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Geophysical prospecting of copper-nickel deposits in Beishan rift zone, Xinjiang 被引量:7
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作者 Jing-zi He Zheng-guo Fan +3 位作者 Sheng-qing Xiong Teng-fei Ge Xu-zhao Huang Si-xun Wang 《China Geology》 2021年第1期126-146,共21页
The Beishan rift zone in Xinjiang Uygur Autonomous Region was formed due to strong activities of faults on the basement of the Tarim continental crust.Despite the fact that many geological research results of the rift... The Beishan rift zone in Xinjiang Uygur Autonomous Region was formed due to strong activities of faults on the basement of the Tarim continental crust.Despite the fact that many geological research results of the rift zone have been achieved,only a few studies have been conducted on its regional geophysical characteristics.In this paper,the gravity and magnetic anomalies of the rift zone were highlighted through specific data processing of 1∶50000 high-precision aeromagnetic data and gravity data with a grid spacing of 2 km×2 km.Based on this,the geophysical evidence for the scope and internal structures of the Beishan rift zone was obtained for the first time.The distinct characteristics of magnetic and gravity fields in the areas to the north and south of the Beishan rift zone reveal that deep faults exist between the Beishan rift zone and the geological units on the southern and northern sides.Furthermore,the faults on the two areas contain the bidirectional thrusts and have flower-shaped structures according to the characteristics of the magnetic and gravity fields.The Beishan rift zone can be divided into two tectonomagmatic zones,namely the Zhongposhan-Bijiashan-Cihai-Baishanliang zone(the northern zone)and the Bayiquan-Qixin-Baishan zone(the southern zone).The northern zone can be further subdivided into three comet-shaped anomaly groups(tectonomagmatic areas),while the southern zone can be further subdivided into two tectonomagmatic areas.According to the characteristics of aeromagnetic anomalies and gravity field,19 mafic-ultramafic complexes were delineated.The known Pobei,Hongshishan,and Qixin complexes are all located within the inferred complexes,with estimates of total explored resources of Ni,Cu,and Au of 3×10^(6) t,10×10^(3) t and 10 t,respectively.The prospecting of high-grade copper-nickel deposits should focus on the periphery and deep parts of the known and inferred mafic-ultramafic complexes.Among them,the peripheral strata of the complexes specifically have great prospecting potential of large-scale high-grade copper-nickel deposits of magma injection type.Finally,this paper analyzed the application effects of the rapid airborne-ground-drilling synergetic exploration method in the prospecting of copper-nickel deposits in Qixin,Beishan,Xinjiang,which will provide references for further exploration of copper-nickel deposits in Beishan area,Xinjiang. 展开更多
关键词 rift zone Aeromagnetic anomaly Gravity anomaly Mafic-ultramafic complex Copper-nickel deposit Geological survey engineering Mineral exploration engineering Beishan XINJIANG
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Shear-wave velocity structure of the crust and uppermost mantle in the Shanxi rift zone 被引量:1
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作者 Meiqing Song Yong Zheng +2 位作者 Chun Liu Li Li Xia Wang 《Earthquake Science》 CSCD 2015年第2期135-149,共15页
The Shanxi rift zone is one of the largest and active Cenozoic grabens in the world, studying the velocity structure of the crust and upper mantle in this region may help us to understand the mechanisms of rift proces... The Shanxi rift zone is one of the largest and active Cenozoic grabens in the world, studying the velocity structure of the crust and upper mantle in this region may help us to understand the mechanisms of rift processes and the seismogenic environment of active seismicity in continental rifts. In this work, using the broadband seismic data of Shanxi, Hebei, Henan, Shaanxi provinces, and the Inner Mongolia Autonomous Region from February 2009 to November 2011, we have picked out 350 high-quality phase velocity dispersion curves of fundamental mode Rayleigh waves at periods from 8 to 75 s, and Rayleigh wave phase velocity maps have been constructed from 8 to 75 s period with horizontal resolution ranging from 40 to 50 km by two-station surface-wave tomography. Then, using a genetic algorithm, a 3D shear-wave speed model of the crust and uppermost mantle have been derived from these maps with a spatial resolution of 0.4° × 