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81.
A.L. Piskarev A.A. Kireev V.A. Savin O.E. Smirnov 《Russian Geology and Geophysics》2018,59(7):803-812
Processing of data from regional geophysical surveys completed in the northern Barents Sea has provided updates to gravity and magnetic databases, structural maps of seismic interfaces, and positions of anomaly sources, which made a basis for 3D density and magnetic models of the crust. The new geological and geophysical results placed constraints on the boundaries between basement blocks formed in different settings and on the contours of deposition zones of different ages in the northeastern Barents Sea. The estimated thicknesses of sedimentary sequences that formed within certain time spans record the deposition history of the region. There is a 20-50 km wide deep suture between two basins of Mesozoic and Paleozoic ages in the eastern part of the region, where pre-Late Triassic reflectors have no clear correlation. The suture slopes eastward at a low angle and corresponds to a paleothrust according to seismic and modeling data. In the basement model, the suture is approximated by a zone of low magnetization and density, which is common to active fault systems. The discovery of the suture has important geological and exploration implications. 相似文献
82.
S.V. Ershov 《Russian Geology and Geophysics》2018,59(7):891-904
The geological structure and conditions of formation of a Lower Cretaceous clinoform complex in West Siberia are examined based on sequence stratigraphy. The regional Berriasian-Hauterivian clinoforms are interpreted as third-order sequences, and their formation should be considered in terms of the Depositional Sequence III model. Productive beds of both shallow and deep marine as well as continental genesis formed mostly in a regressive basin and belong to the highstand systems tracts. 相似文献
83.
The geologic positions and geochemical and isotope parameters of the Ordovician-early Silurian and Early-Middle Devonian continuous volcanic series of the Minusa basin and its mountainous framing are compared. Both series are composed mostly of moderately alkaline rocks with variations in SiO2 contents from 45 to 77 wt.%. The Ordovician-early Silurian series differs from the Early-Middle Devonian one in lower contents of TiO2 (< 1.7 wt.%) and Fe2O3tot and higher contents of Al2O3 in all rock varieties and in the more fractionated REE patterns of trachybasalts. The compositions of both series reflect two simultaneous mechanisms of magma evolution. The main process was fractional crystallization leading to the formation of rocks from trachybasalts to trachyrhyodacites. The accessory mechanism was the contamination of fractionated melts by crustal material, anatectic melting of crust, and mixing of deep-seated magmas with crustal melts. These processes had specifics at each stage and were controlled by the composition of the sources of parental melts. Their geochemical and isotopic parameters (high alkalinity, high contents of lithophile elements, negative anomalies of Nb, Ta, and Ti, and enrichment in radiogenic Sr) point to the interaction of mantle plumes with the lithospheric mantle that was metasomatically transformed during the preceding Vendian-early Cambrian subduction processes. 相似文献
84.
As shown by geological, mineralogical, and isotope geochemical data, trachybasaltic-trachytic-trachyrhyolitic (TTT) rocks from the Nyalga basin in Central Mongolia result from several eruptions of fractionated magmas within a short time span at about 120 Ma. Their parental basaltic melts formed by partial melting of mantle peridotite which was metasomatized and hydrated during previous subduction events. Basaltic trachyandesites have high TiO2 and K2O, relatively high P2O5, and low MgO contents, medium 87Sr/86Sr(0) ratios (0.70526-0.70567), and almost zero or slightly negative εNd(T) values. The isotope geochemical signatures of TTT rocks are typical of Late Mesozoic basaltic rocks from rift zones of Mongolia and Transbaikalia. The sources of basaltic magma at volcanic centers of Northern and Central Asia apparently moved from a shallower and more hydrous region to deeper and less hydrated lithospheric mantle (from spinel to garnet-bearing peridotite) between the Late Paleozoic and the latest Mesozoic. The geochemistry and mineralogy of TTT rocks fit the best models implying fractional crystallization of basaltic trachyandesitic, trachytic, and trachyrhyodacitic magmas. Mass balance calculations indicate that trachytic and trachydacitic magmas formed after crystallization of labradorite-andesine, Ti-augite, Sr-apatite, Ti-magnetite, and ilmenite from basaltic trachyandesitic melts. The melts evolved from trachytic to trachyrhyodacitic and trachyrhyolitic compositions as a result of prevalent crystallization of K-Na feldspar, with zircon, chevkinite-Ce, and LREE-enriched apatite involved in fractionation. Trachytic, trachyrhyodacitic, and trachyrhyolitic residual melts were produced by the evolution of compositionally different parental melts (basaltic trachyandesitic, trachytic, and trachyrhyodacitic, respectively), which moved to shallower continental crust and accumulated in isolated chambers. Judging by their isotopic signatures, the melts assimilated some crustal material, according to the assimilation and fractional crystallization (AFC) model. 相似文献
85.
E.V. Deev I.D. Zol’nikov I.V. Turova G.G. Rusanov Yu.M. Ryapolova N.N. Nevedrova S.A. Kotler 《Russian Geology and Geophysics》2018,59(4):351-362
Paleoseismological studies confirm that the Uimon basin is thrust by its northern mountain border along the active South Terekta fault. The latest motion along the fault in the 7-8th centuries AD induced an earthquake with a magnitude of Mw= 7.4-7.7 and a shaking intensity of I = 9-11 on the MSK-64 scale. The same fault generated another event (M > 7, I = 9-10), possibly, about 16 kyr ago, which triggered gravity sliding. The rockslide dammed the Uimon valley and produced a lake, where lacustrine deposition began about 14 ± 1 kyr ago, and a later M > 7 (I = 9-10) earthquake at ~ 6 ka caused the dam collapse and the lake drainage. Traces of much older earthquakes that occurred within the Uimon basin are detectable from secondary deformation structures (seismites) in soft sediments deposited during the drainage of a Late Pleistocene ice-dammed lake between 100 and 90 ka and in ~ 77 ka alluvium. The magnitude and intensity of these paleoearthquakes were at least M > 5.0-5.5 and I > 6-7. 相似文献
86.
