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Strain accumulation in the Mentawai Forearc Sliver,Indonesia,inferred from continuous GNSS-derived strain rate
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作者 Leni Sophia Heliani Cecep Pratama +10 位作者 Adi Wibowo David Prambudi Sahara Susilo Susilo Sidik Tri Wibowo Ayu Nur Safii Oktadi Prayoga Ajat Sudrajat Mizan Bustanul Fuady Bisri Evi Dwi Kurniasari Sheilla Evelinda Nicholas Genta Setiawan Gunawan 《Geodesy and Geodynamics》 2025年第1期1-6,共6页
The Mentawai Forearc Sliver(MFS)is characterized by oblique deformation formed as slip partitioned between normal and parallel trench plate convergence.The surge of great earthquakes from 2004 to2012 along the adjacen... The Mentawai Forearc Sliver(MFS)is characterized by oblique deformation formed as slip partitioned between normal and parallel trench plate convergence.The surge of great earthquakes from 2004 to2012 along the adjacent Sunda trench left a large unbroken segment known as the Mentawai Seismic Gap.Here,we adopted continuous Global Navigation Satellite System(GNSS)observation data to identify the present regional crustal deformation using geodetic strain rates.The principal strain rate,dilatation rate,and maximum shear strain rate are about 0.13 microstrain/yr,0.2 microstrain/yr,and 0.1 microstrain/yr,respectively,with the range of its uncertainties between 0.01 and 0.04 microstrain/yr.The dilatation and maximum shear strain rates reveal the spatial coverage of strike-slip duplex and backthrust tectonics along the Mentawai Forearc Sliver. 展开更多
关键词 Mentawai forearc DILATATION SHEAR GEODETIC
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3D and 2D topographic correction to estimated geothermal gradient from the base of gas hydrate stability zone in the Andaman Forearc Basin
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作者 Uma Shankar 《Energy Geoscience》 EI 2024年第2期314-320,共7页
Methane gas hydrate related bottom-simulating reflectors(BSRs)are imaged based on the in-line and cross-line multi-channel seismic(MCS)data from the Andaman Forearc Basin.The depth of the BSR depends on pressure and t... Methane gas hydrate related bottom-simulating reflectors(BSRs)are imaged based on the in-line and cross-line multi-channel seismic(MCS)data from the Andaman Forearc Basin.The depth of the BSR depends on pressure and temperature and pore water salinity.With these assumptions,the BSR depth can be used to estimate the geothermal gradient(GTG)based on the availability of in-situ temperature measurements.This calculation is done assuming a 1D conductive model based on available in-situ temperature measurement at site NGHP-01-17 in the study area.However,in the presence of seafloor topography,the conductive temperature field in the subsurface is affected by lateral refraction of heat,which focuses heat in topographic lows and away from topographic highs.The 1D estimate of GTG in the Andaman Forearc Basin has been validated by drilling results from the NGHP-01 expedition.2D analytic modeling to estimate the effects of topography is performed earlier along selected seismic profiles in the study area.The study extended to estimate the effect of topography in 3D using a numerical model.The corrected GTG data allow us to determine GTG values free of topographic effect.The difference between the estimated GTG and values corrected for the 3D topographic effect varies up to~5℃/km.These conclude that the topographic correction is relatively small compared to other uncertainties in the 1D model and that apparent GTG determined with the 1D model captures the major features,although the correction is needed prior to interpreting subtle features of the derived GTG maps. 展开更多
关键词 Gas hydrate BSR Geothermal gradient 3D and 2D topographic modeling Andaman forearc Basin
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Burial and exhumation history of the Xigaze forearc basin, Yarlung suture zone. Tibet 被引量:4
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作者 Devon A.Orme 《Geoscience Frontiers》 SCIE CAS CSCD 2019年第3期895-908,共14页
The Cretaceous-Eocene Xigaze forearc basin is a crucial data archive for understanding the tectonic history of the Asian continental margin prior to and following collision with India during the early Cenozoic Era. Th... The Cretaceous-Eocene Xigaze forearc basin is a crucial data archive for understanding the tectonic history of the Asian continental margin prior to and following collision with India during the early Cenozoic Era. This study reports apatite and zircon(U-Th)/He thermochronologic data from fourteen samples from Albian-Ypresian Xigaze forearc strata to determine the degree and timing of heating(burial) and subsequent cooling(exhumation) of two localities along the Yarlung suture zone(YSZ) near the towns of Saga and Lazi. Thirty-seven individual zircon He ages range from 31.5 ± 0.8 Ma to6.06 ± 0.18 Ma,with the majority of grains yielding ages between 30 Ma and 10 Ma. Twenty apatite He ages range from 12.7 ± 0.5 Ma to 3.9 ± 0.3 Ma,with the majority of grains yielding ages between 9 Ma and 4 Ma. These ages suggest that the Xigaze forearc basin was heated to 140-200 ℃ prior to cooling in Oligocene-Miocene time. Thermal modeling supports this interpretation and shows that the samples were buried to maximum temperatures of ~140-200 0 C by 35-21 Ma, immediately followed by the onset of exhumation. The zircon He and apatite He dataset and thermal modeling results indicate rapid exhumation from ~21 Ma to 15 Ma, and at ~4 Ma. The 21-15 Ma thermochronometric signal appears to be regionally extensive, affecting all the lithotectonic units of the YSZ, and coincides with movement along the north-vergent Great Counter Thrust system. Thrusting, coupled with enhanced erosion possibly related to the paleo-Yarlung River, likely drove Early Miocene cooling of the Xigaze forearc basin.In contrast, the younger phase of rapid exhumation at ~4 Ma was likely driven by enhanced rock uplift in the footwall of north-striking rifts that cross-cut the YSZ. 展开更多
