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Characterising the nature, evolution and origin of detachment fault in central depression belt, Qiongdongnan Basin of South China Sea: evidence from seismic reflection data 被引量:13
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作者 REN Jianye ZHANG Daojun +7 位作者 TONG Dianjun HUANG Anmin WANG Yahui LEI Chao ZUO Qianmei ZHAO Yanghui HE Weijun YANG Linlong 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第12期118-126,共9页
Using regional geological, newly acquired 2D and 3D seismic, drilling and well log data, especially 2D long cable seismic profiles, the structure and stratigraphy in the deep-water area of Qiongdongnan Basin are inter... Using regional geological, newly acquired 2D and 3D seismic, drilling and well log data, especially 2D long cable seismic profiles, the structure and stratigraphy in the deep-water area of Qiongdongnan Basin are interpreted. The geometry of No.2 fault system is also re-defined, which is an important fault in the central depression belt of the deep-water area in the Qiongdongnan Basin by employing the quantitative analysis techniques of fault activity and backstripping. Furthermore, the dynamical evolution of the No.2 fault sys-tem and its controls on the central depression belt are analyzed. This study indicates that the Qiongdongnan Basin was strongly influenced by the NW-trending tensile stress field during the Late Eocene. At this time, No.2 fault system initiated and was characterized by several discontinuous fault segments, which controlled a series small NE-trending fault basins. During the Oligocene, the regional extensional stress field changed from NW-SE to SN with the oceanic spreading of South China Sea, the early small faults started to grow along their strikes, eventually connected and merged as the listric shape of the No.2 fault system as ob-served today. No.2 fault detaches along the crustal Moho surface in the deep domain of the seismic profiles as a large-scale detachment fault. A large-scale rollover anticline formed in hanging wall of the detachment fault. There are a series of small fault basins in both limbs of the rollover anticline, showing that the early small basins were involved into fold deformation of the rollover anticline. Structurally, from west to east, the central depression belt is characterized by alternatively arranged graben and half-graben. The central depression belt of the Qiongdongnan Basin lies at the extension zone of the tip of the V-shaped northwest-ern ocean sub-basin of the South China Sea, its activity period is the same as the development period of the northwestern ocean sub-basin, furthermore the emplacement and eruption of magma that originated from the mantle below the Moho surface occurred at the region between Songnan-Baodao and Changchang sags, from east to west with the early-stage spreading of the South China Sea. Therefore, this study not only helps in depicting the structural features and evolution of the deep-water basin in the Qiongdongnan Basin, but also provides the geological and structural evidence for establishing a unified model of continental margin extension and oceanic spreading. 展开更多
关键词 Qiongdongnan Basin No.2 fault detachment fault central depression belt
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Late Cretaceous Transpressional Fault System: A Case Study of the Yishu Fault Belt, Shandong Province, Eastern China 被引量:4
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作者 LI Chunlin WANG Zongxiu +5 位作者 WU Qingzi LIU Yongqing GAO Wanli TAN Yuanlong KUANG Hongwei LI Huijun 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第5期1531-1545,共15页
On the basis of field observations of the structures of three profiles from the Linshu region, deformation characteristics and the tectonic background of the Yishu fault belt in the Late Cretaceous–Early Cenozoic hav... On the basis of field observations of the structures of three profiles from the Linshu region, deformation characteristics and the tectonic background of the Yishu fault belt in the Late Cretaceous–Early Cenozoic have been discussed in detail.Three structural profiles, whose deformations consist mainly of earlier transpressional faults and later normal faults, were developed for the Mengtuan Formation of the Lower Cretaceous Dasheng Group.Typical