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71.
Ian J. Basson Samantha Perritt Michael K. Watkeys Andrew H. Menzies 《Gondwana Research》2004,7(1):57-73
The whole-rock geochemistry of metamorphosed greywackes, arenites and arkoses within the Mesoproterozoic Namaqua-Natal-Maudheim Province is interpreted with the aim of establishing geochemical correlations and defining common sediment source terrains. Metasediments of the Mfongosi Group of the Natal Sector of the Namaqua-Natal Metamorphic Province were sampled from their type area in the Mfongosi Valley. Metagreywackes from the northern limits of the Mfongosi Valley, directly adjacent to the Kaapvaal Craton, show ocean island arc signatures while metagreywackes from the southern limits of the Mfongosi Valley, near the contact with the Madidima Thrust of the Natal nappe zone, show mainly active continental margin signatures. Interleaved, geochemically distinct low-Ca+Na, high-K metamorphosed arkoses to lithic arkoses indicate a minor passive margin sediment component. Geochemical classification of low-grade Ahlmannryggen Group greywackes, arenites and arkoses of the Grunehogna Province, Antarctica, indicates both active and passive continental margin sediment sources. An oceanic island arc signature is not evident in Ahlmannryggen Group data. The active continental margin signature in both Natal Sector and Grunehogna Province metasediments potentially provides for a common link between these terranes. Discriminant Function Analysis, using three pre-defined provenance sub-sets within the Mfongosi Group and two pre-defined provenance sub-sets within the Ahlmannryggen Group, indicate that metasediments with active continental margin signatures from both groups are geochemically identical, implying that the active continental margin of the Grunehogna Province shed immature sediments westwards (African azimuths) into the developing, narrow or restricted Mesoproterozoic ‘Mfongosi Basin.’ This was accompanied by minor sediment influx from a stable continental platform, potentially the Kaapvaal Craton. Oblique and diachronous collision, initiated in the southwestern portions of the combined Natal Sector/Grunehogna Province system produced a laterally variable Mfongosi Group, which formed in the ‘Mfongosi Basin’. Coarse-grained sediments dominated in its eastern portions while basalts with thin sapropelite units dominated in its western portions. 相似文献
72.
通过对野外露头剖面、钻井以及1︰200000区域地质调查等资料的综合研究,识别出四川盆地及其周缘地区寒武系洗象池群颗粒滩的岩石类型包括颗粒云岩、颗粒灰岩、细—中晶白云岩,颗粒类型主要为砂屑,次为鲕粒、砾屑以及少量生屑。发育潟湖—台内滩—潟湖、潟湖—台内滩—台坪、潮坪—潮缘滩—潮坪这3种向上变粗的沉积序列。单个旋回中的颗粒滩的厚度一般小于2.5m,垂向上多表现为频繁叠置的小规模薄型滩体,且横向规模小、可对比性差。平面上,颗粒滩主要分布在古隆起区和水下相对高地,整体为东北向分布。海平面升降和沉积能量的高低控制着颗粒滩发育规模,而构造条件决定了颗粒滩的横向连续性和平面分布。 相似文献
73.