关键词 Xigaze TIBET forearc BASIN THERMOCHRONOLOGY Yarlung
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CHRONOSTRATIGRAPHY,SEDIMENTATION AND EVOLUTION OF THE XIGAZE FOREARC BASIN: IMPLICATIONS FOR DYNAMIC EVOLUTION OF THE YARLUNG ZANGBO SUTURE ZONE 被引量:3
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作者 Wang Chengshan 1, Liu Zhifei 2,1 , Li Xianghui 1 2 Laboratory of Marine Geology, Tongji University, Shanghai 200092 《地学前缘》 EI CAS CSCD 2000年第S1期106-107,共2页
The Yarlung Zangbo Suture Zone (YZSZ), a major lineament in Tibet geological framework, which is accepted as the collision site between India and Asia (Allègre et al., 1984; Coulon et al., 1986; Dewey et al., 199... The Yarlung Zangbo Suture Zone (YZSZ), a major lineament in Tibet geological framework, which is accepted as the collision site between India and Asia (Allègre et al., 1984; Coulon et al., 1986; Dewey et al., 1990; Yin et al., 1994), is an extremely complicated tectonic zone. It includes seven different tectonic\|sedimentary units from north to south as follows: Gangdese arc complex keeping the Sangri Group inside, the Qiuwu Formation, the Giabulin Formation, the Xigaze Group, ophiolitic massifs, the Liuqu Group, and melange zones (Wang et al., 1999). Current models, which mainly focus on researches at the unit of ophiolitic massifs, propose that most of the Tethyan oceanic lithosphere was subducted into one single subduction zone active during the Middle Cretaceous or the Late Cretaceous, and closed during the Paleogene India\|Asia collision. In this report, we present latest research results on units in the Xigaze forearc basin and others in YZSZ after 6\|year\|period of comprehensive investigations. Chronostratigraphy framework, sedimentology, and evolution of the Xigaze forearc basin are discussed in details. Four thrust systems in YZSZ are named. Dynamic evolution of the YZSZ including two subductions of Tethys is presented. 展开更多
关键词 SUBMARINE FAN Xigaze forearc basin Yarlung Zangbo SUTURE Zon e
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Late Cenozoic seismic stratigraphy of the Andaman Forearc Basin,Indian Ocean 被引量:3
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作者 Dhananjai K.Pandey Goli Anitha +1 位作者 Ramesh Prerna Anju Pandey 《Petroleum Science》 SCIE CAS CSCD 2017年第4期648-661,共14页
Interpretation of new multichannel seismic reflection data from the Andaman Forearc Basin(AFB) in the northern Indian Ocean is presented here. The highquality multichannel seismic data from the Andaman Forearc region ... Interpretation of new multichannel seismic reflection data from the Andaman Forearc Basin(AFB) in the northern Indian Ocean is presented here. The highquality multichannel seismic data from the Andaman Forearc region enable us to examine the seismic characters and to demarcate seismic sequences bounded by distinct unconformities. Ages of marked seismic horizons have been calibrated with available litholog data from nearby industry boreholes. Seismic interpretation of new data shows that the AFB is filled with * 4.5-s-two way travel time(TWT) thick Neogene to Recent sediments. The entire basin assemblage exhibits two distinct major sequences pertaining to the Neogene and Quaternary times. A large part of the basin is filled with intermittent mass transport deposits(MTD). We infer that the episodic uplift of the Invisible Bank, protuberance of the outerarc and regular deformation through reactivation of preexisting normal faults since the Pleistocene could be attributed as causal mechanisms for the MTDs. Strong bottom simulating reflectors are identified in the Late Miocene and younger sediments of the outerarc and AFB at a depth of * 0.6 s TWT and correspond to the presence of gas hydrates in this region. Our interpretations have significant implications for geodynamic as well as resource exploration in the AFB. 展开更多
关键词 Andaman forearc Basin NEOGENE UPLIFT Invisible Bank Outerarc STRATIGRAPHY
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Geomorphic indices and relative tectonic uplift in the Guerrero sector of the Mexican forearc 被引量:7
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作者 Krzysztof Gaidzik María Teresa Ramírez-Herrera 《Geoscience Frontiers》 SCIE CAS CSCD 2017年第4期885-902,共18页
