than 20-60 km below the depth estimated under static pressure condition due to the effect of the differential stress.
出处 《Journal of China University of Geosciences》 SCIE CSCD 2004年第2期167-174,共8页 中国地质大学学报(英文版)
基金 ThispaperissupportedbytheMajorScienceandTechnologyDevelopmentProgram(No.2002201)oftheMinistryofLandandResources,andtheNationalNaturalScienceFoundationofChina(No.40 0 0 2 0 2 0 )
关键词 differential stress rheological strength ultrahigh pressure metamorphic (UHPM) rocks continental subduction zone high temperature and high pressure experiment differential stress, rheological strength, ultrahigh pressure metamorphic (UHPM) rocks, continental subduction zone, high temperature and high pressure experiment
  • 相关文献

参考文献3

二级参考文献19

  • 1Esther Schm?dicke,Wolfgang Friedrich Müller.Unusual exsolution phenomena in omphacite and partial replacement of phengite by phlogopite + kyanite in an eclogite from the Erzgebirge[J]. Contributions to Mineralogy and Petrology . 2000 (6)
  • 2Esther Schm?dicke,Martin Okrusch,Wolfgang Schmidt.Eclogite-facies rocks in the Saxonian Erzgebirge, Germany: high pressure metamorphism under contrasting P-T conditions[J]. Contributions to Mineralogy and Petrology . 1992 (2-3)
  • 3Christian Chopin.Coesite and pure pyrope in high-grade blueschists of the Western Alps: a first record and some consequences[J]. Contributions to Mineralogy and Petrology . 1984 (2)
  • 4Holland,T. J. B.The reaction albite = jadeite + quartz determined experimentally in the range 600-1200°C, Am. Mineral . 1980
  • 5Smith,D. C.Coesite in clinopyroxene in the Caledonides and its implications for geodynamics. Nature . 1984
  • 6Kretz,R.Symbols for rock-forming minerals, Am. Mineral . 1983
  • 7Powell,R.Regression diagnostic and robust regression in geo-thermometer/geobarometer calibration: The garnet-clinopyroxene geothermometer resisted, J.Metamorph. Geol . 1985
  • 8Schmadicke,E.Quartz pseudomorphs after coesite in eclogites from the Saxonian Erzgebirge, Eur. J. Mineral . 1991
  • 9Zhao, Z.Y,Wang, Q.C,Cong, B.I.Coesite-bearing ultramafic pressure metamorphic rocks from Donghai, northern Jiangsu province, eastern China: "foreign or in situ". Scientia Geologica Sinica . 1992
  • 10Chopin,C,Sobolev,N.V.Principal mineralogic indicators of UHP in crustal rocks. Ultrahigh Pressure Metamorphism . 1995

共引文献53

同被引文献34

引证文献2

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部