positive flower structures, duplex structures, and break-through faults were found in these profiles.On the basis of analyses of the structural deformation and previous geochronological studies, it was concluded that the earlier transpressional faults of the profiles were triggered by the sinistral transpression of the Yishu fault belt in the Late Cretaceous–Early Paleogene, and that the later normal faults, formed during the Late Paleogene–Neogene extension, truncated the earlier transpressional faults.With consideration of the tectonic evolution of the Tan-Lu fault belt and the different drift directions of the Pacific plate since the Cretaceous, we suggest that the major tectonic events of the Late Cretaceous–Neogene in eastern China were mainly controlled by the subduction of the Pacific plate. 展开更多
关键词 Late Cretaceous structural deformation transpressional fault Yishu fault belt Pacific plate
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Multistage Deformation in the Northeastern Segment of the Jiangshao Fault (Suture) Belt: Constraints for the Relationship between the Yangtze Plate and the Cathaysia Old Land 被引量:7
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作者 ZHANG Jin LI Jinyi +2 位作者 XIAO Wenxia FENG Qianwen MA Zongjin 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第4期948-978,共31页
Multistage deformation events have occurred in the northeastern Jiangshao Fault (Suture) Belt. The earliest two are ductile deformation events. The first is the ca. 820 Ma top-to-the-northwest ductile thrusting, whi... Multistage deformation events have occurred in the northeastern Jiangshao Fault (Suture) Belt. The earliest two are ductile deformation events. The first is the ca. 820 Ma top-to-the-northwest ductile thrusting, which directly resulted from the collision between the Cathaysia Old Land and the Chencai Arc (?) during the Late Neoproterozoic, and the Jiangnan Orogenic Belt that formed as the ocean closed between the Yangtze Plate and the jointed Cathaysia Old Land and the Chencai Arc due to continuous compression. The second is the ductile left-lateral strike-slipping that occurred in the latest Early Paleozoic. Since the Jinning period, all deformation events represent the reactivation or inversion of intraplate structures due to the collisions between the North China and Yangtze plates during the Triassic and between the Philippine Sea and Eurasian plates during the Cenozoic. In the Triassic, brittle right-lateral strike-slipping and subsequent top-to-the south thrusting occurred along the whole northeastern Jiangshao Fault Zone because of the collision between the North China and Yangtze plates. In the Late Mesozoic, regional extension took place across southeastern China. In the Cenozoic, the collision between the Philippine Sea and Eurasian plates resulted in brittle thrusts along the whole Jiangnan Old land in the Miocene. The Jiangshao Fault Belt is a weak zone in the crust with long history, and its reactivation is one of important characteristics of the deformation in South China; however, late-stage deformation events did not occur beyond the Jiangnan Old Land and most of them are parallel to the strike of the Old Land, which is similar to the Cenozoic deformation in Central Asia. In addition, the Jiangnan old Land is not a collisional boundary between the Yangtze Plate and Cathaysia Old Land in the Triassic. 展开更多
关键词 intraplate deformation Jiangshao fault (Suture) belt Yangtze Plate Cathaysia Old Land Jiangnan Old Land
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A DEEP SEISMIC REFLECTION PROFILE ACROSS ALTUN FAULT BELT 被引量:3
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作者 Gao Rui 1, Liu Hongbin 2, Li Qiusheng 1,Li Pengwu 1, Yao Peiyi 1, Huang Dongding 3 (1 Lithosphere Research Center, Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China,E\|mail: gaorui@cags.cn.net 2 Institute of Ge 《地学前缘》 EI CAS CSCD 2000年第S1期205-205,共1页
