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The Dabieshan Coesite-bearing Eclogite Terrain-A Late Archaean Ultra - high- Pressure Metamorphic Belt
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作者 Cao Ronglong and Zhu ShouhuaGuangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, Guangdong 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1996年第1期46-58,共13页
A U -Pb zircon age of 2774±24 Ma for eclogite from the Bixiling rock body of Anhui Province, central China, indicates that the Dabieshan coesite-bearing eclogite was probably formed in the Late Archaean. A phengi... A U -Pb zircon age of 2774±24 Ma for eclogite from the Bixiling rock body of Anhui Province, central China, indicates that the Dabieshan coesite-bearing eclogite was probably formed in the Late Archaean. A phengite Ar-Ar isochron age of 662±13 Ma for the eclogite confines also an upper limit age of its subsequent retrograde metamorphism in the Precambrian. The results of isotopic dating for such type of eclogite coincide with the geological features of its restricted occurrence within the Archaean metamaorphic terrain composed of the Dabie Group. It is believed that the Dabieshan coesite-bearing eclogite terrain might be a Late Archaean ultra-high-pressure metamorphic belt. The Dabie Mountains area was the eastward extension of the southern Qinling structural belt during the Triassic. Both the Dabie Group and the coesite-bearing eclogite hosted therein underwent a late-stage dynamic metamorphic event. The present authors have obtained a muscovite Ar-Ar isochron age of 192.6±2.8 Ma from plagioclase gneiss and a hornblende Ar-Ar plateau age of 230.7±4.6 Ma for the low amphibolite in eclogite respectively, which represent the Indosinian reworking ages of the original metamorphic rocks of the Dabie Group gneiss and coesite-bearing eclogite. 展开更多
关键词 Dabie Mountains coesite-bearing eclogite zircon U -Pb dating Late Archaean ultra-high-pressure metamorphic belt
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Formation Depth of Coesite-Bearing Eclogite,Dabie UHPM Zone,China
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作者 LuGuxian LiuRuixun +1 位作者 WangFangzheng ChenJing 《Journal of China University of Geosciences》 SCIE CSCD 2004年第2期206-215,共10页
The plastic deformation of garnet in coesite bearing eclogite, quartz eclogite and garnet amphibolite of the UHPM complex in Yingshan County in the Dabie Mountains has been studied. The stress generated by the strong... The plastic deformation of garnet in coesite bearing eclogite, quartz eclogite and garnet amphibolite of the UHPM complex in Yingshan County in the Dabie Mountains has been studied. The stress generated by the strong tectonic movement was an important component of the total pressure that resulted in the formation of the eclogite in the Dabie UHPM zone. The three dimensional tectonic principal stresses and additional tectonic stress induced hydrostatic pressure [ p s=( σ 1+ σ 2+ σ 3)/3] are reconstructed according to the differential stress and the strain ratio ( α ) of the garnet in the minor coesite bearing eclogite of the Yingshan County. Then the gravity induced hydrostatic pressure ( p g) is calculated following the equation p minus p s, where p is estimated to be 2.8 GPa based on the quartz coesite geobarmeter. Therefore, the thickness of the rock column overlying the coesite bearing eclogite in the Ying shan County is determined ≥32 km. This estimation, significantly different from ≥100 km, the previous one obtained solely based on the weight/specific weight ratio (W/SW), offers a proper explanation for the puzzle that no tracer of the addition of mantle derived material has been found in the Dabie UHPM zone during the process of UHPM, although a number of researchers claim that this process took place at the depth of the mantle (≥100 km). It is concluded that attention should be paid to the additional tectonic stress induced hydrostatic pressure in the study of UHPM zones. 展开更多
关键词 Dabie UHPM zone formation depths additional tectonic stress-induced hydrostatic pressure coesite-bearing eclogite tectonic physicochemistry plastic deformation garnet
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The formation depth of coesite-bearing eclogite,Dabie UHPM zone,China,modified by tectono-original additional hydrostatic pressure 被引量:10
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作者 LU Guxian, CHEN Jing, LIU Ruixun and LI Xiaobo Institute of Geomechanics , Beijing 100081, China Electron Microscopy Laboratory, Peking University, Beijing 100871, China +1 位作者 Department of Geology, Peking University, Beijing 100871, China Institute of Geological Information , Beijing 100037, China 《Chinese Science Bulletin》 SCIE EI CAS 1999年第5期398-411,共14页
The knowledge that hydrostatic pressure is equal to the gravity value of the overlying rocks in studying a dynamic state of certain underground site is argued. It is suggested that the stress field T in the crust is a... The knowledge that hydrostatic pressure is equal to the gravity value of the overlying rocks in studying a dynamic state of certain underground site is argued. It is suggested that the stress field T in the crust is a combination or superposition of total hydrostatic pressure P with differential stress σ,and the total hydrostatic pressure P at any point in the crust comprises two parts: one is spherical stress tensor P<sub>G</sub> caused by the gravity, and the other is spherical stress tensor P<sub>s</sub> caused by tectonic stress; therefore P could not be attributed to the gravity of overlying rocks only. The results obtained by a finite-element simulation indicate that the tectono-original additional hydrostatic pressures P<sub>s</sub> decrease gradually from the compressive zone (p<sub>c</sub><sup>S</sup>) to the shear zone (P<sub>SH</sub><sup>s</sup>)and to the tensile zone (P<sub>T</sub><sup>s</sup>), i.e.P<sub>c</sub><sup>s</sup>】P<sub>sH</sub><sup>s</sup>】P<sub>T</sub><sup>s</sup> in the same depth. On the basis of the above-mentioned research, the method of measurement and calculation of metallogenetic depth corrected by P<sub>s</sub> is 展开更多
关键词 formation DEPTH TECTONIC additional hydrostatic pressure DABIE UHPM zone coesite-bearing ECLOGITE expansion-cracking texture TECTONIC physicochemistry.