0.4°. Four characteristics can be outlined from the results: (1) Except in the Datong volcanic zone, in the depth range of 11-30 km, the location of a transition zone between the highand low-velocity regions is in agreement with the seismicity pattern in the study region, and the earthquakes are mostly concentrated near this transition zone; (2) In the depth range of 31-40 km, shear-wave velocities are higher to the south of the Taiyuan Basin and lower to the north, which is similar to the distribution pattern of Moho depth variations in the Shanxi region; (3) The shear-wave velocity pattern of higher velocities to the south of 38×N and lower velocities to the north is found to be consistent with that from the upper crustal levels to depth of 70 km. At the deeper depths, the spatial scale of the low-velocity anomalies zone in the north is gradually shrinking with depth increasing, the low-velocity anomalies are gradually disappearing beneath the Datong volcanic zone at the depth of 151-200 km. We proposed that the root of the Datong volcano may reach to a depth around 150 km; (4) Along the N-S vertical profile at 112.8°E, the 38°N latitude is the boundary between high and low velocities, arguing the tectonic difference between the Shanxi rift zone and its flanks, in the rift zone the seismic velocity is dominated by low-velocity anomalies while in the flanks it is high. 展开更多
关键词 Shanxi rift zone Two-station methodSurface wave Shear-wave velocity TOMOGRAPHY
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Gravity anomaly and crustal density structure in Jilantai rift zone and its adjacent region
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作者 Guiju Wu Chongyang Shen +1 位作者 Hongbo Tan Guangliang Yang 《Earthquake Science》 CSCD 2016年第4期235-242,共8页
This paper deals with the interpretation of Bouguer gravity anomalies measured along a 250 km long Suhaitu-Etuokeqi gravity profile located at the transitional zone of the Alxa and Ordos blocks where geophysical chara... This paper deals with the interpretation of Bouguer gravity anomalies measured along a 250 km long Suhaitu-Etuokeqi gravity profile located at the transitional zone of the Alxa and Ordos blocks where geophysical characteristics are very complex. The analysis is carried out in terms of the ratio of elevation and Bouguer gravity anomaly, the normalized full gradient of a section of the Bouguer gravity anomaly (Gh) and the crustal density structure reveal that (1) the ratio of highs and lows of elevation and Bouguer gravity anomaly is large between Zhengyiguan fault (F4) and Helandonglu fault (F6), which can be explained due to crustal inhomogeneities related to the uplift of the Qinghai-Tibet block in the northeast; (2) the main active faults correspond to the Gh contour strip or cut the local region, and generally show strong deformation characteristics, for example the Bayanwulashan mountain front fault (F1) or the southeast boundary of Alxa block is in accord with the western change belt of Gh, a belt about 10 km wide that extends to about 30 km; (3) Yinchuan- Pingluo fault (FS) is the seismogenic structure of the Pin- gluo M earthquake, and its focal depth is about 15 km; (4) the Moho depth trend and Bouguer gravity anomaly vari- ation indicates that the regional gravity field is strongly correlated with the Moho discontinuity. 展开更多
关键词 Yinchuan-Helanshan uplift Jilantai rift zone Gravity profile Bouguer gravity anomaly Crustal densitystructure Normalized full gravity gradient SEISMOGENESIS
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Distribution of the low velocity bulk in the middle-to-lower crust of southern Tibet: implications for formation of the north–south trending rift zones
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作者 Mingming Jiang Yinshuang Ai +1 位作者 Shiyong Zhou Yongshun John Chen 《Earthquake Science》 2014年第2期149-157,共9页
We conducted the ambient noise tomography to image the shallow crustal structure of southern Tibet. The2D maps of phase velocity anomalies at the periods of10–16 s show that the low velocities are mainly confined alo... We conducted the ambient noise tomography to image the shallow crustal structure of southern Tibet. The2D maps of phase velocity anomalies at the periods of10–16 s show that the low velocities are mainly confined along or near some of the rift zones. While the maps at the periods of 18–25 s show that the coherent patterns that the low velocities expand outside of the rift zones. It means that the low velocities are prevailing in the middle crust of southern Tibet. According to the previous study of surface wave tomography with teleseismic data,we find that the low velocities from the lower crust to the lithospheric mantle are also restricted to the same rift zones. Thus,the integrated knowledge of the distribution of the low velocities in southern Tibet provides some new insight on the formation of the north–south trending rift zones. Compiling the multidiscipline evidences,we conclude that the rifting was an integrated process of the entire lithosphere in the early stage(*26–10 Ma),but mainly occurred within the upper crust due to the weakening a decoupling in the low velocity middle crust in the late stage(later than *8 Ma). 展开更多