银额盆地及邻区石炭纪小独山期—二叠纪紫松期岩相古地理 总被引:1,自引:0,他引:1
采用野外地质调查与室内研究相结合的方法,根据野外地质调查收集的沉积岩岩石学特征、古生物及沉积构造标志,结合室内地球化学分析测试结果,总结研究区的沉积相划分标志,将研究区石炭系—二叠系阿木山组(干泉组)划分出6种沉积相,即辫状河三角洲相、冲积扇相、滨海相、碳酸盐岩台地相、浅海陆棚相和海相火山岩相,并进一步划分为13种沉积亚相。浅海陆棚相和滨海相是研究区沉积的主体,碳酸盐岩台地相次之,辫状河三角洲相和冲积扇相仅在靠近敦煌-阿拉善-狼山古陆及马鬃山-拐子湖中间隆起带的部分有分布,海相火山岩主要分布于裂谷中心火山喷发带。 相似文献
87.
银额盆地哈日凹陷Y井天然气产层时代厘定及其意义 总被引:4,自引:4,他引:0
银额盆地哈日凹陷Y井钻遇多层天然气显示层,并对井深2946.0~2951.0m井段射孔压裂,获天然气9.15×104m3/d(无阻流量)。对浅层天然气显示层确定为白垩系银根组无异议,但获得工业气流的产层时代归属尚存争议。通过镜质体反射率(Ro)随深度的变化规律的研究,以及利用钻井岩心实验分析获得泥岩地球化学特征对沉积物源区沉积环境的判别,约束了二叠系与白垩系巴音戈壁组的不整合界面位于第9次取心(岩心底深2593.80m)与第10次取心(岩心顶深2909.60m)之间;地球物理测井自然伽马、电阻率等曲线在2792.0m出现突变,确定二叠系与白垩系巴音戈壁组的不整合界面为2792.0m。明确了Y井天然气产层为二叠系,指示了二叠系良好的油气资源前景,区内今后油气勘探应以二叠系为主要目的层。 相似文献
88.
中国北方石炭系—二叠系油气地质调查与勘探进展 总被引:1,自引:1,他引:0
近10年来,中国北方(天山-兴蒙构造带)以石炭系—二叠系为目的层的油气基础地质调查在地层划分对比、层序地层、沉积充填与沉积体系、构造改造等基础地质领域,以及石炭系—二叠系烃源岩评价等石油地质领域取得了一系列新认识。天山-兴蒙构造带发育石炭纪—二叠纪与中生代2期叠合盆地,其中中生代盆地群是在未变质的石炭系—二叠系之上发育的上叠盆地。盆地内部及周缘地质体均发现了石炭系—二叠系良好烃源岩。准噶尔、三塘湖、吐哈、银额等盆地以石炭系—二叠系为目的层的油气调查与勘探不断取得新的发现与突破,二连、松辽等盆地相继获得了石炭系—二叠系油气赋存信息。中国北方石炭系—二叠系具有良好的油气地质条件与资源前景,有望成为油气勘探的战略接替新领域。 相似文献
89.
四川西昌盆地白垩系小坝组尚未发现骨骼化石记录,其白垩系恐龙动物群的信息全赖于足迹化石。2017年,在喜德县洛甘发现小坝组迄今最大型的恐龙足迹群。该足迹点保存了大量的兽脚类足迹。足迹保存条件较差,但具备了基本的形态学特征。总体来看,兽脚类足迹具有尺寸较小(8~13cm),中等中趾前凹(0.5~0.6)和第Ⅱ趾和第Ⅳ趾间较宽趾间角(70°~100°)的特征;少量足迹保存了跖骨垫。初步分析认为,洛甘兽脚类足迹与四川盆地夹关组的兽脚类足迹Eubrontes和Grallator形态类型相似,为两地在白垩纪中期具有类似的恐龙动物群的观点提供了新的证据。该发现对于西昌盆地的古气候、古地理和地层对比都具有重要的意义,足迹详细分类还有待进一步研究。 相似文献
90.
为揭示北票(金-羊)盆地内北票组层序地层特征及沉积体系分布规律,应用层序地层学及沉积学理论和方法,综合利用野外露头、剖面等资料,建立了北票(金-羊)盆地北票组的层序地层格架,确定研究区的沉积相类型及分布规律。研究结果表明,北票(金-羊)盆地北票组可划分为2个三级层序,其内部可进一步划分为7个准层序组。在层序内识别出冲积扇、辫状河三角洲、湖泊3个沉积相。明确了沉积相的分布规律,向上形成由冲积扇到辫状河三角洲,再到湖相,最后是辫状河三角洲的沉积体系;平面上呈近北西—南东向展布的沉积体系,整体构成2个水进、水退的沉积体系。古地貌影响了底部冲积扇相沉积物的沉积特征。气候不仅影响了沉积物类型,且和湖平面变化共同控制了沉积物的演化规律。 相似文献