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Seasonality of the Heat Budget on the Ross Sea Continental Shelf in a Coupled Regional Ocean-Sea Ice-Ice Shelf Model 被引量:1
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作者 Jiabao ZENG Chengyan LIU +6 位作者 Zhaomin WANG Liangjun YAN Yang LIU Yue XIA Xi LIANG Xiang LI Wen XU 《Advances in Atmospheric Sciences》 2025年第12期2453-2470,I0011-I0024,共32页
The heat content(HC)of water masses on the Ross Sea continental shelf plays an important role in regulating the circulations and the basal melting of the Ross Ice Shelf(RIS).Yet,the evolution of the HC on the Ross Sea... The heat content(HC)of water masses on the Ross Sea continental shelf plays an important role in regulating the circulations and the basal melting of the Ross Ice Shelf(RIS).Yet,the evolution of the HC on the Ross Sea continental shelf is still not clear due to the sparsity of observations.By employing a coupled regional ocean-sea ice-ice shelf model for the Ross Sea,this study analyzes the heat budget of water masses over the continental shelf and in the RIS cavity.According to the topographic features and the HC density,the continental shelf region is divided into 17 subdomains.The heat budget of the middle layer for every subdomain is analyzed.In addition,the heat budget for the RIS cavity is assessed for the first time.Owing to Modified Circumpolar Deep Water intrusion,water masses over the eastern shelf are warmer than over the western shelf,with the coldest water identified in the southwestern inner shelf.The horizontal heat flux mainly provides heat to the continental shelf,while the atmospheric forcing tends to warm up the ocean during the ice-melting period and cool down the ocean during the ice-freezing period.The vertical heat flux is generally upward and transports heat from the deep layer to the upper layer.In the RIS cavity,the seasonal cycle of the HC is dominated by the horizontal flux across the RIS front rather than the basal thermal forcing of the RIS. 展开更多
关键词 Ross Sea Ross Ice Shelf continental shelf heat content heat budget regional model
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Circle structure and orderly hydrocarbon accumulation of whole petroleum system in a continental rifted basin:A case study of Kong-2 Member in Cangdong Sag,Bohai Bay Basin,China 被引量:1
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作者 ZHAO Xianzheng PU Xiugang +8 位作者 LUO Qun XIA Guochao GUI Shiqi DONG Xiongying SHI Zhannan HAN Wenzhong ZHANG Wei WANG Shichen WEN Fan 《Petroleum Exploration and Development》 2025年第3期587-599,共13页
Guided by the fundamental principles of the whole petroleum system,the control of tectonism,sedimentation,and diagenesis on hydrocarbon accumulation in a rifted basin is studied using the data of petroleum geology and... Guided by the fundamental principles of the whole petroleum system,the control of tectonism,sedimentation,and diagenesis on hydrocarbon accumulation in a rifted basin is studied using the data of petroleum geology and exploration of the second member of the Paleogene Kongdian Formation(Kong-2 Member)in the Cangdong Sag,Bohai Bay Basin,China.It is clarified that the circle structure and circle effects are the marked features of a continental fault petroliferous basin,and they govern the orderly distribution of conventional and unconventional hydrocarbons in the whole petroleum systems of the rifted basin.Tectonic circle zones control sedimentary circle zones,while sedimentary circle zones and diagenetic circle zones control the spatial distribution of favorable reservoirs,thereby determining the orderly distribution of hydrocarbon accumulations in various circles.A model for the integrated,systematic accumulation of conventional and unconventional hydrocarbons under a multi-circle structure of the whole petroleum system of continental rifted basin has been developed.It reveals that each sag of the rifted basin is an independent whole petroleum system and circle system,which encompasses multiple orderly circles of conventional and unconventional hydrocarbons controlled by the same source kitchen.From the outer circle to the middle circle and then to the inner circle,there is an orderly transition from structural and stratigraphic reservoirs,to lithological and structural-lithological reservoirs,and finally to tight oil/gas and shale oil/gas enrichment zones.The significant feature of the whole petroleum system is the orderly control of hydrocarbons by multi-circle stratigraphic coupling,with the integrated,orderly distribution of conventional and unconventional reserves being the inevitable result of the multi-layered interaction within the whole petroleum system.This concept of multi-circle stratigraphic coupling for the orderly,integrated accumulation of conventional and unconventional hydrocarbons has guided significant breakthroughs in the overall,three-dimensional exploration and shale oil exploration in the Cangdong Sag. 展开更多
关键词 circle structure whole petroleum system continental rifted basin Huanghua Depression Bohai Bay Basin Cangdong Sag Paleogene Kong-2 Member orderly hydrocarbon accumulation
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Tectonic deformation and its petroleum geological significance of continental margin necking zone in deepwater area of Pearl River Mouth Basin,South China Sea
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作者 PENG Guangrong CAI Guofu +4 位作者 LI Hongbo ZHANG Lili XIANG Xuhong ZHENG Jinyun LIU Baojun 《Petroleum Exploration and Development》 2025年第4期937-951,共15页