Tectonically active areas,such as forearc regions,commonly show contrasting relief,differential tectonic uplift,variations in erosion rates,in river incision,and in channel gradient produced by ongoing tectonic deform... Tectonically active areas,such as forearc regions,commonly show contrasting relief,differential tectonic uplift,variations in erosion rates,in river incision,and in channel gradient produced by ongoing tectonic deformation.Thus,information on the tectonic activity of a defined area could be derived via landscape analysis.This study uses topography and geomorphic indices to extract signals of ongoing tectonic deformation along the Mexican subduction forearc within the Guerrero sector.For this purpose,we use field data,topographical data,knickpoints,the ratio of volume to area(Rva).the stream-length gradient index(St),and the normalized channel steepness index(k_(sn)).The results of the applied landscape analysis reveal considerable variations in relief,topography and geomorphic indices values along the Guerrero sector of the Mexican subduction zone.We argue that the reported differences are indicative of tectonic deformation and of variations in relative tectonic uplift along the studied forearc.A significant drop from central and eastern parts of the study area towards the west in values of R_(VA)(from ~500 to^300),St(from ~500 to ca.400),maximum St(from ~1500-2500 to ~ 1000) and k_(sn)(from ~150 to ~100) denotes a decrease in relative tectonic uplift in the same direction.We suggest that applied geomorphic indices values and forearc topography are independent of climate and lithology.Actual mechanisms responsible for the observed variations and inferred changes in relative forearc tectonic uplift call for further studies that explain the physical processes that control the forearc along strike uplift variations and that determine the rates of uplift.The proposed methodology and results obtained through this study could prove useful to scientists who study the geomorphology of forearc regions and active subduction zones. 展开更多
关键词 Relative tectonic uplift forearc Active tectonics Geomorphic index Drainage network Mexican subduction zone
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Trace element composition of peridotites from the southern Mariana forearc:Insights into the geochemical effects of serpentinization and/or seafloor weathering 被引量:1
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作者 汪小妹 曾志刚 +8 位作者 刘长华 陈俊兵 殷学博 王晓媛 陈代庚 张国良 李康 陈帅 欧阳荷根 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2009年第4期985-992,共8页
Peridotites from the southern Mariana forearc were sampled on the landward trench slope of the Izu-Bonin-Mariana (IBM) subduction zone by dredging.These mantle wedge peridotites underwent hydration by fluid derived fr... Peridotites from the southern Mariana forearc were sampled on the landward trench slope of the Izu-Bonin-Mariana (IBM) subduction zone by dredging.These mantle wedge peridotites underwent hydration by fluid derived from a dehydrated descending slab,and later interacted with seawater after emplacement at or near the seafloor.This study investigates how these two different rock-fluid interaction processes influenced trace element distribution in the southern Mariana forearc peridotites.We measured trace element concentrations of peridotites from the southern Mariana forearc.The southern Mariana forearc peridotites are characterized by a distinct seawater-like REE pattern with an obvious negative Ce anomaly,and La shows good correlation with other REEs (except Ce).In addition,there is a great enrichment of U,Pb,Sr and Li elements,which show a distinct positive anomaly relative to adjacent elements in the multi-element diagram.For the seawater-like REE pattern,we infer that REEs are mainly influenced by seawater during peridotite-seawater interactions after their emplacement at or near the seafloor,by serpentinization or by marine weathering.Furthermore,the anomalous behavior of Ce,compared with other rare earth elements in these samples,may indicate that they have undergone reactions involving Ce (IV) when the peridotites interacted with seawater.Positive U,Pb,Sr and Li anomalies are inferred to be related to seawater and/or fluids released during dehydration of the subducting slab. 展开更多
关键词 PERIDOTITES forearc MARIANA element negative Ce anomaly
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A Forearc(Guleman,Elazi?)Ophiolite:Evidence from Peridotite Mineral Geochemistry 被引量:1
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作者 Mustafa Eren RIZELI Melahat BEYARSLAN A.Feyzi BINGOL 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期31-,共1页
The Guleman ophiolite,one of the most important ophiolitic massifs of the Southeast Anatolian Ophiolitic Belt,consists of a core of serpentinized mantle rocks overlain by an ultramafic sequence,layered and isotropic g... The Guleman ophiolite,one of the most important ophiolitic massifs of the Southeast Anatolian Ophiolitic Belt,consists of a core of serpentinized mantle rocks overlain by an ultramafic sequence,layered and isotropic gabbro,and sheeted dykes.The ophiolite structurally overlies the Lower Miocene Lice Formation and is overlain by young sandstones and shales of the Upper Maashtrichtian-Lower Eocene Hazar Complex and Middle Eocene Maden Complex.The Guleman ophiolite tectonically overlain by Precambrian to Upper Triassic Bitlis metamorphic massif.The mantle peridotites compose mainly of fresh and in place serpentinized harzburgite tectonite with local bands and lenses of dunites with large-sized chromitite pods.The Guleman peridotites commonly show porphyroclastic texture,high-temperature fabrics such as kink-bands in olivines.According to microprobe analyses,the harzburgite and dunite have low Ca O and Al2O3 abundance similar to Mariana forearc,and their average Cr-(=Cr/(Cr+Al)atomic)ratio of Cr-spinelsis surprisingly high(>0.63)besides Fo content of olivine is between 90.9 to 92.3 in peridotites.According to Mg#(Mg/(Mg+Fe2+))versus Cr#in spinel diagram,the degree of partial melting is higher than 35%and spinel values plot in the forearc peridotites field.The Gulemanharzburgites have low Ca O,Al2O3 and Ti O2 contents in orthopyroxene and clinopyroxene lammelles,resembling those of depleted harzburgites from modern forearcs and different from moderately depleted abyssal peridotites.Consequently,we propose that the Guleman peridotites form in a forearc setting during the subduction initiation that developed as a result of northward subduction of the southern branch of the Neo-Tethys in response to the convergence between Arabian and Anatolian plates. 展开更多