关键词 Ambient noise tomography Southern Tibet North–south trending rift zones
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Geophysical and Geological Features of the Meso-Cenozoic Lower Yangtze Rift Zone
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作者 Chen Shengzao Institute of Geophysics, State Seismological Bureau, Beijing Zhu Lupei 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1990年第4期363-378,共16页
It is clarified in this paper that the Lower Yangtze depression is a Meso-Cenozoic rift zone formed on thebasement of the Hercynian-Indosinian foreland basins. The rift zone is divided into eastern and western sectors... It is clarified in this paper that the Lower Yangtze depression is a Meso-Cenozoic rift zone formed on thebasement of the Hercynian-Indosinian foreland basins. The rift zone is divided into eastern and western sectorsand is different in northern and southern parts. The rift zone in plane combination comprises parallel.trifurcate or splitting rifts. The North Jiangsu-South Yellow Sea region represents a 'drift-type' rift basinwhose deposition center migrates gradually castward. The formation mechanism and dynamic evolution of therift basin are discussed from a viewpoint of the crustal fine-structure, with evidence in geology and geophysicsand analysis results of dynamic forces given. 展开更多
关键词 Geophysical and Geological Features of the Meso-Cenozoic Lower Yangtze rift zone
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Dyke Emplacement in the Narmada Rift Zone and Implications for the Evolution of Deccan Traps
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作者 JU Wei HOU Guiting K.R.HARI 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第S1期157-158,共2页
Dykes are primarily extensional fractures that form perpendicular to the minimum principal compressive stress,which have been extensively studied in the world during the past decades for various reasons including the
关键词 Dyke Emplacement in the Narmada rift zone and Implications for the Evolution of Deccan Traps
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Structural Architecture for Development of Marginal Extensional Sub-Basins in the Red Sea Active Rift Zone
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作者 Reda Amer Mohamed Sultan +1 位作者 Robert Ripperdan John Encarnación 《International Journal of Geosciences》 2012年第1期133-152,共20页
This paper presents a robust kinematic model that describes northern Red Sea and Gulf of Suez rifting and the development of marginal extensional half-graben sub-basins (ESB). A combination of Landsat Enhanced Themati... This paper presents a robust kinematic model that describes northern Red Sea and Gulf of Suez rifting and the development of marginal extensional half-graben sub-basins (ESB). A combination of Landsat Enhanced Thematic Mapper Plus (ETM+) and structural data was used to provide model constraints on the development of rift segments and ESB in the active rift zones. Structural analysis shows rotation and change in strike of rift-bounding faults. The model describes the northern Red Sea region as a poly-phase rift system initiated by late Oligocene (30 - 24 Ma) orthogonal rifting and the development of marginal ESB (now inland ESB), followed by oblique rifting and flank uplift during the early Miocene (24 - 18 Ma). The oblique rifting fragmented the rift depression into segments separated by oblique-slip accommodation within reactivated Pan-African (ca. 600 Ma) fracture zones, resulting in the development of antithetic faults and an en-echelon distribution of inland ESB. The current phase of rifting was instigated by the development of the Dead Sea Transform in response to increased northeasterly extension during the middle Miocene (ca. 18 Ma). The model explains the widening of the Red Sea rift during the last phase more than the Gulf of Suez rift by developing more antithetic faults and formation of offshore ESB, and deepening the rift depression. 展开更多