Based on a set of high-resolution 3D seismic data from the northern continental margin of the South China Sea,the lithospheric structure,thinning mechanisms and related syn-rift tectonic deformation response processes... Based on a set of high-resolution 3D seismic data from the northern continental margin of the South China Sea,the lithospheric structure,thinning mechanisms and related syn-rift tectonic deformation response processes in the crustal necking zone in the deepwater area of the Pearl River Mouth Basin were systematically analyzed,and the petroleum geological significance was discussed.The necking zone investigated in the study is located in the Baiyun Sag and Kaiping Sag in the deepwater area of the Pearl River Mouth Basin.These areas show extreme crustal thinned geometries of central thinning and flank thickening,characterized by multi-level and multi-dipping detachment fault systems.The necking zone exhibits pronounced lateral heterogeneity in structural architectures,which can be classified into four types of thinned crustal architectures,i.e.the wedge-shaped extremely thinned crustal architecture in the Baiyun Main Sub-sag,dumbbell-shaped moderately thinned crustal architecture in the Baiyun West Sub-sag,box-shaped weakly thinned crustal architecture in eastern Baiyun Sag,and metamorphic core complex weakly thinned crustal architecture in the Kaiping Sag.This shows great variations in the degree and style of crustal thinning,types of detachment faults,distribution of syn-rift sedimentary sequences,and intensity of magmatism.The thinning of the necking zone is controlled by the heterogeneous rheological stratification of lithosphere,intensity of mantle-derived magmatism,and deformation modes of detachment faults.The syn-rift tectonic deformation of the necking zone evolved through three phases,i.e.uniform stretching during the early Wenchang Formation deposition period,necking during the late Wenchang Formation deposition period,and hyperextension during the Enping Formation deposition period.The crustal thinning extent and architectural differentiation in these phases were primarily controlled by three distinct mechanisms,i.e.the pure shear deformation activation of pre-existing thrust faults,the simple shear deformation of crust-mantle and inter-crust detachment faults,and differential coupling of lower crustal flow and ductile domes with main detachment faults.The hydrocarbon accumulation and enrichment in the necking zone exhibit marked spatial heterogeneity.Four distinct crustal thinned architecture-hydrocarbon accumulation models were identified in this study.The hydrocarbon accumulations in the shallow part exhibit significant correlations with their deep crustal thinned architectures.The unique lithospheric structure and deformation process predominantly control the favorable hydrocarbon accumulation zones with excellent source-fault-ridge-sand configurations,which is critical to reservoir-forming.The most promising exploration targets are mainly identified on the uplift zones and their seaward-dipping flanks associated with the middle and lower crustal domes.This research provides additional insights into lithospheric thinning-breakup process at intermediate continental margins of marine sedimentary basins,being significant for guiding the deepwater petroleum exploration in the Pearl River Mouth Basin. 展开更多
关键词 South China Sea Basin Pearl River Mouth Basin passive continental margin intermediate continental margin necking zone detachment fault hydrocarbon accumulation deepwater exploration
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Effusive and explosive silicic eruptions during India-Seychelles continental breakup: the 62.5 Ma Dongri-Uttan rhyolite sequence, Mumbai area, western Deccan Traps
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作者 Arunodaya Shekhar Hetu Sheth +1 位作者 Anmol Naik B.Astha 《Geoscience Frontiers》 2025年第5期59-79,共21页
Large-scale Danian-age(post-K/Pg boundary)Deccan magmatism is well known from the Mumbai metropolitan area,located in the structurally complex Panvel flexure zone along the western Indian rifted continental margin.Thi... Large-scale Danian-age(post-K/Pg boundary)Deccan magmatism is well known from the Mumbai metropolitan area,located in the structurally complex Panvel flexure zone along the western Indian rifted continental margin.This compositionally diverse late-Deccan magmatic suite contains subaerial tholeiitic lavas and dykes typical of the main Deccan province,with many features atypical of the Deccan,such as spilitic pillow lavas,“intertrappean”sediments(often containing considerable volcanic ash),rhyolitic lavas and tuffs,gabbro-granophyre intrusions,and trachyte intrusions containing alkali basalt enclaves.Most of these units,previously dated at 62.5 Ma to 61 Ma,are contemporaneous with or slightly postdate the 62.5 Ma India-Seychelles continental breakup and Panvel flexure formation.In the Dongri-Uttan area,two samples of a>50-m-thick,columnar-jointed rhyolite from the Darkhan Quarry and from a section behind the current Uttan Sagari Police Station have previously been dated at 62.6±0.6 Ma and 62.9±0.2 Ma(^(40)Ar/^(39)Ar,2r errors).New exposures reveal that these two statistically indistinguishable 40 Ar/39 Ar ages correspond to two distinct rhyolite units,separated by well-bedded silicic ash.The columnar rhyolites are microcrystalline,composed of quartz and alkali feldspar,with rare small(1–2 mm),altered feldspar phenocrysts,and no recognisable relict vitroclasts.Given the westerly structural dip,most of their lateral extent is submerged under the Arabian Sea,and we consider