关键词 A forearc Guleman Elazi Evidence from Peridotite Mineral Geochemistry OPHIOLITE
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Geochemistry of subducted metabasites exhumed from the Mariana forearc:Implications for Pacific seamount subduction 被引量:1
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作者 Jianghong Deng Lipeng Zhang +5 位作者 He Liu Haiyang Liu Renqiang Liao Abdul Shakoor Mastoi Xiaoyong Yang Weidong Sun 《Geoscience Frontiers》 SCIE CAS CSCD 2021年第3期358-369,共12页
Seamounts on the drifting oceanic crust are inevitably carried by plate motions and eventually accreted or subducted.However,the geochemical signatures of the subducted seamounts and the significance of seamount subdu... Seamounts on the drifting oceanic crust are inevitably carried by plate motions and eventually accreted or subducted.However,the geochemical signatures of the subducted seamounts and the significance of seamount subduction are not well constrained.Hundreds of seamounts have subducted beneath the Philippine Sea Plate following the westward subduction of the Pacific Plate since the Eocene(~52 Ma).The subducted oceanic crust and seamount materials can be exhumed from the mantle depth to the seafloor in the Mariana forearc region by serpentinite mud volcanoes,providing exceptional opportunities to directly study the subducted oceanic crust and seamounts.The International Ocean Discovery Program(IODP)expedition 366 has recovered a few metamorphosed mafic clasts exhumed from the Mariana forearc serpentinite mud volcanoes,e.g.,the Fantangis?a and Asùt Tesoru seamounts.These mafic clasts have tholeiitic to alkaline affinities with distinct trace elements and Nd-Hf isotopes characteristics,suggesting different provenances and mantle sources.The tholeiites from the Fantangisna Seamount have trace element characteristics typical of mid-ocean ridge basalt.The Pacific-type Hf-Nd isotopic compositions,combined with the greenschist metamorphism of these tholeiites further suggest that they came from the subducted Pacific oceanic crust.The alkali basalts-dolerites from the Fantangisna and Asùt Tesoru seamounts show ocean island basalt(OIB)-like geochemical characteristics.The OIB-like geochemical signatures and the low-grade metamorphism of these alkali basalts-dolerites suggest they came from subducted seamounts that originally formed in an intraplate setting on the Pacific Plate.The Pacific Plate origin of these metabasites suggests they were formed in the Early Cretaceous or earlier.Two types of OIBs have been recognized from alkali metabasites,one of which is geochemically similar to the HIMU-EMI-type OIBs from the West Pacific Seamount Province,and another is similar to the EMII-type OIBs from the Samoa Island in southern Pacific,with negative Nb-Ta-Ti anomalies and enriched Nd-Hf isotopes.Generally,these alkali metabasites are sourced from the heterogeneous mantle sources that are similar to the present South Pacific Isotopic and Thermal Anomaly.This study provides direct evidence for seamount subduction in the Mariana convergent margins.We suggest seamount subduction is significant to element cycling,mantle heterogeneity,and mantle oxidation in subduction zones. 展开更多
关键词 IODP 366 Mariana convergent margin forearc Seamount subduction OIB
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Petrology and geochemistry of serpentinized peridotites from Hahajima Seamount in Izu-Bonin forearc region
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作者 Tuoyu Wu Liyan Tian +1 位作者 Jinwei Gao Yanhui Dong 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2019年第11期99-110,共12页
Serpentinites,which contain up to 13 wt%of water,are important reservoirs for chemical recycling in subduction zones.In the past two decades,forearc mantle serpentinites were identified in different locations around t... Serpentinites,which contain up to 13 wt%of water,are important reservoirs for chemical recycling in subduction zones.In the past two decades,forearc mantle serpentinites were identified in different locations around the world.Here,we present petrology and whole rock chemistry of ultramafic and mafic rocks dredged from the Hahajima Seamount,which is located 24–40 km west to the junction of the Izu-Bonin Trench and the Mariana Trench.Nearly all the collected samples are extensively hydrated,and olivine grains in ultramafic rocks are replaced by serpentine minerals,with only one sample preserving remaining trace of orthopyroxene.Our new results show that the Hahajima serpentinized peridotite samples are all MgO-rich(~42 wt%),but have low contents in