关键词 Remote Sensing TECTONIC Model MARGINAL Sub-Basins rift zone Red SEA
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Isotopic Ages of the Carbonatitic Volcanic Rocks in the Kunyang Rift Zone in Central Yunnan,China 被引量:2
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作者 ZHANGYongbei WANGGuilan +4 位作者 NIEJianfeng ZHAOChongshun XUChengyan QIUJiaxiang WangHao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2003年第2期204-211,共8页
The Mesoproterozoic Kunyang rift, which is located on the western margin of the Yangtze platform and the southern section of the Kangdian axis, is a rare massive Precambrian iron-copper polymetallic mineralization zon... The Mesoproterozoic Kunyang rift, which is located on the western margin of the Yangtze platform and the southern section of the Kangdian axis, is a rare massive Precambrian iron-copper polymetallic mineralization zone in China. The Mesoproterozoic Wulu (Wuding-Lufeng) basin in the middle of the rift is an elliptic basin controlled by a ring fracture system. Moreover, volcanic activities in the basin display zonation of an outer ring, a middle ring and an inner ring with carbonatitic volcanic rocks and sub-volcanic dykes discovered in the outer and middle rings. The Sm-Nd isochron ages have been determined for the outer-ring carbonatitic lavas (1685 Ma) and basaltic porphyrite of the radiating dyke swarm (1645 Ma) and the Rb-Sr isochron ages for the out-ring carbonatitic lavas (893 Ma) and the middle-ring dykes (1048 Ma). In combination of the U-Pb concordant ages of zircon (1743 Ma) in trachy-andesite of the corresponding period and stratum (1569 Ma) of the Etouchang Formation, as well as the Rb-Sr isochron age (1024 Ma) and K-Ar age (1186 Ma) of the dykes in the middle ring, the age of carbonarites in the basin is preliminarily determined. It is ensured that all of these carbonatites were formed in the Mesoprotero/oic period, whereby two stages could be identified as follows: in the first stage, carbonatitic volcanic groups, such as lavas, pyroclastic rocks and volcaniclastic sedimentary rocks, were formed in the outer ring; in the second stage, carbonatitic breccias and dykes appeared in the middle ring. The metamorphic age of the carbonatitic lavas in the outer ring was determined to be concurrent with the end of the first stage of the Neoproterozoic period, corresponding to the Jinning movement in central Yunnan. 展开更多
关键词 Kunyang rift central Yunnan China Precambrian mineralization zone carbonatitic volcanic rocks isotopic chronology iron and copper deposit CARBONATITE
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Prevalent thickening and local thinning of the mantle transition zone beneath the Baikal rift zone and its dynamic implications 被引量:6
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作者 SI ShaoKun TIAN XiaoBo +1 位作者 ZHANG HongShuang TENG JiWen 《Science China Earth Sciences》 SCIE EI CAS 2013年第1期31-42,共12页
The Baikal rift is the most seismically active continental rift in the world and is significant for studying the dynamics of continental rifts, although its precise dynamic mechanisms remain controversial. We calculat... The Baikal rift is the most seismically active continental rift in the world and is significant for studying the dynamics of continental rifts, although its precise dynamic mechanisms remain controversial. We calculated receiver functions (1748) from Global Seismographic Network seismic stations TLY and ULN and stacked receiver functions in different bins. Here we present discontinuities at depths of 410km and 660km and thickness of the mantle transition zone (MTZ) beneath the study area. The MTZ structure shows an obvious thickening (292km) in the Baikal rift zone except for an area of limited thinning (230km), whereas it is basically normal (250km) beneath the Mongolian area, to the southeast of the Baikal rift. Combining these results with previous findings, we propose that the large-scale thickening beneath the Baikal rift zone is likely to be caused by the Mesozoic collision between the Siberian Platform and the Mongolia-North China Block or magmatic intrusion into the lower crust, which would result in crust and lithosphere thickening. Thus, the lower crust becomes eclogitized and consequently detached into the deep mantle because of negative buoyancy. The detachment not only induces asthenosphere upwelling but also accelerates mantle convection of water detached from the subducted slab, which would increase mantle melting, while both processes promote the development of the rift. Our preliminary results indicate that the detachment and the consequent hot upwelling have an important influence on the development of the Baikal rift, and a small-scale mantle upwelling indicated by the located thinning may have destroyed the lithosphere and promoted this development. 展开更多