them to be possible flood rhyolite lavas.We interpret the ash beds,composed of pumice clasts and glass shards,as a low-grade(nonwelded)vitric ash,derived from a possibly distal Plinian eruption and deposited by fallout.The lavas and ash are peraluminous rhyolites.The lavas are Sr-Ba-poor and Rb-Zr-Nb-rich,and show“seagull-shaped”rare earth element patterns with deep negative europium anomalies.These crystal-poor lavas are“hot-dry-reduced”rhyolites typical of intraplate,continental rift and rifted margin settings.The very different high-field strength element contents of the lavas and the ash indicate compositionally distinct magma batches.The 62.5 Ma Dongri-Uttan sequence provides clear evidence for rapid silicic eruptions of effusive and explosive nature,alternating with each other and sourced from distinct magma chambers and eruptive vents.A newly identified,highly feldspar-phyric trachyte intrusion marks the last phase of magmatic activity in the area,corresponding with late-stage trachyte-syenite intrusions exposed in coastal western India and the Seychelles,and shows that the Mumbai rhyolites and trachytes form a compositional continuum. 展开更多
关键词 Flood basalt RHYOLITE TRACHYTE continental breakup Volcanic rifted margin Deccan Traps MUMBAI
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Two New Species of Tricoma Cobb,1894(Nematoda:Desmoscolecidae)from the Continental Shelf of Bay of Bengal,India(Indian EEZ)
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作者 ANSARI Kapuli Gani Mohamed Thameemul MANOKARAN Seerangan +1 位作者 RAJA Sanjeeve BOUFAHJA Fehmi 《Journal of Ocean University of China》 2025年第4期1045-1057,共13页
Two new free-living marine nematode species belonging to the genus Tricoma Cobb,1894(Desmoscolecidae)are identi-fied from the continental shelf region of the Bay of Bengal.Tricoma ajmalia sp.nov.is characterized by th... Two new free-living marine nematode species belonging to the genus Tricoma Cobb,1894(Desmoscolecidae)are identi-fied from the continental shelf region of the Bay of Bengal.Tricoma ajmalia sp.nov.is characterized by the number of main rings(84 male and 85 female),the arrangement of somatic setae,the head shape with broadly truncated end,the relatively long cephalic setae(69%-73%of corresponding head diameter),the amphids extending up to second main ring,slender spicules slightly curved and gu-berbaculum with dorsocaudally directed apophyses.The second new species,Tricoma sampadansis sp.nov.is characterized by the number of rings(64),the arrangement of somatic setae(14-13 subdorsal,16 subvenral),the head shape with broadly truncated end,the relatively long cephalic setae(75%corresponding head diameter),the amphidial fovea extending over first main ring,anterioirly bent spicules and gubernaculum with hooked proximal end.An updated valid species list of Tricoma is also presented. 展开更多
关键词 marine nematodes Tricominae TAXONOMY morphology continental shelf Bay of Bengal
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Mobility evaluation of continental shale oil of the Permian Fengcheng Formation in the Mahu Sag:Reservoirs characteristics,multiple influencing factors and conceptual models
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作者 Yuan-Hao Zhang Zhen-Xue Jiang +5 位作者 Jia-Qi Chang Zhi-Ye Gao Bo-Lin Zhang Zhi-Wei Wang Xiao-Xue Liu Li-Liang Huang 《Petroleum Science》 2025年第12期4910-4932,共23页
Mobility is a crucial metric for assessing sweet spots of continental shale oil.However,due to the complexity of shale oil reservoirs characteristics and the lack of systematic analyses of factors influencing mobility... Mobility is a crucial metric for assessing sweet spots of continental shale oil.However,due to the complexity of shale oil reservoirs characteristics and the lack of systematic analyses of factors influencing mobility,the difference in shale oil mobility under multiple lithofacies control remains unclear,causing significant challenges for mobility evaluation and sweet spot prediction.This study examines continental shales of the Fengcheng Formation in the Mahu Sag,employing scanning electron microscopy(SEM),nitrogen adsorption(NA),nuclear magnetic resonance(NMR),spontaneous imbibition(SI),and contact angle measurements(CAM)to investigate the pore structure,connectivity,and wettability properties of different lithofacies shale.Quantitative analyses of shale movable oil content and saturation were conducted using multistep temperature pyrolysis(MTP)and NMR centrifugation techniques.Furthermore,the influence of reservoir characteristics,geochemical characteristics,and lamination development on shale oil mobility were discussed.Results indicate that larger pore diameter,higher imbibition slopes,and lower fractal dimensions of movable fluid pores(D2)correspond to higher movable oil saturation.Organic matter exerts a dual effect on shale movable oil content.When the TOC is below a threshold,the movable oil content gradually increases with TOC.Laminations exhibit favorable reservoir properties and light oil enrichment,enhancing shale oil mobility.Massive siltstone(MS)develops interconnected intergranular pores with the best pore structure and connectivity,the lowest D2 values,and the highest shale oil mobility.Laminated felsic shale(LFS)and laminated calcareous shale(LCS)exhibit moderate mobility,where the development of microfractures enhances fluid flow by connecting isolated pores into pore-fracture networks.In contrast,massive felsic shale(MFS)and bedded felsic shale(BFS)primarily develop intragranular dissolution pores with more complex structures and poorer connectivity,resulting in weaker mobility.A more accurate approach for assessing shale oil mobility has been presented,taking into account both total oil content and movable oil saturation.More importantly,this study establishes a comprehensive conceptual model illustrating the potential relationships among shale lithofacies,reservoir characteristics,and movable oil flow space in the study area.This research not only provides a systematic approach for assessing shale oil mobility but also deepens the understanding of flow mechanisms of continental shale oil,offering theoretical guidance for optimizing sweet spots in the Fengcheng Formation shale oil reservoirs of the Mahu Sag. 展开更多