Al2O3,CaO,rare earth and high field strength elements,which is consistent with the overall depleted character of their mantle protoliths.Model calculations indicate that these Hahajima peridotite samples were derived from 10%–25%partial melting of the presumed fertile mantle source,which is generally lower than those of peridotites from Torishima Forearc Seamount,Conical Seamount and South Chamorro Seamount(mostly>25%).All the serpentinites from these four forearc seamounts show strong enrichment in fluid-mobile and lithophile elements(Li,Sr,Pb and U).In details,Hahajima Seamount serpentinites do not have obvious enrichment in Cs and Rb,and display remarkably high abundances of U.These observations indicate that the serpentinization of Hahajima peridotites occurred by addition of seawater or low temperature seawater-derived hydrothermal fluid,without or with little contribution from slab-derived fluids.The geochemical signature of serpentinites from Hahajima Seamount could be interpreted as the result of the combination of extensive partial melting and subsequent percolation of seawater through the mantle wedge. 展开更多
关键词 Hahajima SEAMOUNT serpentinized PERIDOTITES IBM forearc SEAMOUNTS fluid-mobile elements
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Ancient depletion signals in lherzolites from forearc region:Constraints from Lu-Hf isotope compositions
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作者 Yang Xu Chuan-Zhou Liu +1 位作者 Wei Lin Xue-Fa Shi 《Geoscience Frontiers》 SCIE CAS CSCD 2022年第1期62-75,共14页
The sub-arc mantle that experienced hydrous melting is commonly characterized by refractory geochemical compositions. Nevertheless, minor lherzolites with fertile compositions have also been reported for mantle perido... The sub-arc mantle that experienced hydrous melting is commonly characterized by refractory geochemical compositions. Nevertheless, minor lherzolites with fertile compositions have also been reported for mantle peridotites from subduction zone. The petrogenesis and mantle source of the lherzolites are still controversial. The New Caledonia ophiolite(Peridotite Nappe) has been regarded as an allochthonous body of forearc lithosphere. This is supported by refractory compositions of its dominant mantle rocks.A few isolated lherzolitic massifs have also been observed in the northern part of New Caledonia.Those lherzolites are compositionally similar to abyssal peridotites, with negligible subduction-related modification. Here, we present new comprehensive geochemical compositions, in particular highprecision Sr-Nd-Hf isotope data, for the lherzolites. The initial^(176) Hf/^(177) Hf ratios display moderate correlations with sensitive indicators for the extent of melting(i.e., olivine Fo, whole-rock Mg# and Yb contents in clinopyroxene) and whole-rock initial^(187) Os/^(188) Os ratios. Some samples have ancient radiogenic Hf isotopes and unradiogenic Os isotope compositions, implying the preservation of ancient depletion signals in the lherzolites. The Nd isotope compositions, together with trace elements and mineral micro-textures, suggest that the lherzolites have been overprinted by a recent melt-rock interaction event. The high equilibrium temperatures of the studied samples have been estimated by the twopyroxene REE thermometer, yielding temperatures of 1066–1315 ℃. The lherzolites have more depleted Nd-Hf isotope compositions and higher equilibrium temperatures than the New Caledonia harzburgites.This indicates that the lherzolites may represent the residues of asthenosphere mantle trapped within the forearc region. Our studies on the New Caledonia lherzolites with ancient depletion signals suggest that ancient mantle domains in the convective mantle can be emplaced in forearc region by the upwelling of asthenosphere during the early stage of subduction initiation. 展开更多
关键词 New Caledonia ophiolite forearc Lherzolites Sr-Nd-Hf isotopes Ancient melt depletion
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A Review on Tectonic Record of Strain Buildup and Stress Release across the Andean Forearc along the Gulf of Guayaquil-Tumbes Basin (GGTB) near Ecuador-Peru Border
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作者 Jacques Bourgois 《International Journal of Geosciences》 2013年第3期618-635,共18页
Gravimetric and geologic data show that the reactivation of the Neogene Interandean depression and/or the ~75 - 65 Ma ophiolite suture into the modern dynamic of the Andes controlled the Gulf of Guayaquil Tumbes basin... Gravimetric and geologic data show that the reactivation of the Neogene Interandean depression and/or the ~75 - 65 Ma ophiolite suture into the modern dynamic of the Andes controlled the Gulf of Guayaquil Tumbes basin (GGTB) location and evolution during the past 1.8 - 1.6 Myr at least. Depending on whether the remobilization occurred along the interandean depression or the ophiolite suture, the GGTB evolved trough pure or simple shear mechanisms, respectively. Because the GGTB exhibits an along strike tectonic asymmetry associated with a pervasive seismic gap, the simple shear solution is more likely. Tectonic inversion occurred along a mid-crust detachment (the Mid-Crust detachment hereafter) matching the ophiolite suture that accommodates the North Andean Block (NAB) northward drift. The so-called Decoupling Strip located at the shelf slope break accommodated the