Altun fault is regarded as a large\|scale sinistral strike\|slip fault, it is composed of several faults with the different character, and there is a special geological structure in the fault belt, and they constitute... Altun fault is regarded as a large\|scale sinistral strike\|slip fault, it is composed of several faults with the different character, and there is a special geological structure in the fault belt, and they constitute the northwestern margin fault belt of the Qinghai\|Tibetan plateau. In order to investigate the deep crust structure in the Altun region, layers which Tarim lithosphere subducted beneath the Qinghai\|Tibetan plateau, the forward structure of the subduction plate and the scale of the plate subduction, a deep seismic reflection profile was designed. Data collection work of the deep seismic reflection profile across Altun fault was completed during 24/8/1999 to 25/9/1999. The profile locates in Qiemo county, Xinjiang Uygur Autonomous Region, the southern end of the profile stretches into Altun Mountains, the northern end locates in the Tarim desert margin. The profile is nearly SN trending and crosses the main Altun fault. The profile totally is 145km long, time record is 30 seconds, the smallest explosive amount is 72~100kg, the biggest explosive amount reaches 200~300kg, the explosive distance is 800m, and detectors are laid at a 50m distance. 展开更多
关键词 DEEP seismic reflection probing Altun fault belt TARIM b lock DEEP CRUST structure MOHO
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Geochemical characteristics of the fluid inclusions in the Gangxi Fault Belt, Huanghua Depression, Bohai Bay Basin, China 被引量:2
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作者 DING Wei-wei DAI Jin-xing +1 位作者 CHU Feng-you HAN Xi-qiu 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第7期1011-1020,共10页
We studied the geochemical characteristics of the fluid inclusions in the Ordovician carbonates and the Oligocene Shahejie Formation sandstones from 15 wells in the Gangxi Fault Belt, Huanghua Depression. The fluid in... We studied the geochemical characteristics of the fluid inclusions in the Ordovician carbonates and the Oligocene Shahejie Formation sandstones from 15 wells in the Gangxi Fault Belt, Huanghua Depression. The fluid inclusions are all sec- ondary with gas/liquid ratio of 5%~10%. Base on Raman they are mainly composed of H2O, CO2 and CH4. The homogenization temperatures, combined with burial and geothermal history of the host rock, indicate that the fluid flows in the Shahejie Formation and the Ordovician carbonates were trapped in Neocene. Using a VG5400 mass spectrometer, the helium isotopic compositions were analyzed. Interpretation of results suggested a significant amount of mantle-derived helium mainly accumulating in the intersections of the NWW trending Xuzhuangzi and NE trending Gangxi faults. The maturity of hydrocarbon decreases from the intersection to the outside pointing out that the fluid related to the NWW trending Xuzhuangzi and NE trending Gangxi faults. These factors implied the fluid inclusions have a close relationship to the local tectonic setting. Gangxi Fault Belt experienced intensive Neo-tectonic activities in Cenozoic. Widespread faulted-depressions and strong volcanic eruptions manifested its tec- tonic status of extensional stress field. Mantle uplift caused the movement of magma that carried mantle-derived gases and deep heat flows, the deep-rooted tension faults provided the passages for the gases and heat flows to shallow crust levels. 展开更多
关键词 Gangxi fault belt Fluid inclusion Composition MANTLE-DERIVED Maturity Local tectonic setting
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Tectonic implication of geomorphometric analyses along the Saravan Fault: evidence of a difference in tectonic movements between the Sistan Suture Zone and Makran Mountain Belt 被引量:1
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作者 Roghayeh KASHANI Abdolreza PARTABIAN Ahmad NOURBAKHSH 《Journal of Mountain Science》 SCIE CSCD 2019年第5期1023-1034,共12页
In this paper, remote sensing techniques,as well as field studies, have been used to investigate the geomorphological processes and landscape evolution along the Saravan Fault, SE Iran to highlight how topographic fea... In this paper, remote sensing techniques,as well as field studies, have been used to investigate the geomorphological processes and landscape evolution along the Saravan Fault, SE Iran to highlight how topographic features were influenced by active tectonics. Quantitative geomorphic analysis was carried out using mountain-front sinuosity(Smf),valley floor width-valley height ratio(Vf), drainage basin asymmetry factor(Af), Hypsometric integral(Hi), drainage basin shape index(Bs), mean axial slope of channel(MASC), standard deviation of topography(STD) and index of active tectonic(Iat).Remote sensing techniques, as well as field studies revealed that the Saravan Fault have three parts trending N-S, NW-SE, and E-W. Obtained results show that basins with high Iat index are located at where the strike of the Saravan Faults changes and where several strike-slip faults are crossed the Saravan fault. 展开更多