关键词 continental shale Lithofacies Shale oil mobility NMR-centrifugation Pore structure Fengcheng Formation
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Deep-water Natural Gas Differential Migration and Enrichment in East African Transform Continental Marginal Basins
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作者 CAI Jun HE Youbin +1 位作者 LIANG Jianshe GUO Rong 《Acta Geologica Sinica(English Edition)》 2025年第4期1105-1118,共14页
Compared to discrete continental marginal basins,the mechanisms of hydrocarbon migration and enrichment in transform continental marginal basins are poorly understood.In this study,we conducted a comprehensive analysi... Compared to discrete continental marginal basins,the mechanisms of hydrocarbon migration and enrichment in transform continental marginal basins are poorly understood.In this study,we conducted a comprehensive analysis of the main source rocks,reservoirs,and vertical migration pathways within the Rovuma(RB)and Tanzania(TB)basins in East Africa utilizing drilling,logging,seismic,and geochemical data.The results indicate that the enhanced preservation conditions of the Lower Jurassic source rocks in the southwest could lead to the discovery of large natural gas fields in the southern TB and RB.The primary reservoir is a deep-water turbidite sandstone.Due to topographic differences,the expanse of the turbidite sandstones in the RB is significantly larger than those in Tanzania.The main vertical migration pathways are the western boundary fault zone of the Kerimbas Graben(WBFZ)and the Seagap fault zone(SFZ).In the RB,natural gas migrates vertically along the WBFZ and preferentially accumulates in the deep-water turbidite sandstones of the footwall under the control of the fluid potential.Conversely,in the southern TB,the deep natural gas first migrates upward along the SFZ,then moves along the shallow branch faults in the sandstones on both sides of the SFZ. 展开更多
关键词 upstream exploration natural gas differential enrichment transform continental marginal basin fault activity DEEP-WATER Mozambique-Tanzania
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Formation of a DMM-EM2 Mixing Trend in Continental Intraplate Basalts by Variable Degrees of Melting of Hybrid Mantle Controlled by the Lithospheric Lid
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作者 Xun Yu Gang Zeng +2 位作者 Xiao-Jun Wang Fa-Jun Sun Hui-Li Zhang 《Journal of Earth Science》 2025年第5期2179-2192,共14页
Continental intraplate basalts form by partial melting of the mantle,and can provide important constraints on mantle heterogeneity.However,due to the thick overlying continental lithosphere,the origins of the geochemi... Continental intraplate basalts form by partial melting of the mantle,and can provide important constraints on mantle heterogeneity.However,due to the thick overlying continental lithosphere,the origins of the geochemical characteristics of continental intraplate basalts are controversial.In this study,we examined the geochemistry of Cenozoic basalts in southeast China.These basalts which are divided into four volcanic belts exhibit a DMM-EM2 mixing trend and spatial variations in Pb isotopes from inland(i.e.,thick lithosphere)to coastal(i.e.,thin lithosphere)regions.In contrast to the Pb isotopic variations,there are no spatial variations in Sr-Nd-Hf isotopes.Marked correlations between Pb isotopes and major elements(i.e.,Mg O and Si O_(2))suggest the continental lithospheric lid controlled their petrogenesis.Nonetheless,other factors are needed to explain the variations in Ti/Ti^(*)and Hf/Hf^(*)ratios,and Nd-Hf isotopes of the southeast China basalts.The increasing Pb isotope ratios from the inner to coastal regions are associated with decreases in CaO/Al_(2)O_(3) ratios and increases in FC3MS(FeO^(T)/CaO-3×Mg O/Si O_(2);in wt.%)values,indicating contributions from non-peridotite components in the mantle sources.The similarly depleted Nd-Hf isotopic compositions of the basalts from the three inner belts indicate these basalts have a similar origin,whereas the more enriched isotopic features of the basalts from the outer belt suggest their mantle source contains older recycled oceanic crust.Thus,source(i.e.,lithological)heterogeneity also had a significant role in controlling the geochemistry of these basalts.The DMM-EM2 mixing trend defined by the Pb isotopic compositions of continental intraplate basalts from southeast China was generated by variable degrees of melting of heterogeneous mantle that was controlled by the thickness of the continental lithospheric lid(i.e.,the melting pressure).This caused variable extents of melting of enriched components in the mantle sources of the basalts(i.e.,carbonated peridotite vs.pyroxenite). 展开更多
关键词 continental intraplate basalt enriched mantle 2(EM2) Pb isotopes carbonated mantle melting behavior geochemistry petrology