tensional stress rotation from N-S along the shelf area i.e. NAB-drift induced to E-W along the continental margin i.e. subduction-erosion-induced. The landward dipping Woollard detachment system located at the Upper-Lower slope boundary connects the subduction channel at depth, allowing the Upper slope to evolve independently from the Lower slope wedge. The long-term recurrence interval between earthquakes, the strong interplate coupling, and the aseismic creeping deformation acting along the main low-angle detachments i.e. the Woollard and the Mid-Crust detachments may account for the pervasive seismic gap at the GGTB area. Because the subduction channel exhibits no record of significant seismic activity, no evidence exists to establish a link between the GGTB sustained subsidence and a basin-centered asperity. Because the GGTB is a promising site of hydrocarbon resources, to understand processes at the origin of this escape-induced forearc basin has a major economic interest. 展开更多
关键词 Andean forearc Strain BUILDUP Stress Release GULF of Guayaquil-Tumbes BASIN Ecuador Peru
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Growth of forearc highs and basins in the oblique Sumatra subduction system
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作者 MUKTI Maruf M MAULIN Hade B PERMANA Haryadi 《Petroleum Exploration and Development》 CSCD 2021年第3期683-692,共10页
Based on structural deformation analysis in the oblique Sumatra subduction system, we review uplift mechanisms of the forearc high and formation of the forearc basin. The development of the forearc high has been attri... Based on structural deformation analysis in the oblique Sumatra subduction system, we review uplift mechanisms of the forearc high and formation of the forearc basin. The development of the forearc high has been attributed to the flexural uplift, basin inversion, uplift of older accretion wedge, and backthrust in the landward margin of the accretion wedge. Observation of recently acquired seismic reflection data shows that the interplay between trenchward-vergent thrusts and arcward-vergent backthrusts has played a major role in the uplift of forearc high. The uplifted sediments on the forearc high were previously formed in a forearc basin environment. The present-day morphology of the forearc high and forearc basin is related to the uplift of the accretionary wedge and the overlying forearc basin sediments during Pliocene. Regardless of obliquity in the subduction system, the Sumatran forearc region is dominated by compression that plays an important role in forming Neogene basin depocenters that elongated parallel to the trench. 展开更多
关键词 oblique subduction strain partitioning forearc thrust fault strike-slip fault
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北吕宋岛弧火山活动和台湾造山带造山事件约束下的台湾弧前盆地演化
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作者 许淑梅 王琳华 +9 位作者 李三忠 刘永江 訾可 权日 舒鹏程 周越 郭芮洁 张宝珠 王曼茜 刘政东 《地球科学》 北大核心 2025年第2期466-477,共12页
旨在对台湾弧前盆地可容纳空间、盆地边界和基底性质进行分析,并对弧前盆地层序构型及其主控因素和演化阶段进行探索性研究.结合地震剖面的层序构型解析,基于南海俯冲板俯冲、底侵及隆升剥蚀等造山事件、北吕宋岛弧火山岩活动对弧前区... 旨在对台湾弧前盆地可容纳空间、盆地边界和基底性质进行分析,并对弧前盆地层序构型及其主控因素和演化阶段进行探索性研究.结合地震剖面的层序构型解析,基于南海俯冲板俯冲、底侵及隆升剥蚀等造山事件、北吕宋岛弧火山岩活动对弧前区变化的影响,对台湾弧前盆地性质、边界特征及演化阶段进行探讨.台湾弧前盆地演化可分为3阶段:扩张期矩形裂谷盆地、初始碰撞期楔形弧前盆地和弧−陆碰撞期席状弧前盆地阶段.扩张期矩形裂谷盆地的东部边界先期为南海洋壳,后期为吕宋岛弧;西部边界为菲律宾海洋壳;基底为弧前扩张区地幔.初始碰撞期楔形弧前盆地东、西边界分别为北吕宋岛弧和增厚的南海板块边缘;基底为先期复理石沉积及吕宋岛弧火山建造的一部分.弧−陆碰撞期席状残余弧前盆地东、西边界分别吕宋岛弧和剥露并持续隆升的台湾增生造山带. 展开更多
关键词 层序基本构型 地震层序 弧前盆地 台湾造山带 北吕宋岛弧 台湾地区 构造学
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A snapshot of subduction initiation within a back-arc basin: Insights from Shiquanhe ophiolite, western xizang
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作者 Wei-Liang Liu Hui Liang +7 位作者 Harald Furnes Xu Zhang Qing-Gao Zeng Yao-Liang Ma Chi Yan Ru-Xin Ding Yun Zhong Run-Xi Gu 《Geoscience Frontiers》 2025年第5期17-40,共24页
Back-arc basins are key sites for oceanic lithosphere formation and consumption at convergent plate boundaries,and their formation and subduction processes can be highly variable.The tectonic setting and evolution of ... Back-arc basins are key sites for oceanic lithosphere formation and consumption at convergent plate boundaries,and their formation and subduction processes can be highly variable.The tectonic setting and evolution of the Meso-Tethys Shiquanhe-Jiali ophiolite sub-belt(SJO sub-belt)within BangongNujiang Suture Zone(BNSZ),central xizang,are disputed for the complex rock composition and ages.In this paper,we present geochronology,geochemistry and field observations on the Shiquanhe ophiolite,providing a representative ophiolite example in the western end of SJO.Based on investigation of the petrogenesis and tectonic setting of different rock types,combined with the U-Pb dating,we propose a twostage subduction model for explaining the tectonic evolution of SJO as well as the wither away of a backarc basin.Geochemical and geochronological data indicate that the ca.183 Ma LAN(north of Lameila)gabbros formed in the forearc setting and represent the early-stage subduction of the Bangong MesoTethys.This subduction induced the back-arc spreading recorded in the ca.170 Ma gabbros and lower pillow basalts of PL-SDN(Pagelizanong-Shiquanhe Dam Nan)ophiolitic fragments in the Shiquanhe ophiolite.The basaltic lavas overlying the lower basalts,represented by the ca.168–164 Ma diabasic and boninite dikes have forearc characteristics,and they represent the back-arc basin subduction initiation at a late stage.This work thus recovered the multiple tectonic evolution of SJO sub-belt and emphasise the importance of the back-arc basin subduction in the evolution of ancient oceans. 展开更多