关键词 Active TECTONIC Sistan SUTURE Zone MAKRAN MOUNTAIN belt Saravan fault Iran DEM
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Late Paleozoic Element Migration and Accumulation under Intracontinental Sinistral Strike-slip Faulting in the West Junggar Orogenic Belt, NW China 被引量:2
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作者 WANG Ye CHEN Xuanhua +5 位作者 NIE Lanshi DING Weicui WANG Xueqiu XU Shenglin MA Feizhou HAN Lele 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第6期2012-2030,共19页
The migration,accumulation and dispersion of elements caused by tectonic dynamics have always been a focus of attention,and become the basis of tectono-geochemistry.However,the effects of faulting,especially strike-sl... The migration,accumulation and dispersion of elements caused by tectonic dynamics have always been a focus of attention,and become the basis of tectono-geochemistry.However,the effects of faulting,especially strike-slip faulting,on the adjustment of geochemical element distribution,are still not clear.In this paper,we select the West Junggar Orogenic Belt(WJOB),NW China,as a case study to test the migration behavior of elements under tectonic dynamics.The WJOB is dominated by NE-trending large-scale sinistral strike-slip faults such as the Darabut Fault,the Mayile Fault,and the Baerluke Fault,which formed during the intracontinental adjustment under N-S compression during ocean-continental conversion in the Late Paleozoic.Geochemical maps of 13 elements,Al,W,Sn,Mo,Cu,Pb,Zn,As,Sb,Hg,Fe,Ni,and Au,are analyzed for the effects of faulting and folding on element distribution at the regional scale.The results show that the element distribution in the WJOB is controlled mainly by two mechanisms during tectonic deformation:first is the material transporting mechanism,where the movement of geological units is consistent with the direction of tectonic movement;second is the diffusion mechanism,especially by tectonic pressure dissolution driven by tectonic dynamics,where the migration of elements is approximately perpendicular or opposite to the direction of tectonic movement.We conclude that the adjustment of element distributions has been determined by the combined actions of transporting and diffusion mechanisms,and that the diffusion mechanism plays an important role in the formation of geochemical Au blocks in the WJOB. 展开更多
关键词 tectono-geochemistry strike-slip fault system element distribution GOLD West Junggar Central Asian Orogenic belt
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Rock Deformation,Component Migration and 18O/16O Variations during Mylonitization in the Southern Tan-Lu Fault Belt 被引量:1
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作者 YANG Xiaoyong LIU Deliang +2 位作者 FENG Min YU Qingni WANG Kuiren 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2007年第2期297-311,共15页
This paper discusses the relationship between the volume loss, fluid flow and component variations in the ductile shear zone of the southern Tan-Lu fault belt. The results show that there is a large amount of fluids f... This paper discusses the relationship between the volume loss, fluid flow and component variations in the ductile shear zone of the southern Tan-Lu fault belt. The results show that there is a large amount of fluids flowing through the shear zone during mylonitization, accompanied with the loss of volume of rocks and variations of elements and oxygen isotopes. The calculated temperature for mylonitization in different mylonites ranges from 446 to 484℃, corresponding to that of 475 to 500℃ for the wall rocks. The condition of differential stress during mylonization has been obtained between 99 and 210 MPa, whereas the differential stress in the wall rock gneiss is 70-78 MPa. The mylonites are enriched by factors of 1.32-1.87 in elements such as TiO2, P2O5, MnO, Y, Zr and V and depleted in SiO2, Na2O, K2O, Al203, Sr, Rb