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Temperature-pressure coupled experiments and response mechanisms of permeability evolution in deep continental shale
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作者 KANG Zhiqin WANG Jiawei +7 位作者 WANG Lei LI Wei YANG Dong ZHAO Jing YU Lingjie ZHAO Yangsheng YANG Xiaoming REN Siqi 《Petroleum Exploration and Development》 2025年第6期1515-1526,共12页
To address the unclear permeability evolution mechanisms during in-situ conversion of deep continental shale,this study employs a pioneering online THMC(thermo-hydro-mechanical-chemical)-CT coupled experimental system... To address the unclear permeability evolution mechanisms during in-situ conversion of deep continental shale,this study employs a pioneering online THMC(thermo-hydro-mechanical-chemical)-CT coupled experimental system to investigate the permeability evolution,dynamic pore-fracture structural responses,and hydrocarbon production behavior under high-temperature and high-stress conditions.The results show that:(1)Under high stress constraints(axial/confining stresses of 50/25,100/50 MPa),shale permeability exhibits a three-stage evolution with increasing temperature,including a low-permeability stage(25-350℃),a rapid-increase stage(350-450℃),and a significant-decrease stage(450-600℃).(2)Under coupled in-situ stress(25/20 MPa axial/confining stress)and temperature,fractures undergo a dynamic“two-expansion and two-contraction”process,where the first expansion(25-300℃)and first contraction(300-350℃)correspond to the low-permeability stage,the second expansion(350-450℃)corresponds to the rapid-increase stage,and the second contraction(450-550℃)corresponds to the significant-decrease stage.(3)The controlling mechanisms at each stage are as follows:at temperatures up to 350℃,the maximum yield of retained oil and the filling of heavy hydrocarbons in pores and fractures result in reduced permeability.Between 350℃ and 450℃,thermal cracking and kerogen decomposition jointly enhance pore-fracture network development.Above 450℃,illitization of clay minerals,matrix plastic deformation,and fracture closure under stress result in permeability reduction.These findings clarify the staged permeability behavior and associated mechanisms,providing essential theoretical and experimental support for the temperature-stress synergistic optimization of in-situ shale oil conversion processes. 展开更多
关键词 Ordos Basin Triassic Yanchang Formation deep continental shale shale oil in-situ modification high temperature and high pressure PERMEABILITY real-time CT scanning response mechanism
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Petrogenesis of late Cretaceous high Ba-Sr granodiorites,SE Lhasa block,China:implications for the reworking of juvenile crust and continental growth
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作者 Li-Hang Lin Ren-Zhi Zhu +4 位作者 Shao-Cong Lai Jiang-Feng Qin Yu Zhu Shao-Wei Zhao Min Liu 《Acta Geochimica》 2025年第1期86-111,共26页
The high Ba-Sr rocks can provide significant clues about the evolution of the continent lithosphere,but their petrogenesis remains controversial.Identifying the Late Cretaceous high Ba-Sr granodiorites in the SE Lhasa... The high Ba-Sr rocks can provide significant clues about the evolution of the continent lithosphere,but their petrogenesis remains controversial.Identifying the Late Cretaceous high Ba-Sr granodiorites in the SE Lhasa Block could potentially provide valuable insights into the continent evolution of the Qinghai-Tibet Plateau.Zircon U-Pb ages suggest that the granodiorites were emplaced at 87.32±0.43 Ma.Geochemically,the high Ba-Sr granodiorites are characterized by elevated K_(2)O+Na_(2)O contents(8.18-8.73 wt%)and K_(2)O/Na_(2)O ratios(0.99-1.25,mostly>1),and belong to high-K calc-alkaline to shoshonitic series.The Yonglaga granodiorites show notably high Sr(653-783 ppm)and Ba(1346-1531 ppm)contents,plus high Sr/Y(30.92-38.18)and(La/Yb)_(N)(27.7-34.7)ratios,but low Y(20.0-22.8 ppm)and Yb(1.92-2.19 ppm)contents with absence of negative Eu anomalies(δEu=0.83-0.88),all similar to typical high Ba-Sr granitoids.The variable zirconεHf(t)values of-4.58 to+12.97,elevated initial^(87)Sr/^(86)Sr isotopic ratios of 0.707254 to 0.707322 and lowεNd(t)values of-2.8 to-3.6 with decoupling from the Hf system suggest that a metasomatized mantle source included significant recycled ancient materials.The occurrence of such high Ba-Sr intrusions indicates previous contributions of metasomatized mantle-derived juvenile material to the continents,which imply the growth of continental crust during the Late Cretaceous in the SE Lhasa.Together with regional data,we infer that the underplated mafic magma provides a significant amount of heat,which leads to partial melting of the juvenile crust.The melting of the metasomatized mantle could produce a juvenile mafic lower crust,from which the high Ba-Sr granitoids were derived from reworking of previous mafic crust during the Late Cretaceous(ca.100-80 Ma)in the SE Lhasa. 展开更多
关键词 Late Cretaceous High Ba-Sr granodiorites SE Lhasa Growth of continental crust Juvenile crust
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Parameterization of turbulent mixing by deep learning in the continental shelf sea east of Hainan Island
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作者 Minghao HU Lingling XIE +1 位作者 Mingming LI Quanan ZHENG 《Journal of Oceanology and Limnology》 2025年第3期657-675,共19页