关键词 Baikal rift zone mantle transition zone P wave receiver function
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High-resolution crustal velocity structure in the Shanxi rift zone and its tectonic implications 被引量:4
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作者 Liting DOU Huajian YAO +4 位作者 Lihua FANG Song LUO Meiqin SONG Xiaomei YAN Cheng CHENG 《Science China Earth Sciences》 SCIE EI CSCD 2021年第5期728-743,共16页
The Shanxi rift zone,located in the Trans-North China Orogen(TNCO)of the North China Craton(NCC),is wellknown for hosting large intraplate earthquakes in continental China.The TNCO is a suture zone formed by the amalg... The Shanxi rift zone,located in the Trans-North China Orogen(TNCO)of the North China Craton(NCC),is wellknown for hosting large intraplate earthquakes in continental China.The TNCO is a suture zone formed by the amalgamation of the eastern and the western blocks of the NCC.After its formation,it was reactived and deformed by later tectonic activities,which result in complex lithospheric heterogeneities.Thus,the detailed crustal structure of the Shanxi rift zone is critical for understanding the tectonics and seismogenic mechanism in this area,which will shed new lights on the formation and dynamic evolution of the NCC.In this study,we applied ambient noise tomography based on 18 months continuous records from 108 seismic stations located in Shanxi and its surroundings,in order to constrain its detailed crustal structure.We measured 4437 Rayleigh wave phase velocity dispersion curves in the period of 5–45 s from the cross-correlation functions.Next,a surface wave direct inversion algorithm based on surface-wave ray tracing was used to resolve a 3-D S-wave velocity model in the upper 60 km with lateral resolution of~50–80 km.The tomographic images show that the sedimentary thickness of the Taiyuan Basin is less than 5 km.At depth of 0–10 km,we observe a good correlation between the imaged structural variations with geological and topographic features at the surface.For example,the center of rift shows low-velocity anomalies and the uplifting areas on both sides are characterized by high velocity anomalies.The western and eastern boundaries of the slow materials coincide with the faults that control the basin.The slow material extends from the shallow surface to depth of about 15 km but it getting smaller in shape at deeper depth.For the Taiyuan Basin,Linfen Basin,and Yuncheng Basin in the central and southern parts,the structure is dominant by slow materials in the upper crust but changes to strong high-velocity anomalies in the lower crust and the uppermost mantle at depth deeper than 25 km.We interprete these high-velocity anomalies to be associated with the cold remnant of the underplated basalt in the lower crust that were formed in early Tertiary before the basin was stretched.We also observe the low-velocity anomaly beneath the Datong volcanic area,which extends from the uppermost mantle to a depth of 20 km vertically and migrates from west to east laterally.It may reflect the upwelling channel of the magmatic material in Datong.Moreover,the strong low-velocity anomalies presented north of 38°N could be related to the heated crustal materials with paritial melting as a result of the intensive magmatic activities of the Datong Volcano since the Cenozoic.In our study region,seismicity mainly concentrates in the depth range of 5–20 km and we find that most earthquakes appear to occur in places where velocity changes from high to low rapidly,with slight higher concentration in the faster material areas.In summary,our high-resolution 3-D crustal velocity model provides important seismological constraints to understand the tectonic evolution and seismicity across the Shanxi rift zone. 展开更多
关键词 Shanxi rift zone Ambient noise tomography S-wave velocity structure Magmatic underplating Earthquake distribution
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Structures and Styles of Deformation in Rift,Ridge,Transform Zone,Oblique Rift and a Microplate Offshore/Onshore North Iceland 被引量:1
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作者 Maryam Khodayar Sveinbjorn Bjornsson 《International Journal of Geosciences》 2018年第8期461-511,共51页