and light REEs compared to their protolith gneiss. The immobile element enrichments are attributed to enrichments in residual phases such as ilmentite, zircon, apatite and epidote in mylonites and are interpreted as due to volume losses from 15% to 60% in the ductile shear zone. The largest amount of SiO2 loss is 35.76 g/100 g in the ductile shear zone, which shows the fluid infiltration. Modeling calculated results of the fluid/rock ratio for the ductile shear zone range from 196 to 1192 by assuming different degrees of fluid saturation. Oxygen isotope changes of quartz and feldspar and the calculated fluid are corresponding to the variations of differential flow stress in the ductile shear zone. With increasing differential flow stress, the mylonites show a slight decrease of δ^18O in quartz, K-feldspar and fluid. 展开更多
关键词 mylonitization ductile shear zone component migration oxygen isotopes southern Tan- Lu fault belt
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Characteristics of Compositional Migration in Mylonites from the Ductile Shear Zones of the Southern Tancheng-Lujiang Fault Belt, Eastern Anhui Province 被引量:1
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作者 YANG Xiaoyong LUI Deliang +2 位作者 YANG Xueming WANG Kuiren DAI Jinxing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1998年第1期37-50,共14页
On the basis of field geology, three typical ductile shear zones in the southern part of the Tancheng-Lujiang fault belt have been chosen for a detailed study. Altogether ten samples of the tectonites have been collec... On the basis of field geology, three typical ductile shear zones in the southern part of the Tancheng-Lujiang fault belt have been chosen for a detailed study. Altogether ten samples of the tectonites have been collected for this study. The paper is focused on a comprehensive study of the tectonites in the medium-lower horizons of the ductile shear zones. The mineral compositions of the rocks are analyzed with EPMA and some typical whole-rock samples analyzed by chemical and ICP methods. Based on the comprehensive study of the characteristics of the deformation, the mineral assemblages and the changes of chemical composition of the bulk rocks, this paper presents a discussion on the relationship between the volume loss, the fluid flow and compositional changes during mylonitization of the ductile shear zones in this region. Our study shows that there are a large amount of fluids flowing through the shear zones during the process of mylonization, accompanied by the loss of rock volume and migration of elements and components. Modelling calculation results under different saturation conditions of fluids show that the maximum volume loss of the tectonites is about 60% relative to their protolith, while the fluid/rock ratio ranges from 10 to 103 in different ductile shear zones. 展开更多
关键词 MYLONITE ductile shear zones volume loss fluid-rock interaction compositional migration Tancheng-Lujiang fault belt
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DEFORMATION CHARACTERISTICS AND ESR DATING OF ANHUA-XUPU FAULT BELT IN THE XUEFENG MOUNATAINS, HUNAN 被引量:1
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作者 YANGKuifeng YANGKunguang MAChangqian 《Geotectonica et Metallogenia》 2005年第1期84-92,共9页
Anhua-Xupu fault belt plays a very important role in the formation of Xuefeng Mountains. The fault belt shows an arc-structure extruding towards NW. Fault rocks, microstructures and homogeneous temperature (concentrat... Anhua-Xupu fault belt plays a very important role in the formation of Xuefeng Mountains. The fault belt shows an arc-structure extruding towards NW. Fault rocks, microstructures and homogeneous temperature (concentrated around 160℃) of fluid inclusions in the quartz veins shows that the fault belt mainly underwent shallow brittle deformation and the highest-grade dynamic metamorphic rock is mylonitized sericite phyllite. The ESR (Electron Spin Resonance) dating from the quartz veins in the fault rocks shows that the fault belt underwent two intense fluid movement stages at Yanshanian (156.9~136.2Ma, 119.8~90.6Ma); moreover not only the occurrence and microstructures but also the homogeneous temperature of the quartz veins developed in that two stages show obvious diversity, which can prove that there exists the reversion period of Mesozoic extension and compression movement of Xuefeng mountains between these two stages . 展开更多