The uncertainty of ocean turbulent mixing parameterization comprises a significant challenge in ocean and climate models. A depth-dependent deep learning ocean turbulent mixing parameterization scheme was proposed wit... The uncertainty of ocean turbulent mixing parameterization comprises a significant challenge in ocean and climate models. A depth-dependent deep learning ocean turbulent mixing parameterization scheme was proposed with the hydrological and microstructure observations conducted in summer 2012 in the shelf sea east of Hainan Island, in South China Sea(SCS). The deep neural network model is used and incorporates the Richardson number Ri, the normalized depth D, the horizontal velocity speed U, the shear S^(2), the stratification N^(2), and the density ρ as input parameters. Comparing to the scheme without parameter D and region division, the depth-dependent scheme improves the prediction of the turbulent kinetic energy dissipation rate ε. The correlation coefficient(r) between predicted and observed lgε increases from 0.49 to 0.62, and the root mean square error decreases from 0.56 to 0.48. Comparing to the traditional physics-driven parameterization schemes, such as the G89 and MG03, the data-driven approach achieves higher accuracy and generalization. The SHapley Additive Explanations(SHAP) framework analysis reveals the importance descending order of the input parameters as: ρ, D, U, N^(2), S^(2), and Ri in the whole depth, while D is most important in the upper and bottom boundary layers(D≤0.3&D≥0.65) and least important in middle layer(0.3<D<0.65). The research shows applicability of constructing deep learning-based ocean turbulent mixing parameterization schemes using limited observational data and well-established physical processes. 展开更多
关键词 ocean turbulent mixing PARAMETERIZATION continental shelf sea deep learning SHapley Additive Explanations(SHAP)
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Controls on Faulted Sub-Depression Patterns in Continental Rifted Basins:The Beier Depression,Hailar Basin,Northeastern China
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作者 Fangju Chen Ya Tian +4 位作者 Gang Li Yougong Wang Huaye Liu Yue Zou Mengxia Li 《Journal of Environmental & Earth Sciences》 2025年第5期188-202,共15页
In contrast to well-studied rift basins in NE China,the Hailar Basin has received relatively less attention regarding the combined patterns of different types of grabens and half-grabens.This study aims to explore whe... In contrast to well-studied rift basins in NE China,the Hailar Basin has received relatively less attention regarding the combined patterns of different types of grabens and half-grabens.This study aims to explore whether the combined patterns of grabens in the Hailar Basin exhibit similar characteristics to those in other NE China rift basins and to identify the underlying causes.To achieve this,a comprehensive analysis of the major fault systems and the combined patterns of faulted sub-depressions,as well as their controlling mechanisms,was conducted.This analysis utilized the latest 3D seismic data that cover nearly the entire Beier Depression.Three groups of pre-existing fault systems were observed in the basement of the Beier Depression,and they are the NEE-EW-trending fault systems,the NE-trending fault systems,and the NW-trending fault systems.The NEE-EW-trending fault systems were distributed in the central part of the Beier Depression and primarily controlled the sedimentary filling of the Tongbomiao and the Lower Nantun Formations.The NE-trending fault systems were distributed in the southwestern part of the Beier Depression and primarily controlled the sedimentary filling of the Upper Nantun Formations.The NW-trending fault systems were distributed rarely in the Beier Depression.Five kinds of combined patterns of the sub-depressions were developed in the Beier Depression,and they are the parallel,en echelon,face-to-face,back-to-back,and S-shaped combined patterns.They were controlled by the NEE-EW-trending and the NE-trending fault systems with different orientations,arrangements,and activation sequences. 展开更多
关键词 NE China Hailar Basin Beier Depression Combined Pattern of Sub-Depressions continental Rift Basin
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Mechanical differences of laminations and crack propagation mechanism of continental shale
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作者 Yong-Ting Duan Cheng-Cheng Zhu +3 位作者 Pathegama Gamage Ranjith Bai-Cun Yang Tian-Qiao Mao Yu Li 《Petroleum Science》 2025年第4期1653-1669,共17页
Clarify the mechanical properties of different laminations and the fracture mechanism of continental shale under in-situ stress can provide theoretical basis for more comprehensive evaluation of the fracability of con... Clarify the mechanical properties of different laminations and the fracture mechanism of continental shale under in-situ stress can provide theoretical basis for more comprehensive evaluation of the fracability of continental shale oil reservoir.The Chang 72continental shale was used to investigate the mechanical properties of laminations and the effect of natural structure on the crack propagation of the shale.The XRD and thin section tests show that the laminations contain two types:bright sandy lamination with void structure and dark muddy lamination with layer structure.The real-time CT uniaxial compression tests were conducted to investigate the differences of mechanical properties between the muddy lamination and sandy lamination.It found that the uniaxial compression strength and elastic modulus of the sandy lamination are higher,forming a simple crack with large opening,and the Poisson's ratio of the muddy lamination is large,forming obvious lateral deformation and more secondary cracks.On this basis,the