The diverging plate boundaries in North Iceland and its shelf display a complex tectonic at the Kolbeinsey Ridge (K-R), the Northern Rift Zone (NRZ), and the Tj?rnes Fracture Zone containing the Grímsey Oblique R... The diverging plate boundaries in North Iceland and its shelf display a complex tectonic at the Kolbeinsey Ridge (K-R), the Northern Rift Zone (NRZ), and the Tj?rnes Fracture Zone containing the Grímsey Oblique Rift (GOR), the Húsavík-Flatey Fault (HFF), and the Dalvík Lineament (DL). While active deformation is well-known, the structural pattern is sporadically mapped and a comprehensive account of the upper Tertiary-present deformation is not fully at hand. To address the gaps, this paper provides new regional tectonic maps with continuous coverage, and detailed analyses of the deformation. Faults, open fractures, prominent joints and volcanic edifices were identified on Multibeam/Single beam, Spot 5, and Digital Elevation Model, and subjected to multidisciplinary structural analysis and correlation with selected data. Some of the results are: 1) Six sets constitute the structural pattern. The N-S rift-parallel normal faults are 1/3, and the shear fractures of the transform zone and the oblique rift 2/3 of the fracture population. The en échelon arrangements above deep-seated shear zones indicate dextral slip on WNW to NW, and sinistral slip on NNE to ENE faults, conformable with earthquake data. 2) During the polyphase tectonic, the six sets led to basin and horst formation, block compartmentalisation, rotation, horsetail splay, rhomb-graben in relay zone of strike-slips, and volcanism. 3) Listric faults are absent and the steeply-dipping faults are antithetic, synthetic, or form extensional flower structures above 4 km depth. The Plio-pleistocene/present syn-sedimentary deformation caused a deep half graben in the Eyjafjarearáll Basin (Ey), fault growth, rollover, and sediment onlaps, with some of the faults still active. 4) The plate boundaries of K-R/Ey, GOR/?xarfjreur/NRZ, and DL delimit a major microplate labelled here as Grímsey-Tj?rnes-Dalvík. 5) The WNW earthquake cluster in GOR corresponds either to a blind horsetail splay fault or to initiation of a transform segment parallel to the HFF. The described tectonic-sedimentary-magmatic deformation is relevant to other diverging plate boundaries where similar sets control the hydrocarbon and geothermal resources. 展开更多
关键词 Kolbeinsey Ridge Iceland Northern rift zone Tjornes Transform zone Grimsey Oblique rift Grimsey-Tjornes-Dalvík Microplate Magmatic/Sedimentary/Tectonic Processes
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Tectonic Control of the Theistareykir Geothermal Field by Rift and Transform Zones in North Iceland:A Multidisciplinary Approach
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作者 Maryam Khodayar Sveinbjorn Bjornsson +3 位作者 Sigurour Garoar Kristinsson Ragna Karlsdóttir Magnús Olafsson Skúli Víkingsson 《Open Journal of Geology》 2018年第6期543-584,共42页
This paper presents a multidisciplinary structural analysis of a 165 km2 area in the Northern Rift Zone and the Tj&#246;rnes Fracture Zone of Iceland, and unravels the tectonic control of the Theistareykir geother... This paper presents a multidisciplinary structural analysis of a 165 km2 area in the Northern Rift Zone and the Tj&#246;rnes Fracture Zone of Iceland, and unravels the tectonic control of the Theistareykir geothermal field and its surroundings. About 10729 fracture segments (faults, open fractures, joints) are identified in the upper Tertiary to Holocene igneous series. The segments were extracted from aerial images and hillshade, and then analyzed in terms of number of sets, geometry, motions, frequency, and relative age. The correlation with surface geothermal manifestations, resistivity, earthquakes, and occasional well data reveals the critical regional and local fractures at the surface, reservoir level and greater depth. The main conclusions of this study are: 1) The structural pattern consists of N-S rift-parallel extensional fractures and the Riedel shears of the transform zone striking NNE, ENE, E-W, WNW and NW, which compartmentalize together the blocks at any scale. 2) The en échelon segmentation shows strike and oblique slips on the Riedel shears, with a dextral component on the WNW and NW planes and a sinistral component on the NNE to ENE faults. 3) Fractures form under the influence of the transform mechanism and the effect of rifting becomes significant only with time. 4) The WNW dextral oblique-slip Stórihver Fault of the transform zone has a horsetail splay that extends eastwards into the geothermal field. There, this structure, along with few NW, ENE, NNE and N-S fractures, controls the alteration, alignment of fumaroles, emanating deep gases. These fractures also rupture during natural or induced earthquakes. 