关键词 Back-arc basin forearc Subduction initiation OPHIOLITE Shiquanhe
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Origin and Emplacement of the Cambrian Yanglong Ophiolite in the North Qilian Suture
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作者 FU Changlei XUE Wanwen +6 位作者 PAN Tong YAN Zhen GUO Xianqing Jonathan C.AITCHISON XIAO Wenjiao WANG Bingzhang LI Wufu 《Acta Geologica Sinica(English Edition)》 2025年第2期409-424,共16页
Fragments of Proto-Tethyan oceanic lithosphere are well-preserved along the southern belt of the North Qilian suture,and the origin and emplacement of these ophiolites have become subjects of intense debate.In this st... Fragments of Proto-Tethyan oceanic lithosphere are well-preserved along the southern belt of the North Qilian suture,and the origin and emplacement of these ophiolites have become subjects of intense debate.In this study,we integrate field observations,mineralogical and geochemical analyses,zircon U-Pb dating,and isotopic data to investigate the Yanglong ophiolite.The Yanglong ophiolitic rocks are found as tectonic slices resting on the Neoproterozoic sedimentary and volcanic rocks.These rocks are composed of Cambrian serpentinized peridotite,gabbro,dolerite,and rodingite.The spinels in the serpentinized peridotites have variable Cr^(#)values(21,38-46,and 59-61)and display affinity to those in abyssal and forearc peridotites.The dolerites show slight enrichment in Th and have elevated(La/Sm)_(N) ratios(1.19-2.01),indicating a subduction-related geochemical affinity.The Yanglong ophiolitic rocks have positive zirconεHf(t)values(+10.3 to+18.4)and whole-rockεNd(t)values(+5.3 to+6.7)indicating derivation from partial melting of a depleted mantle source.These results,together with the regional geology,collectively suggest that the Yanglong ophiolite was generated in a forearc setting during the Early Cambrian northward intra-oceanic subduction.It was emplaced onto the Central Qilian Block during the subsequent arc-continent collision,no later than the Early Ordovician. 展开更多
关键词 forearc ophiolite intra-oceanic subduction arc–continent collision Qilian Orogen Proto-Tethys Ocean
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日喀则弧前盆地水道沉积对晚白垩世冈底斯弧剥蚀速率的约束
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作者 葛子逸 姜禾禾 +1 位作者 安慰 吴福元 《岩石学报》 北大核心 2025年第10期3591-3604,共14页
晚白垩世,地球处于极端高温状态,被称为“热室地球”。此时期,新特提斯洋俯冲带与环太平洋俯冲带正值构造活跃高峰,被认为与热室地球的形成及终结紧密相关。然而,俯冲带活动如何影响全球气候的具体机制尚不明确,其中一个主要原因是缺乏... 晚白垩世,地球处于极端高温状态,被称为“热室地球”。此时期,新特提斯洋俯冲带与环太平洋俯冲带正值构造活跃高峰,被认为与热室地球的形成及终结紧密相关。然而,俯冲带活动如何影响全球气候的具体机制尚不明确,其中一个主要原因是缺乏对地表过程速率的定量约束。冈底斯弧是新特提斯洋向北俯冲过程中在中国西藏南部形成的典型安第斯型大陆弧,其岩浆活动在约100~80Ma期间进入高强度爆发阶段。同时,冈底斯弧剥蚀所产出的碎屑大量沉积于临近的日喀则弧前盆地,在深海环境中形成浊积水道系统。这些水道沉积主要由块状至中厚层砾岩与中厚层粗砂岩组成,呈透镜状沿东西走向大规模发育,反映了源区的快速剥蚀过程,可为重建热室背景下大陆弧造山和剥蚀-风化过程提供重要信息。本研究系统调查了日喀则弧前盆地东部的水道沉积。结果显示,这些沉积的形成集中于100~90Ma。水道沉积中,岩浆岩砾石和岩屑占比达56%~83%,且随沉积时代变新,侵入岩组分相较于火山岩逐渐增加。砂岩中碎屑锆石U-Pb年龄多<200Ma,呈现~108Ma的主峰,以及~124Ma和~156Ma的次峰,具有正的εHf(t)值,仅<90Ma的样品中出现大量>200Ma、εHf(t)为负值的锆石。综合前人研究表明,90Ma之前的水道沉积记录了冈底斯弧持续剥蚀及侵入岩逐渐出露的过程;而90Ma之后的沉积则反映了岩浆弧被切穿、物源区向北迁移的演化趋势。通过比较碎屑锆石年龄峰值与最大沉积年龄之间的差值,估算源区岩浆岩从侵位到出露并搬运至弧前盆地所经历的时间为8~34Myr。结合角闪石全铝压力计推算的中酸性岩浆岩中侵位深度(约12~35km),推算晚白垩世冈底斯弧的剥蚀速率达0.4~4.3km/Myr。在高温气候背景下,如此高强度的剥蚀可能促进了硅酸盐岩的加速化学风化,从而加速了大气CO_(2)的消耗。90Ma后,日喀则弧前盆地中反映源区快速剥蚀的粗粒水道沉积显著减少,全球气候也进入降温阶段。这种构造与气候同步变化的趋势,支持了构造剥蚀在热室气候下可能驱动全球气候转变的假说。 展开更多
关键词 冈底斯弧 日喀则弧前盆地 水道砾岩 剥蚀速率 西藏
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日喀则弧前盆地白垩纪环境演变
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作者 李悦书 王亚苏 +5 位作者 梁瑞泽 孙高远 安慰 姜禾禾 王建刚 姜仕军 《岩石学报》 北大核心 2025年第10期3605-3615,共11页
海洋沉积物的元素含量及其比值记录了物源特征、化学风化过程与气候演变等信息,是古环境重建的重要工具。以西藏日喀则弧前盆地吉定剖面白垩系昂仁组的连续海相沉积序列为研究对象,利用X射线荧光光谱技术(XRF)获取高时间分辨率的主量与... 海洋沉积物的元素含量及其比值记录了物源特征、化学风化过程与气候演变等信息,是古环境重建的重要工具。以西藏日喀则弧前盆地吉定剖面白垩系昂仁组的连续海相沉积序列为研究对象,利用X射线荧光光谱技术(XRF)获取高时间分辨率的主量与微量元素含量数据,综合分析Fe/Mn、Al/Mg、Rb/Sr、Ti/Ca等多种气候-环境敏感元素比值的垂向变化与协同演化特征,重建了研究区的古气候、化学风化强度、陆源物质通量、物源以及初级生产力的长期变化特征。结果表明:(1)白垩纪期间,研究区整体处于暖湿气候背景,其演化过程可划分为三个阶段:下段(约104~99Ma)暖湿程度波动增强;中段(约99~88Ma)在塞诺曼期达极热峰值后转降入波动性降温;上段(约88~83Ma)呈“双峰式”变冷特征。(2)冈底斯岩浆弧持续构造隆升,为盆地提供了稳定且丰富的新鲜物源,研究区风化作用强度主要受控于降水变化,属典型的动力限制型风化体系。(3)通过陆源碎屑输入的营养物质对海洋初级生产力具有关键调控作用。 展开更多
关键词 日喀则弧前盆地 白垩纪 地球化学特征 元素比值 X射线荧光(XRF)
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H_(2)O-induced sedimentary carbon migration from subducting slabs to the forearc mantle
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作者 Juan WANG Yongsheng LIU +2 位作者 Yanfei ZHANG Chao WANG Xiangfa WANG 《Science China Earth Sciences》 SCIE EI CAS CSCD 2022年第11期2175-2187,共13页