cuboid-shaped continental shale specimens were tested under true triaxial compression conditions to study the effect of laminations and interface cracks on crack propagation combining AE and CT techniques.It found that nascent cracks connected laminations and interface cracks to form fracture network under appropriate loading condition,tensile cracks developed in sandy lamination and shear cracks occurred in muddy lamination because of deformation dissonance and brittleness index differences,and more secondary cracks formed in muddy lamination with smaller fracture toughness.Moreover,the combination relationships between nascent and natural cracks mainly conclude direct penetration and deflection,which is affected by the filling degree and morphology of interface cracks and the relationship of lamination types.These conclusions show that laminar continental shale is conducive to forming complex fracture network,which can provide a theoretical basis for the proposal of indicators and methods for fracability evaluation. 展开更多
关键词 continental shale oil Mechanical properties of different lamination types True triaxial compression test Structure control mechanism Fracability evaluation
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Characterizing strength and location of continental oil shale with drilling process monitoring in Southern Ordos Basin, China
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作者 Siyuan Wu Lihui Li +1 位作者 Xiao Li Zhongqi Quentin Yue 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第6期3339-3357,共19页
The increasing demand for unconventional oil and gas resources,especially oil shale,has highlighted the urgent need to develop rapid and accurate strata characterization methods.This paper is the first case and examin... The increasing demand for unconventional oil and gas resources,especially oil shale,has highlighted the urgent need to develop rapid and accurate strata characterization methods.This paper is the first case and examines the drilling process monitoring(DPM)method as a digital,accurate,cost-effective method to characterize oil shale reservoirs in the Ordos Basin,China.The digital DPM method provides real-time in situ testing of the relative variation in rock mechanical strength along the drill bit depth.Furthermore,it can give a refined rock quality designation based on the DPM zoning result(RQD(V_(DPM)))and a strength-grade characterization at the site.Oil shale has high heterogeneity and low strata strength.The digital results are further compared and verified with manual logging,cored samples,and digital panoramic borehole cameras.The findings highlight the innovative potential of the DPM method in identifying the zones of oil shale reservoir along the drill bit depth.The digital results provide a better understanding of the oil shale in Tongchuan and the potential for future oil shale exploration in other regions. 展开更多
关键词 continental oil shale Drilling process monitoring(DPM) Digital factual drilling data Constant penetration rate FRACTURE Time series algorithm
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Depicting Permian to Triassic thickness variation of the Kunlun-Qaidam Continental Arc: Implication for tectonic evolution of the South Kunlun Ocean
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作者 Zhigang Wang Jiaopeng Sun +6 位作者 Yukun Qi Weidong He Kai Ye Zongli Li Lei He Junxiang Zhang Teng Wang 《Acta Geochimica》 2025年第3期599-608,共10页
Determining the evolutionary history of the Permian-Triassic Kunlun-Qaidam Continental Arc is essential to understanding the subduction and closure processes of the South Kunlun Ocean.In this paper,we utilize(La/Yb)N ... Determining the evolutionary history of the Permian-Triassic Kunlun-Qaidam Continental Arc is essential to understanding the subduction and closure processes of the South Kunlun Ocean.In this paper,we utilize(La/Yb)N ratios collected from a fi ltered geochemical dataset on Permian to Triassic calc-alkaline rocks(55 wt%–68 wt%SiO_(2))and plutonic rocks within the Kunlun-Qaidam Continental Arc to reconstruct the spatiotemporal variation of the relative crustal thickness.Combined with known geologic observations,we discuss the subduction-accretionary tectonics of the South Kunlun Ocean and the topographic evolution of the Kunlun-Qaidam Continental Arc.Two episodes of crustal thickening and thinning were revealed.The reconstructed thickness reveals two crustal thickening and thinning events for the Kunlun-Qaidam Continental Arc from ca.270 to 210 Ma.The southern sector of the Kunlun-Qaidam Continental Arc is about 7 km thicker than the northern portion,with a maximum thickness of about 55 km at ca.270 and 230 Ma.The ca.270 and 230 Ma crustal thickening events coincide with renewed northward subduction of the South Kunlun Ocean plate and ocean closure,respectively,whereas the ca.270‒240 Ma and ca.230‒210 Ma crustal thinning events may refl ect slab break-off of the oceanic plate and lithospheric collapse during the post-collision extension,respectively. 展开更多
关键词 PERMIAN-TRIASSIC Kunlun-Qaidam continental Arc South Kunlun Ocean (La/Yb)N ratios Crustal thickness
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Compositions and Distributions of Secondary Organic Aerosols and Their Tracers over the Pearl River Estuary Region Influenced by Continental and Marine Air Masses
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作者 Zhenhao LING Junlin HUANG +6 位作者 Liqing WU Yee Jun THAM Guizhen FANG Bing WU Lili MING Xuemei WANG Xiang DING 《Advances in Atmospheric Sciences》 2025年第4期682-696,共15页