5) The resistivity anomalies present en échelon geometries controlled by the six fracture sets. These anomalies display clockwise and anticlockwise rotations within the upper 8 km crustal depth, but at 8 km depth, only three sets (the N-S rift structures, and the E-W and the NW Riedel shears) are present at the rift and transform plate boundaries. Results of this study are relevant to resource exploration in other complex extensional contexts where rift and transform interact.&#246;&#246;&#246; 展开更多
关键词 Northern rift zone of Iceland Tjornes Transform zone Tectonic Control of Geothermal Activity Fractured Reservoir EARTHQUAKES Resistivity Anomalies
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Pb isotope geochemistry of lead, zinc, gold and silver deposit clustered region, Liaodong rift zone,northeastern China 被引量:14
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作者 CHEN Jiangfeng1, YU Gang1, XUE Chunji2, QIAN Hui1, HE Jianfeng1, XING Zhi1 & ZHANG Xun1 1. School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China 2. Department of Geology, Chang’an University, Xi’an 710054, China 《Science China Earth Sciences》 SCIE EI CAS 2005年第4期467-476,共10页
Pb isotopic analyses were reported for sulfide and hydrothermal carbonate minerals and marble of the Xiquegou lead-zinc, the Zhenzigou zinc-lead and the Gaojiapuzi silver deposits from the Qingchengzi ore field and th... Pb isotopic analyses were reported for sulfide and hydrothermal carbonate minerals and marble of the Xiquegou lead-zinc, the Zhenzigou zinc-lead and the Gaojiapuzi silver deposits from the Qingchengzi ore field and the Beiwagou zinc-lead deposit in the west, Proterozoic Liaodong rift zone. Pb isotopic ratios of the marble from the Qingchengzi ore field range from 18.24 to 30.63 for 206 Pb/204Pb, 15.59 to 17.05 for207Pb/204Pb and 37.43 to 38.63 for 208Pb/204Pb. The marble gives a Pb-Pb isochron age of 1822±92 Ma, which is interpreted as the age of the metamorphism of the marble. Ore Pb, including Pb of sulfide and hydrothermal car- bonate minerals, from the Qingchengzi ore field shows limited variation with 206 Pb/204Pb=17.66- 17.96, 207 Pb/204Pb=15.60-15.74 and 208Pb/204Pb=37.94-38.60. In contrast, ore Pb from the Beiwagou deposit gives different Pb isotopic ratios with 206Pb/204Pb=15.68-15.81, 207 Pb/204Pb= 15.34-15.45 and 208Pb/204Pb=35.30-35.68. Pb of all deposits from the Liaodong rift zone is derived from the upper crust. Ore Pb of the Qingchengzi deposits is derived from a young upper crust. The model Th/U ratios of 4.40 to 4.74 for ore Pb are significantly different from that of 1.7 to 4.4 given by the marble of the Qingchengzi ore field, suggesting that marble is not the source of the ore Pb. Ore Pb of the Beiwagou deposit is extracted from its source and the deposit is formed at the Paleoproterozoic era. Different Pb isotopic ratios of the Qingchengzi ore field and the Beiwagou deposit are due to different ages of the deposits and suggest that the two types of deposits are derived from different sources and are possibly formed by different ore-forming processes. 展开更多
关键词 Pb isotopes source(s) of the ORE-FORMING materials origin of ORE deposits LIAODONG rift zone.
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2025年西藏定日6.8级地震登么错段地表变形特征及其成因 被引量:5
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作者 梁明剑 董芸希 +14 位作者 左洪 代友林 肖本夫 廖程 谭凌 王余伟 李响 汤才成 张威 张会平 孟令媛 苏金蓉 吴微微 李传友 严媚 《地震地质》 北大核心 2025年第1期80-89,共10页
2025年西藏定日6.8级地震发生在申扎-定结裂谷系南段,其发震断裂为登么错断裂,并形成长约26km的地震地表破裂带和形变带。其中,北段的破裂带主要呈正断性质,垂直同震位错量达2~3m;南段(登么错段)的地表变形带主要分布于登么错湖东侧,宽... 2025年西藏定日6.8级地震发生在申扎-定结裂谷系南段,其发震断裂为登么错断裂,并形成长约26km的地震地表破裂带和形变带。其中,北段的破裂带主要呈正断性质,垂直同震位错量达2~3m;南段(登么错段)的地表变形带主要分布于登么错湖东侧,宽达上百米,且变形性质复杂,既有拉张变形,又有挤压变形。在南段的拉张变形带中,与NNE向断层陡坎展布一致的变形带,可能是具有构造意义的地震地表破裂带。而挤压变形带应是地震中因拉张变形作用影响形成的次生地表变形带,与地震震动、场地地形地貌、沉积特征和气候条件有关,与发震断裂的活动无直接关系。 展开更多
关键词 西藏定日6.8级地震 登么错断裂 地表变形带 活动裂谷系
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山西地区典型震源位置的精确度分析
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作者 张蕙 殷伟伟 李宏伟 《震灾防御技术》 北大核心 2025年第1期32-40,共9页
针对当前地震定位误差分析的不足,本文提出了利用数值模拟定量计算地震定位准确度的方法,并选择近年来山西断陷带典型地震事件进行测试分析。结果显示,山西断陷带典型地震(M_(L)≥3.6)定位精度基本小于5 km,南北两端的大同、运城盆地地... 针对当前地震定位误差分析的不足,本文提出了利用数值模拟定量计算地震定位准确度的方法,并选择近年来山西断陷带典型地震事件进行测试分析。结果显示,山西断陷带典型地震(M_(L)≥3.6)定位精度基本小于5 km,南北两端的大同、运城盆地地震定位精度显著低于中部3个盆地;地震定位精度与参与定位的台站数量和最大空隙角密切相关;当最大空隙角相近时,地震定位的可信度随着参与定位的台站数量增多而升高。 展开更多