Carbon in sedimentary carbonates dominates the global carbon input flux in subduction zones,the fate of which makes an impact on the global carbon cycle.At forearc depths,~32%of subducting water is released through sl... Carbon in sedimentary carbonates dominates the global carbon input flux in subduction zones,the fate of which makes an impact on the global carbon cycle.At forearc depths,~32%of subducting water is released through slab dehydration and may greatly promote sedimentary carbon migration to the forearc mantle.However,it is controversial that considering the infiltration of external aqueous fluids,whether extremely limited or a significant portion of sedimentary carbon is liberated from subducting slabs in the forearc region.To explore to what extent hydrous fluids could facilitate carbon migration at forearc depths,hydrous carbonate-dominated sediment(1.14 wt.%H2O)-harzburgite reaction(layered)experiments have been performed at 1.5 GPa and 600–1000℃with various durations.For comparison,an anhydrous sediment-harzburgite reaction experiment was conducted to investigate the role of water on carbon migration.In hydrous experiments under subsolidus conditions(600–900℃),(1)a reaction zone comprised of clinopyroxene+dolomite forms at the sediment-harzburgite interface due to the metasomatic reaction;(2)the Ca#(100×Ca/[Ca+Mg+Fe],in molar)of calcite in the sediment layer drastically deceases when approaching the reaction zone;(3)newly formed dolomite and pargasite occur in the upper harzburgite layer.The above phenomena were not observed in the anhydrous experiment.Under a supersolidus condition(1000℃),a reaction zone composed of olivine+clinopyroxene+pargasite+CO_(2)formed as a result of hydrous carbonate melt-harzburgite interaction.The experiments demonstrate that aqueous fluids could significantly promote the chemical reaction and component exchange between sediments and mantle peridotite,and also induce subducting sedimentary carbon migration to the forearc mantle.It is estimated roughly that globally,~50%of subducting sedimentary carbon may be released at forearc depths.The carbon and water would be stabilized as carbonates(e.g.,dolomite)and hydrous minerals(e.g.,pargasite)in the forearc mantle,implying that the forearc mantle may be an important carbon reservoir.Our study explains the fate of a portion of carbon that is not returned to the atmosphere through arc volcanism. 展开更多
关键词 Sedimentary carbon Aqueous fluids forearc mantle Carbon reservoir
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Synchronous formation of the‘forearc’Bay of Islands ophiolite and its basal high-temperature metamorphic sole constrained by U-Pb zircon ages
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作者 Weiyao Yan John F.Casey 《Geoscience Frontiers》 SCIE CAS CSCD 2023年第6期234-272,共39页
The welded metamorphic sole at the base of the Bay of Islands Ophiolite Complex(BOIC)in the Northern Appalachians of Newfoundland shows a typical inverted pressure-temperature(P-T)metamorphic gradient from HT-MP granu... The welded metamorphic sole at the base of the Bay of Islands Ophiolite Complex(BOIC)in the Northern Appalachians of Newfoundland shows a typical inverted pressure-temperature(P-T)metamorphic gradient from HT-MP granulite to LT-LP greenschist facies.It incorporates mafic volcanic/plutonic protoliths mixed with pelagic,hemi-pelagic and coarser epiclastic sedimentary protoliths.New LA-ICP-MS U–Pb concordia ages,trace elements,and Ti-in-zircon geothermometry for -250 zircon analyses from three metabasites of the upper HT sole amphibolites with N-MORB-like protoliths are reported.Two samples collected within meters of the ophiolite peridotite-sole contact of the Blow Me Down Mountain and North Arm Mountain massifs yielded the oldest comparable concordia ages of 487.7±2.6 Ma and 489.1±3.1 Ma,respectively,that are both within error of the igneous age of 488.3±1.5 Ma of the directly overlying BOIC ophiolite,which formed at a supra-subduction zone(SSZ)forearc spreading center.A third slightly younger age of 484.2±2.4 Ma was obtained for an upper HT amphibolite sample with similar phase assemblages but collected30 m below the peridotite contact of the Table Mountain massif.Zircon crystals analyzed have similar size and morphologies,subparallel rare earth element(REE)variation patterns,and steep heavy REE-enrichments((Lu/Gd)_(cn)>20),significant positive Ce anomalies(dominantly>5)and slight positive to dominantly negative Eu anomalies(1.2–0.4).Zircon shows Th/U mean values of 0.37–0.48 with little to no rim to core variation.Minimum Ti-in-zircon mean crystallization temperatures range from764–787℃.These neocrystallized zircon crystals appear to be derived from thin leucosomes within the three amphibolites.Two other samples also from the upper HT sole show evidence of inherited detrital zircon with core dates spanning the Cambrian Notre Dame Arc through older Laurentian-like basement and rift age ranges.Subcretion of the sole took place below a hot forearc asthenospheric wedge,that is,a consequence of the newly-formed BOIC forearc spreading center extending from the back arc to a triple junction along the westward-(or paleo-northward)verging trench of the Notre Dame arc.The early HT sole formation age at ca.489–488 Ma is long prior to initiation of obduction at ca.470 Ma and long after initiation of subduction beneath the paleo-northward verging Notre Dame peri-Laurentian arc at ca.514 Ma.This indicates Newfoundland sole ages of the BOIC and St.Anthony Complex are correlated with the age of SSZ spreading,but not necessarily subduction initiation because previously existing and self-sustaining subduction was ongoing.Sole ages are then not correlated with the younger age of obduction-related orogenic events(e.g.,proposed Taconic I and II)in the Newfoundland Appalachians. 展开更多
关键词 Ophiolite metamorphic sole U-Pb zircon ages Hot subduction interface Supra-subduction forearc spreading center Arc-continent collision Taconic Orogeny
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