关键词 the Xuefeng Mountains Anhua-Xupu fault belt ESR fluid inclusions
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Earthquake triggering and delaying caused by fault interaction on Xianshuihe fault belt, southwestern China
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作者 张秋文 张培震 +2 位作者 王乘 汪一鹏 Michael A Ellis 《Acta Seismologica Sinica(English Edition)》 CSCD 2003年第2期156-165,共10页
The coseismic Coulomb stress change caused by fault interaction and its influences on the triggering and delaying of earthquake are briefly discussed. The Xianshuihe fault belt consists of Luhuo, Daofu, Kangding, Qian... The coseismic Coulomb stress change caused by fault interaction and its influences on the triggering and delaying of earthquake are briefly discussed. The Xianshuihe fault belt consists of Luhuo, Daofu, Kangding, Qianning and Ganzi fault. Luohuo (MS=7.6, 1973)-Kangding (MS=6.2, 1975)-Daofu (MS=6.9, 1981)-Ganzi (MS=6.0, 1982) earthquake is a seismic sequence continuous on the time axis with magnitude greater than 6.0. They occurred on the Luhuo, Kangding, Daofu and Ganzi fault, respectively. The coseismic Coulomb stress changes caused by each earthquake on its surrounding major faults and microcracks are calculated, and their effects on the triggering and delaying of the next earthquake and aftershocks are analyzed. It is shown that each earthquake of the sequence occurred on the fault segment with coseismic Coulomb stress increases caused by its predecessors, and most after-shocks are distributed along the microcracks with relatively larger coseismic Coulomb stress increases resulted from the main shock. With the fault interaction considered, the seismic potential of each segment along Xianshuihe fault belt is reassessed, and contrasted with those predicted results ignoring coseismic Coulomb stress change, the significance of fault interaction and its effect on triggering and delaying of earthquake are emphasized. It is con-cluded that fault interaction plays a very important role on seismic potential of Xianshuihe fault belt, and the maximal change of future earthquake probability on fault segment is up to 30.5%. 展开更多
关键词 coseismic Coulomb stress change fault interaction earthquake triggering and delaying seismic potential assessment Xianshuihe fault belt
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Calculation of the CO2 Degassing during Contact Metamorphism and Its Geological Significance:The Model and Example from the Shuanshan Area of the South Tan-Lu Fault Belt
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作者 YANG Xiaoyong LIU Deliang +1 位作者 CHEN Yongjian DAI Jinxing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2008年第3期562-576,共15页
The paper studies CO2 degassing and controlling factors under the condition of contact metamorphism in the Shuangshan area, southern Tan-Lu fault belt and the method of calculating the amount of CO2 degassing. The res... The paper studies CO2 degassing and controlling factors under the condition of contact metamorphism in the Shuangshan area, southern Tan-Lu fault belt and the method of calculating the amount of CO2 degassing. The results show that the amount of CO2 degassing is controlled by the characteristics of the country rocks, including the thermal conductivity, penetrability, porosity and connectivity. Compositions, size and depth of intrusive rock also have an important influence on CO2 degassing, i.e., they generated numerous cracks in the country rocks, and thus allowed the easy flow and accumulation of fluids. The amount of CO2 flux in contact metamorphism is calculated quantitatively based on the metamorphic reaction and time-integrated fluid flux. The value (0.729- 2.446×10^4 mol/cm^2) of CO2 flux suggests that CO2 was provided mainly by the contact metamorphic reaction. The generation and releasing of CO2 are positively correlated with the degree of metamorphism, and XCO2 in fluids gradually increases from dolomite zone to calcite zone, but in the zone of grossular, fluid flux is the largest and XCO2 sharply decreases due to involvement of magmatic water. This study presents evidence that a large amount of industrial-scale CO2 can be produced during contact metamorphism. On the basis of theoretical and practical studies, a cone model has been proposed to response CO2 degassing for the contact metamorphism, and it can be used to explore CO2 accumulations beyond the oil-gas basins. This model can also be applied to the study of inorganic genesis of CO2 accumulations. 展开更多