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THE Sm-Nd ISOTOPIC AGE OF COESITE-BEARING ECLOGITE FROM THE SOUTHERN DABIE MOUNTAINS 被引量:8
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作者 李曙光 刘德良 +3 位作者 陈移之 葛宁洁 张宗清 叶笑江 《Chinese Science Bulletin》 SCIE EI CAS 1992年第19期1638-1641,共4页
A large eclogite belt developed along the Dabie Mountains and Subei-Jiaonan Rise in central China is a result of collision between the North China and Yangtze blocks. Recently, coesite and coesite pseudomorphs are rec... A large eclogite belt developed along the Dabie Mountains and Subei-Jiaonan Rise in central China is a result of collision between the North China and Yangtze blocks. Recently, coesite and coesite pseudomorphs are recognized as an inclusion in both garnet 展开更多
关键词 coesite-bearing ECLOGITE SM-ND isotopic dating the DABIE Mountains
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Discovery of coesite-bearing eclogites from the Northern Qinling and its significances 被引量:9
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作者 胡能高 赵东林 +1 位作者 徐柏青 王涛 《Chinese Science Bulletin》 SCIE EI CAS 1995年第2期174-176,共3页
In recent years, coesite-bearing eclogites have been discovered at many sites in the eastern part of the Qinling-Dabie Orogene. However, these ultrahigh-pressure metamorphic rocks were found only in the southern Qinli... In recent years, coesite-bearing eclogites have been discovered at many sites in the eastern part of the Qinling-Dabie Orogene. However, these ultrahigh-pressure metamorphic rocks were found only in the southern Qinling Orogene before. In 1993, they were reported in the Qinling Group. Recently, coesites have been found in eclogites. 展开更多
关键词 Discovery of coesite-bearing eclogites from the Northern Qinling and its significances FEO MNO
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The Lanshantou Kyanite-bearing Eclogite with Coesite Inclusions in the Sulu Ultrahigh-Pressure Metamorphic Belt and Its PTt Path 被引量:5
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作者 HU Shouxi, SUN Jinggui, LING Hongfei, YE Ying, Fang Changquan and ZHAO Yiying Department of Earth Sciences, Nanjing University, Nanjing 210008, Jiangsu Department of Earth Sciences, Zhejiang University, Hangzhou 310027, Zhejiang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2001年第4期409-420,共12页
Coesite inclusions are found in kyanite from the Lanshantou eclogite in the Sulu ultrahigh-pressure (UHP) metamorphic belt. This discovery extends the stable region of kyanite to over 2.4 GPa. As an important UHP meta... Coesite inclusions are found in kyanite from the Lanshantou eclogite in the Sulu ultrahigh-pressure (UHP) metamorphic belt. This discovery extends the stable region of kyanite to over 2.4 GPa. As an important UHP metamorphic belt in China, the Sulu eclogite belt is the product of A-subduction induced by strong compression of the Yellow Sea terrane to the Jiaodong-northereastern Jiangsu terrane during the interaction of the Eurasian plate and Palaeo-Pacific plate in the Indosinian. It stretches about 350 km and contains over 1000 eclogite bodies. Most eclogites in this belt belong to Groups B and C in the classification of Coleman et al., and commonly contain kyanite, while the Lanshantou eclogite belongs to Group A and contains coesite. The MgO, CaO and FeO contents in garnet and pyroxene show regular variation from the core to the rim, which reveals the PTt paths of progressive metamorphism during the Early Mesozoic (240-200 Ma) and retrogressive metamorphism during the Late Mesozoic and Cenozoic exhumation. 展开更多
关键词 coesite-bearing kyanite eclogite ultrahigh-pressure (UHP) metamorphic belt PTt path of subduction and exhumation
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Formation Mechanism and Exhumation Processes for HP-UHP Metamorphic Rocks in Dabie Mountains
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作者 Hou Mingjin Tectonique et Bassins Sédimentaires Laboratoire, Université de Paris-Sud 91405, ORSAY Cedex, France School of Resources and Environment, Hefei University of Technology, Hefei 230009, China Anhui Geological Survey, Hefei 230001, China Tang Jiafu Anhui Geological Survey, Hefei 230001, China 《Journal of China University of Geosciences》 SCIE CSCD 2004年第2期193-205,共13页
The high, ultrahigh pressure metamorphic rocks, widely distributed in Dabie Mountains, were described in terms of the geological setting, the marks of the petrology and the mineralogy of the ultrahigh pressure (UHP) m... The high, ultrahigh pressure metamorphic rocks, widely distributed in Dabie Mountains, were described in terms of the geological setting, the marks of the petrology and the mineralogy of the ultrahigh pressure (UHP) metamorphic rocks. According to the estimated uplifting and denudation of the Dabie Mountains, and to the thermodynamics theory, were assessed the depth and pressure (high pressure autoclave) of the formation setting of the UHP metamorphic rocks. Based on all the information mentioned above, a new explanation is derived from the mechanism of formation and the processes of exhumation of the UHP metamorphic rocks. 展开更多
关键词 blueschist belt coesite-bearing eclogite belt abnormal crustal pressure high pressure autoclave
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