The compositions and distributions of monoterpenes,isoprene,aromatics and sesquiterpene SOA tracers(SOAM,SOAI,SOAA and SOAS,respectively)at an island site(Da Wan Shan Island,DWS)were investigated in the context of the... The compositions and distributions of monoterpenes,isoprene,aromatics and sesquiterpene SOA tracers(SOAM,SOAI,SOAA and SOAS,respectively)at an island site(Da Wan Shan Island,DWS)were investigated in the context of the influence of continental and marine air masses over the Pearl River Estuary(PRE)region in winter 2021.The sum concentration of SOA tracers was 6.2–132.8 ng m^(−3),with SOAM and SOAI as the main components in both continental(scenarios A1 and A2)and marine air masses(scenario A3),as well as their combination(scenario A4).The highest and lowest levels of SOAM were observed in A1 and A3,respectively,which were mainly related to the variations in meteorological conditions,precursor concentrations,and the degree of photochemical processes.Higher MBTCA/HGA(3-methyl-1,2,3-butanetricarboxylic acid/3-hydroxyglutaric acid)ratios suggested a less significant contribution fromα-pinene to SOAM.The variations of SOAI in the different scenarios were associated with differences in relative humidity,particle acidity,and isoprene/NOx ratios.The respective highest and lowest concentrations of aromatics SOA tracers in A1 and A3 revealed the influence of anthropogenic precursors from upwind continental areas,which was confirmed by the correlation among biogenic and anthropogenic precursors.The results of the tracer-based-method suggested dominant contributions of SOAs from aromatics and monoterpenes,with the highest concentrations in A1.A WRF-Chem simulation revealed that the SOAs from the above precursors only contributed 12%–25%to the total SOA at DWS,while the spatial distributions of SOAs further highlighted that the abundance of SOAs over the PRE region in winter is highly associated with air masses transported from upwind continental areas. 展开更多
关键词 secondary organic aerosols tracers continental and marine air masses Pearl River Estuary region
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关于陆相断陷盆地济阳页岩油基本渗流问题的思考
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作者 杨勇 张世明 +8 位作者 曹小朋 王森 蒋龙 孙红霞 李伟 刘祖鹏 邢祥东 路广 孙强 《油气地质与采收率》 北大核心 2026年第1期14-25,共12页
针对陆相断陷盆地济阳页岩油渗流机理认识不清的难题,从广义达西方程角度出发,阐明了孔隙度场、渗透率场、饱和度场、压力场和应力场“五场”动态演化规律,济阳页岩油藏核心五场的动态耦合作用主导储层孔缝发育、流体赋存与渗流规律,决... 针对陆相断陷盆地济阳页岩油渗流机理认识不清的难题,从广义达西方程角度出发,阐明了孔隙度场、渗透率场、饱和度场、压力场和应力场“五场”动态演化规律,济阳页岩油藏核心五场的动态耦合作用主导储层孔缝发育、流体赋存与渗流规律,决定储层改造效果及产能潜力,明晰其耦合机理是实现页岩油高效开发的核心前提。考虑“五场”时空演化机制,深化易流区-缓流区-滞流区三区渗流模式,阐明单井各区“五场”分布特征、主导渗流机理及产油量差异贡献;聚焦井间三区空间配置,提出孤立型、竞争型与有利干扰型井组渗流模式,明确了井网人工缝网适配+均衡压裂改造形成有利干扰型三区渗流模式的技术发展趋势。在此基础上,提出了三区性质精细刻画和三区渗流规律精确表征两大重点攻关方向,为济阳页岩油规模效益开发提供理论与技术支撑。 展开更多
关键词 济阳页岩油 “五场”耦合 三区模式 渗流模式 陆相断陷盆地
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中国东部断陷湖盆页岩油形成富集条件与勘探开发实践——以渤海湾盆地黄骅坳陷页岩油为例
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作者 蒲秀刚 韩文中 +6 位作者 许静 时战楠 董姜畅 魏敬洋 张伟 王娜 计璐璐 《油气藏评价与开发》 北大核心 2026年第2期238-255,共18页
中国东部断陷湖盆如渤海湾盆地、苏北盆地广泛发育陆相细粒泥纹型页岩油,具有“粒度细、纹层多”的典型特征,是页岩油勘探开发的重要新领域。然而,泥纹型页岩油复杂的形成条件与富集规律制约了有效勘探与开发。研究旨在系统揭示该类页... 中国东部断陷湖盆如渤海湾盆地、苏北盆地广泛发育陆相细粒泥纹型页岩油,具有“粒度细、纹层多”的典型特征,是页岩油勘探开发的重要新领域。然而,泥纹型页岩油复杂的形成条件与富集规律制约了有效勘探与开发。研究旨在系统揭示该类页岩油的富集主控因素,建立相应的地质理论与成藏模式,并形成配套的关键技术体系,以指导勘探实践并评价其资源潜力。综合利用岩心、测井与三维地震资料,地球化学实验及生产动态数据,系统分析了泥纹型页岩油的地质特征、形成条件、富集规律及勘探开发关键技术。明确了泥纹型页岩油“高脆性矿物+高频纹层”优势组构、优势热演化窗口(镜质体反射率介于0.7%~1.2%)、含油性最高的“中高匹配”富集规律(源-储纹层厚度比为1∶1.5),建立了“长英质+有机质、灰云质+有机质”2类微运移成藏模式,研发了以游离烃(S1)、脆性矿物体积分数、电阻率比值、自然伽马为核心的Ⅰ类富集层量化标准,形成了地质-测井-地震一体化“甜点”刻画、水平井组参数优化、高效体积压裂及控压排采技术为核心的关键技术体系。应用该技术体系后,黄骅、济阳、辽河、冀中及东台等坳陷实现页岩油高产突破,东部断陷盆地页岩油地质资源量超过100×10^(8) t,展现了良好的开发前景。同时指出断陷湖盆页岩油具有“甜点”规模偏小、埋深偏大、井间干扰、递减快等挑战,提出降本增效、数字化、原位转化等攻关方向,预计2030年中国陆相页岩油产量约占中国总产量的8%。 展开更多
关键词 断陷盆地 陆相页岩油 中高匹配 微运移成藏模式 开发实践
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济阳页岩油开发关键科学问题与研究进展
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作者 杨勇 曹小朋 +6 位作者 张世明 吕琦 刘祖鹏 孙红霞 李伟 路广 陈李杨 《石油勘探与开发》 北大核心 2026年第1期143-154,共12页
围绕胜利油田济阳页岩油开发中的关键技术瓶颈,提出页岩油储集空间与赋存状态、多尺度流动空间形成机制、孔缝内原油动用机理及弹性开发后期提高采收率机制等方面的关键科学与工程技术问题,重点论述实验技术、孔缝结构及流体赋存特征、... 围绕胜利油田济阳页岩油开发中的关键技术瓶颈,提出页岩油储集空间与赋存状态、多尺度流动空间形成机制、孔缝内原油动用机理及弹性开发后期提高采收率机制等方面的关键科学与工程技术问题,重点论述实验技术、孔缝结构及流体赋存特征、裂缝演化机制、页岩油渗流机制及提高采收率方法等方面的研究进展与机理认识。通过改进实验方法、优化测试条件、研发新技术深化对页岩油赋存状态、储集空间、渗流规律的认识,揭示济阳页岩“全孔径含油、大孔富油”分布规律及纳米孔限域效应下流体相态差异;刻画压裂裂缝“纵向扩展受限、发育复杂缝网”的特征及“压-焖-采”过程缝网动态演化规律;建立“易流-缓流-滞流”三区渗流模式和弹性驱-渗吸驱能量协同机制;高压注入进一步增强页岩孔缝系统内CO_(2)传质扩散能力,竞争解吸烷烃提高页岩油动用程度。研究成果对陆相页岩油开发理论的形成和技术体系的构建具有重要支撑作用,下一步重点研究方向聚焦于矿场级多场耦合物理模拟设备、微观—宏观跨尺度实验方法、孔缝精细表征和压后取心裂缝描述技术、多介质流固耦合数值模拟算法、低成本提高采收率和低品质页岩油原位改质技术,以推动济阳页岩油规模效益开发。 展开更多
关键词 济阳坳陷 陆相页岩油 济阳页岩油 科学问题 实验技术 赋存状态 渗流规律 研究进展 攻关方向
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南大西洋两侧被动陆缘盆地群油气有序聚集规律
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作者 温志新 刘祚冬 +3 位作者 徐宁 李刚 贺正军 宋成鹏 《石油勘探与开发》 北大核心 2026年第1期67-80,共14页
基于板块构造理论,综合利用古地磁、地震及区域地质等资料,对南大西洋两侧被动大陆边缘古构造沉积环境进行恢复重建,并深入分析其油气分布的内在联系和油气差异聚集规律。研究表明,南大西洋两侧盆地群均经历了两大伸展期:裂谷期和拗陷期... 基于板块构造理论,综合利用古地磁、地震及区域地质等资料,对南大西洋两侧被动大陆边缘古构造沉积环境进行恢复重建,并深入分析其油气分布的内在联系和油气差异聚集规律。研究表明,南大西洋两侧盆地群均经历了两大伸展期:裂谷期和拗陷期,可细分为4个演化阶段:早白垩世贝里阿斯期—巴雷姆期陆内裂谷期、早白垩世阿普特期—阿尔布期陆间裂谷—初始漂移过渡期、晚白垩世—古近纪漂移海侵拗陷期和新近纪—第四纪漂移海退拗陷期。依据盆地结构、叠合方式把研究区被动大陆边缘盆地划分为两种类型:裂谷-陆缘坳陷复合型和陆缘坳陷主导型;在此基础上,根据盐构造发育程度和主导砂体类型,进一步划分出6个亚类,即无盐裂谷-陆缘重力流复合型、无盐裂谷-陆缘三角洲复合型、含盐裂谷-陆缘重力流复合型、含盐裂谷-陆缘三角洲复合型、陆缘坳陷重力流主导型及陆缘坳陷三角洲主导型。无盐裂谷-陆缘重力流复合型、无盐裂谷-陆缘三角洲复合型盆地主要位于研究区南段,含盐裂谷-陆缘重力流复合型、含盐裂谷-陆缘三角洲复合型盆地主要分布于研究区中段,陆缘坳陷重力流主导型盆地主要位于研究区北段,陆缘坳陷三角洲主导型被动陆缘盆地在南北走向3个段上均有分布。各类盆地上下构造层均发育独特的沉积体系及生储盖成藏组合,经过多期原型盆地叠加演化,导致油气在纵横向上呈现出“走向分段、倾向分带、纵向分层”的有序聚集特征。 展开更多
关键词 南大西洋 构造沉积环境 被动大陆边缘盆地 原型盆地 裂谷 坳陷 断陷 深水盐下 大油气田
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