关键词 Contact metamorphism CO2 degassing CO2 accumulations Tan-Lu fault belt
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A study on neogene volcanic landforms of the middle Tanlu fault belt
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作者 HAN Mei (Geography Department, Shandong Normal University, Jinan 250014,China) 《Journal of Geographical Sciences》 SCIE CSCD 2000年第4期121-128,共8页
The west block of the middle belt of TanLu fault belt is one of the areas where volcanic landforms are mainly distributed. This paper divides the volcanic landforms into four grades according to formation, morphology,... The west block of the middle belt of TanLu fault belt is one of the areas where volcanic landforms are mainly distributed. This paper divides the volcanic landforms into four grades according to formation, morphology, and ingredient of matter. Lava cones are divided into two types based on the force of top-support and the fluid form of magma: the arc-projecting type and spring-spilling type. Furthermore, the courses of development of volcanic landforms are divided into three stages according to the form and strength of volcanic activities. 展开更多
关键词 volcanic landforms NEOGENE TanLu fault belt
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Fault zone trapped waves at Longmenshan fault belt
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作者 Sun Yi Lai Xiaoling 《Geodesy and Geodynamics》 2013年第3期48-52,共5页
Trapped waves in different sections of Longmenshan fault belt were observed, and the results show the difference between the northern and southern portions of this fault belt. Guanzhuang and Leigu surveying lines are ... Trapped waves in different sections of Longmenshan fault belt were observed, and the results show the difference between the northern and southern portions of this fault belt. Guanzhuang and Leigu surveying lines are located at the northern portion of the fault belt, and the result indicates that the width of the rupture zone underground in this area is about 160 - 180 m. The center position of rupture zone underground corresponds to the surface breaking trace, and is equally distributed at the edges of the two fault walls. However, Hongkou surveying line is located at the southern portion of the fault belt, and the result indicates that the width of the rupture zone underground in this area is about 180 -200 m. The rupture zone underground is mainly distributed below fault scarp. The Wenchuan MsS. 0 earthquake and Lushan Ms7.0 earthquake both occurred at the Longmenshan fault belt. The results will provide information for the structure background of the two violent earthquakes. 展开更多
关键词 Longmenshan fault belt fault zone trapped waves seismic record sectional difference
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Cenozoic Denudation and Vertical Faulting History of the Central Segment of the Longmenshan Thrust Belt
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作者 TAN Xibin XU Xiwei +2 位作者 LEE Yuanhsi KANG Wenjun ZHAO Shiliang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第4期1541-1542,共2页
Objective The uplift process and uplift mechanism of the Tibetan Plateau has been a research focus among geologists in recent years. This work put emphasis on the Cenozoic exhumation histories of the blocks bounded by... Objective The uplift process and uplift mechanism of the Tibetan Plateau has been a research focus among geologists in recent years. This work put emphasis on the Cenozoic exhumation histories of the blocks bounded by the major faults at the central segment of the Longmenshan thrust belt, and the vertical faulting history, including the starting time and the total vertical displacement, of the major faults. Then we quantitatively established a complete active process for the central segment of the Longmenshan thrust belt, combining with the previous geophysical data in the deep and geologcial data. This study is critical for deeply and completely understanding the Cenozoic uplift history of the Longmenshan, and also provides thermochronology constraints to the different models for the uplift of the eastern margin of the Tibetan Plateau. 展开更多