关键词 山西断陷带 定位精度 概率统计 误差分析
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2025年1月7日定日地震震源特性及对申扎-定结裂谷活动的启示
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作者 万永革 王润妍 +1 位作者 靳志同 兰从欣 《地震地质》 北大核心 2025年第3期806-819,共14页
2025年1月7日西藏定日发生6.8级地震。该地震发生在申扎-定结裂谷带上,矩震级达7.2,在裂谷带发生如此大的地震较为罕见。为理解该地震的震源特性,文中搜集所能得到的该地震的地震矩张量解,采用将对应矩张量元素求平均值的方法得到该地... 2025年1月7日西藏定日发生6.8级地震。该地震发生在申扎-定结裂谷带上,矩震级达7.2,在裂谷带发生如此大的地震较为罕见。为理解该地震的震源特性,文中搜集所能得到的该地震的地震矩张量解,采用将对应矩张量元素求平均值的方法得到该地震的中心地震矩张量。采用中心地震矩张量理解震源特性,不仅考虑了不同来源的地震矩张量结果,而且算法简单,优于前人的震源机制中心解算法。将中心地震矩张量分解为位错源部分和补偿线性矢量偶极部分,发现位错源部分在近垂向挤压和近EW向拉张的力学状态下发生,补偿线性矢量偶极部分呈现垂向和SN向同时挤压和EW向拉张的矩释放模式。通过综合分析前人地质调查得到的申扎-定结裂谷带为陡倾角的正断层,我们推测定日地震的非双力偶矩张量为浅部倾角较陡、深部倾角较缓的铲形断裂滑动角自浅到深逐步变化的连续性滑动导致的综合结果。文中还搜集了定日地震余震的震源机制资料和周围历史地震的地震矩张量资料,分别求得了余震和历史地震的综合地震矩张量,并对其开展了同样的分析,发现得到的位错源部分和补偿线性矢量偶极部分的模式与主震一致,佐证了主震震源特性的分析结果。青藏高原SN向裂谷带的成因机制存在多种假说,定日地震的震源特性分析支持岩浆活动或下地壳底劈侵入和印度板块物质共同挤入的相关模型。根据定日地震的中心地震矩张量解和裂谷带形状推测,地震矩张量中的非双力偶源于弯曲断层和滑动角的改变,为直观解释地震矩张量的非双力偶部分提供了思路。 展开更多
关键词 定日地震 中心地震矩张量 补偿线性矢量偶极 综合地震矩张量 裂谷区特征
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山西断陷带及其邻区背景噪声面波直接反演成像 被引量:2
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作者 张浩 雷建设 +1 位作者 宋晓燕 邓玥 《CT理论与应用研究(中英文)》 2025年第2期175-189,共15页
山西断陷带是世界上最活跃的新生代大陆裂谷之一,获得该地区地壳精细三维S波速度结构有助于了解大陆裂谷的形成机制。本研究利用2021年1月至2022年12月期间山西、内蒙、河北、河南和陕西等地布设的113个省级固定台站记录的连续波形数据... 山西断陷带是世界上最活跃的新生代大陆裂谷之一,获得该地区地壳精细三维S波速度结构有助于了解大陆裂谷的形成机制。本研究利用2021年1月至2022年12月期间山西、内蒙、河北、河南和陕西等地布设的113个省级固定台站记录的连续波形数据,提取5~40 s周期范围共4 951条高质量瑞利波相速度频散曲线,采用面波直接反演成像法,获得山西断陷带及其周边地区地壳0~40 km深度的三维S波速度结构。结果表明:5 km深度处的S波速度结构与地表断陷带分布和沉积层厚度存在一定相关性,断陷带整体呈低速异常特征,两侧隆起区为高速异常;随着深度的增加,低速异常区域有所减少,且低速异常从地表一直延伸至15 km深度左右;从25 km深度开始,山西断陷带中南部的太原盆地、临汾盆地和运城盆地由上地壳的低速异常转为下地壳的高速异常,并持续延伸至上地幔顶部,可能为盆地拉张之前第三纪早期的玄武岩岩浆底侵冷却所致;大同火山区的低速异常从上地幔顶部持续延伸至地壳20 km深度左右,并由西向东转移,较清晰地揭示出大同火山下方的岩浆上涌通道;北纬38°以北大面积的低速异常推测可能为新生代以来大同火山大量的火山活动引起地壳升温导致部分熔融形成。本研究获得的研究区地壳三维高分辨率S波速度结构为进一步理解大陆裂谷的形成机制提供了新的地震学证据。 展开更多
关键词 背景噪声成像 S波速度结构 山西断陷带 大同火山
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南海西北部陆缘裂解过程及地壳减薄机制
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作者 刘政渊 朱俊江 +6 位作者 朱庆龙 焦钰涵 丁小笑 李欣然 黄一桓 敖翔 李三忠 《地球物理学报》 北大核心 2025年第12期4985-5004,共20页
南海西北部陆缘是一种典型的被动大陆边缘,是研究大陆裂解和地壳伸展机制的理想场所,因其独特的幕式裂解特征,长期以来备受关注.前人提出了多种岩石圈扩张模式,如岩石圈分层剪切模式、弧后扩张模式、东亚陆缘右行裂解模式以及早期单剪... 南海西北部陆缘是一种典型的被动大陆边缘,是研究大陆裂解和地壳伸展机制的理想场所,因其独特的幕式裂解特征,长期以来备受关注.前人提出了多种岩石圈扩张模式,如岩石圈分层剪切模式、弧后扩张模式、东亚陆缘右行裂解模式以及早期单剪和晚期纯剪的被动伸展模式,然而这些模式是否适用于南海西北部陆缘需要进一步的验证和详细研究.为探讨南海西北部陆缘的裂解过程及地壳减薄机制,本研究结合南海西北部陆架区两条海底地震仪(OBS)测线P波速度结构模型和全球自由空间重力异常数据,开展了两条测线的详细重力模拟和结果分析.根据重力异常变化及构造单元空间展布特征,在研究区内识别并划分出三条NE向裂谷带(R1、R2、R3),其重力异常呈显著负异常,平均约-25 mGal,最低-62 mGal.通过重力模拟获得了剖面最优地壳密度变化模型,模拟结果显示陆架区地壳厚度为18~28 km,裂谷中心仅19~20 km,整体由陆向海减薄,呈典型拉张地壳特征.拉张因子在裂谷边缘为1.2~1.3,裂谷带内增至1.4~1.6,中心可达1.7,反映强烈地壳减薄.依据重力模拟和海底地震仪探测的结果,本研究提出南海西北部陆缘地壳减薄受构造-岩浆叠加机制控制,初始的构造拉伸作用导致岩石圈减薄并进入裂解状态,随后地幔热物质上涌为减薄过程提供额外的热力驱动,显著加速了地壳的减薄与裂谷带沉降,模拟结果展示了陆缘裂解和地壳减薄是受到区域构造拉伸与软流圈地幔上涌之间的联合作用. 展开更多
关键词 南海西北部 被动大陆边缘 裂谷带 地壳减薄 重力模拟
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新疆北山南部白山地区晚石炭世火山机构的发现及其地质意义
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作者 王杰 康磊 +5 位作者 杨选江 张晨博 祖倩 詹海鹏 李玲 雍华华 《华东地质》 2025年第2期222-237,共16页
对北山地区晚古生代裂谷带何时开始裂解的相关研究一直较薄弱。文章通过1∶5万区域地质调查,在新疆北山造山带南部新鉴别出保存完好的晚石炭世火山机构,岩石组合类型包括安山岩、英安岩、玄武岩、流纹岩及火山碎屑岩,锆石U-Pb年龄为313~... 对北山地区晚古生代裂谷带何时开始裂解的相关研究一直较薄弱。文章通过1∶5万区域地质调查,在新疆北山造山带南部新鉴别出保存完好的晚石炭世火山机构,岩石组合类型包括安山岩、英安岩、玄武岩、流纹岩及火山碎屑岩,锆石U-Pb年龄为313~300 Ma。火山岩具有相对较高的Na2O含量和Mg^(#)值,相对较低的CaO和TiO_(2)含量,属于钙碱性系列岩石。稀土元素配分模式呈明显的右倾式,具有弱的负铕异常(δEu=0.72~1.00),富集大离子亲石元素Rb、Th、K和LREE,亏损Nb、Ta、P和Ti。根据岩石的地球化学特征和(Th/Nb)_(N)、(Nb/La)_(N)等关键指数,发现岩浆在上侵喷发过程中可能受到强烈的地壳混染作用。碎屑岩的沉积序列显示其应形成于陆内环境,结合Zr/Nb-Nb/Th图解及Zr/Y-Nb/Y图解,认为基性火山岩源区可能形成于与地幔柱有关的构造地质背景。根据Zr/Y-Zr图解和Th/Hf-Ta/Hf图解,结合区域地质资料,认为该套火山岩系应形成于大陆裂谷初始裂解的环境,这是目前报道的该裂谷带最早的年龄信息,指示晚石炭世北山南部地区已开始处于陆内初始裂谷的环境。 展开更多
关键词 锆石U-PB测年 晚石炭世 火山岩 地球化学 裂谷带 新疆白山地区
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高分影像在2025年1月7日西藏定日M_(S)6.8地震同震地表破裂调查中的应用
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作者 乔俊香 石峰 +5 位作者 李安 李涛 张达 王鑫 格桑旦珍 孙浩越 《地震地质》 北大核心 2025年第3期789-805,共17页
中国地震台网中心测定,2025年1月7日9时5分,西藏自治区日喀则市定日县发生6.8级地震。快速发现同震地表破裂不仅可确定地震的发震构造,对于震后的震害评估和应急救援都具有十分重要的意义。文中利用国产高分一号卫星于地震当日对震区采... 中国地震台网中心测定,2025年1月7日9时5分,西藏自治区日喀则市定日县发生6.8级地震。快速发现同震地表破裂不仅可确定地震的发震构造,对于震后的震害评估和应急救援都具有十分重要的意义。文中利用国产高分一号卫星于地震当日对震区采集的震后影像与震前影像进行对比解译,快速获得了本次地震的同震地表破裂的空间分布和几何形态,确定此次地震的发震断层为位于申扎-定结裂谷西南段的登么错断裂。遥感解译和野外调查确定本次地震的同震地表破裂带主要分布于登么错断裂北段及中段的古荣村附近,断续延伸约15km,与先存断层位置一致,并且于地表破裂带尼辖错段测得本次地震的最大同震位错量约3m,同时在登么错湖东岸确定近10km重力成因的伴生地表变形带。本次定日地震同震地表破裂的遥感解译结果和野外实地调查情况具有较高的一致性,体现了国产高分辨率数据在地震同震地表破裂快速获取和发震构造快速确定工作中的应用潜力,为未来强震的应急工作提供了一条可行且快速高效的路径。 展开更多
关键词 定日M_(S)6.8地震 登么错断裂 同震地表破裂带 申扎-定结裂谷 遥感解译
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