关键词 Cenozoic Denudation and Vertical faulting History of the Central Segment of the Longmenshan Thrust belt
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A Novel Three-stage Tectonic Model for Mississippi Valleytype Zn-Pb Deposits in Orogenic Fold-and-Thrust Belts
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作者 SONG Yucai 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第4期843-849,共7页
Mississippi Valley-type(MVT) Zn-Pb deposits predominantly form within both orogenic forelands and fold-andthrust belts, yet the mineralization process within the latter tectonic setting remains inadequately understood... Mississippi Valley-type(MVT) Zn-Pb deposits predominantly form within both orogenic forelands and fold-andthrust belts, yet the mineralization process within the latter tectonic setting remains inadequately understood. This study, through a comprehensive review of MVT deposits across global fold-and-thrust belts, introduces a novel model elucidating the mineralization process in the context of tectonic belt evolution. It is demonstrated that during the stage Ⅰ, regional compression is introduced by early stages of plate convergence, causing the folding and thrusting and creating structural or lithological traps such as evaporite diapirs and unconformity-related carbonate dissolution-collapse structures. Thereafter, in stage Ⅱ, hydrocarbons begin to migrate and accumulate within these traps, where reduced sulfur is generated through thermochemical or bacterial sulfate reduction concurrent with or preceding Zn-Pb mineralization. In the subsequent stage Ⅲ, as plate convergence persists, the regional stress transitions from compression to transpression or extension. Under these conditions, steeply-dipping extensional faults are generated, facilitating the ascent of metalliferous brines into early-formed structural or lithological traps. Precipitation of Zn and Pb sulfides occurs through the mixing of Zn-Pb-transporting fluids with pre-existing reduced sulfur or by interaction with hydrocarbons. 展开更多
关键词 Mississippi Valley-type Zn-Pb deposits fold-and-thrust belts tectonic model structural or lithological traps extensional faults
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基于地幔通道流理论的郯庐断裂东侧三个巨型成矿带地球物理特征与成矿背景探讨
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作者 严加永 黄宗理 +5 位作者 张昆 张辉 陈昌昕 王志辉 高磊 王晓娟 《地质学报》 北大核心 2025年第3期778-793,共16页
郯庐断裂东侧平行展布着长江中下游铜铁成矿带、胶东金矿成矿带及辽东多金属成矿带,它们间距近乎相等,是中国东部重要的金属资源富集区。本文基于重力、磁法、深反射地震及大地电磁等多尺度地球物理数据,剖析了三个成矿带在地幔岩石圈... 郯庐断裂东侧平行展布着长江中下游铜铁成矿带、胶东金矿成矿带及辽东多金属成矿带,它们间距近乎相等,是中国东部重要的金属资源富集区。本文基于重力、磁法、深反射地震及大地电磁等多尺度地球物理数据,剖析了三个成矿带在地幔岩石圈、地壳和近地表的地球物理特征。结合地幔通道流理论分析,认为成矿物质来源于地幔岩石圈深部,郯庐断裂作为幔源物质上涌的主要通道,与其东侧的长江断裂、胶北断裂、辽东断裂三个次级断裂共同控制了这三个成矿带。通过模型和实际资料分析了不同地球物理方法在幔源岩浆全程追踪中的优势和不足,认为地球物理探测可以获取地幔到地表的三维图像,可实现对幔源岩浆在岩石圈空间的全程追踪,有助于提升对不同尺度成矿系统“源-运-储”关键要素的识别能力。研究结果表明地球物理多方法联合可有效追踪幔源物质运移路径,为深部找矿提供理论支撑。 展开更多
关键词 地幔通道流 地球物理 成矿带 郯庐断裂
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黄河“几”字形河道的成因及其动力学分析
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作者 李永军 段丰浩 +5 位作者 付浩 刘晓波 吴小力 王盼龙 王芊 彭建兵 《人民黄河》 北大核心 2025年第2期51-59,共9页
黄河“几”字形河道的形成与演化,取决于鄂尔多斯地块周缘构造带的边界形态及其相互作用。周缘构造带对地块的碰撞、俯冲、挤压、走滑、旋钮等构造作用,成就了银川地堑、河套地堑、晋陕峡谷等贯通黄河的构造地貌。地堑与峡谷中极为发育... 黄河“几”字形河道的形成与演化,取决于鄂尔多斯地块周缘构造带的边界形态及其相互作用。周缘构造带对地块的碰撞、俯冲、挤压、走滑、旋钮等构造作用,成就了银川地堑、河套地堑、晋陕峡谷等贯通黄河的构造地貌。地堑与峡谷中极为发育的断层带、碎裂岩带、密集节理带严格控制了河道延伸与拐弯。挽近时期,印度板块NE向、太平洋板块NW向对鄂尔多斯地块的挤入作用,复合地块周缘断裂的新活动,控制、约束了黄河的“几”字形河道样式。 展开更多
关键词 “几”字形河道 地堑和断陷带 构造带相互作用 鄂尔多斯地块 黄河
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基于离散元数值模拟的雪峰山前陆褶皱冲断带齐岳山分界断裂性质与形成过程
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作者 王帅杰 颜丹平 +3 位作者 周志成 孔霏 景含阳 廖威 《现代地质》 北大核心 2025年第1期18-30,共13页
NE向分布的齐岳山断裂将雪峰山前陆褶皱冲断带划分为西北部的川东隔挡式褶皱冲断带和东南部的湘西隔槽式褶皱冲断带。然而,齐岳山断裂的性质和形成过程长期以来缺乏明确共识,导致对雪峰山前陆褶皱冲断带的形成机制和演化过程存在显著分... NE向分布的齐岳山断裂将雪峰山前陆褶皱冲断带划分为西北部的川东隔挡式褶皱冲断带和东南部的湘西隔槽式褶皱冲断带。然而,齐岳山断裂的性质和形成过程长期以来缺乏明确共识,导致对雪峰山前陆褶皱冲断带的形成机制和演化过程存在显著分歧。为揭示齐岳山断裂的形成机制及其对两侧构造变形差异的控制作用,本文基于地震反射剖面解释,采用离散元数值模拟方法设计5组模型进行实验研究。研究结果表明,若存在先存断裂,变形集中于其部位,影响断层生成顺序;若无先存断裂且多套滑脱层具有较低内聚力,变形主要沿下部滑脱层传递;当中间滑脱层厚度大于下部滑脱层时,变形主要受中间滑脱层控制。结合地震剖面的分析,本文认为雪峰山前陆褶皱冲断带表现为“双层台阶式断弯褶皱带”,齐岳山断裂形成于前陆褶皱冲断带的递进变形过程中,其两侧构造差异主要受基底滑脱层分布和寒武系滑脱层力学性质的主导作用。湘西隔槽式褶皱冲断带由深层断弯褶皱控制,而川东隔挡式褶皱冲断带由浅层断弯褶皱控制。 展开更多
关键词 雪峰山 前陆褶皱冲断带 齐岳山断裂 离散元数值模拟 多滑脱层
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