The Matt Wilson structure is a circular 5.5 km-diameter structure in Early Mesoproterozoic or Neoproterozoic rocks of the Victoria Basin, Northern Territory. It lies in regionally horizontal to gently dipping Wondoan Hill and Stubb Formations (Tijunna Group) and Jasper Gorge Sandstone (Auvergne Group). An outer circumferential syncline with dips of 5?–?40° in the limbs surrounds an intermediate zone with faulted sandstone displaying horizontal to low dips, and a central steeply dipping zone about 1.5 km across. Several thrust faults in the outer syncline appear to indicate outward-directed forces. The central zone, marked by steeply dipping to overturned Tijunna Group and possibly Bullita Group sandstone and mudstone, indicates uplift of at least 300 m. The rocks are intensely fractured with some brecciation, and contain numerous planar to subtly undulating surfaces displaying striae which resemble shatter cleavage. Thin-sections of sandstone from the central area show zones of intense microbrecciation and irregular and planar fractures in quartz, but no melt-rocks have been identified. The planar fractures occur in multiple intersecting parallel sets typical of relatively low-level (5?–?10 GPa) shock-pressure effects. Alternative mechanisms, i.e. igneous intrusion, carbonate collapse, diapirism and regional deformation processes, have been discounted. The circular nature, central uplift, faulting, shatter features and planar fractures are all consistent with an impact origin. The Matt Wilson structure is most likely a deeply eroded impact structure in which the more highly shocked rocks of the original crater floor have been removed by erosion. Estimates of the age of the Auvergne and Tijunna Groups range from Early Mesoproterozoic (which we favour) to Late Neoproterozoic. Early Cambrian Antrim Plateau Volcanics near the impact structure show no signs of impact effects, allowing the age of impact to be constrained between Early Mesoproterozoic and Early Cambrian. The presence of widespread soft-sediment deformation features, apparently confined to a single horizon in the Saddle Creek Formation some 700?–?1000 m stratigraphically higher in the Auvergne Group than the rocks at the impact site, and apparently increasing in thickness towards the Matt Wilson structure, lead us to speculate that this probable event horizon is related to the impact event: if correct the impact occurred during deposition of the Saddle Creek Formation. 相似文献
74.
扬子地区江口冰期地层的划分对比与南华系层型剖面 总被引:16,自引:2,他引:16
我国南方扬子板块是国际上新元古代冰期地层最具代表性的地区之一,冰期记录出露广泛,研究程度较高,为国内外学者所关注。当前,国际上普遍认为新元古代主要有两次全球性大冰期,一般以澳大利亚的Sturtian和Marinoan冰期为代表,扬子地区的南沱冰期和江口冰期与之相对应。但是,围绕扬子地区冰期地层的划分对比一直存在较大争议。关于上冰期的对比,虽然曾出现过不同的意见,但随着南沱组年龄数据的获得看法已趋于一致。目前主要分歧来自对下冰期和间冰期的认识。我国目前通常使用的名称,如“长安冰期”、“富禄间冰期”和“古城冰期”等与国际上的认识有差异,对新建的“南华系”地层划分和对比产生了不同的理解。根据扬子地区地质工作的多年积累和研究的成果,以“江口群”取代原“江口组”,使之成为扬子地区代表下冰期沉积的统一地层单元,江口群涵盖了下冰期的长安组、富禄组及与之相关的地层单元;扬子地区的下冰期相应地称为“江口冰期”,与国际上的Sturtian冰期可以很好地对应,含义更完整。我国南方对应于Sturtian和Marinoan冰期的是江口冰期和南沱冰期。湘黔桂地区的新元古代冰期地层保存最完整连续,其中贵州黎平县的肇兴剖面可考虑作为新元古代冰期地层的候选层型剖面。 相似文献
75.
摘要:“梅山群”是豫皖交界地段变质程度与佛子岭群、石炭系不同的变质岩系。它主要由斜长角闪岩、变粒岩、浅粒岩、云英片岩、角闪片岩、黑云片岩、大理岩和辉石岩等组成,在区域上可以和商城群歪庙组对比,形成时代为早古生代.对“梅山群”的岩石化学研究表明,其形成的古构造环境可能为弧后盆地。笔者认为早古生代,南北大陆板块构造的碰撞以华北板块仰冲、扬子板块俯冲为特征,大别造山带古缝合带的位置应在“梅山群”分布区域的南侧。 相似文献
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80.
英买力凝析气田群区层组划分与对比研究是该地区陆相地层油气藏地质和开发工程中最基本和最重要的精细地质研究内容之一,也是急需解决的关键技术难题之一。本次研究采取"取心标准井出发,岩心标定测井,寻找辅助标志层,进行旋回对比、分级控制,将隔夹层纳入到同一沉积旋回进行识别、划分对比,以隔层确定小层,并兼顾‘就近、闭合’的原则"展开层组划分与对比,重新确定出更适用于气田开发的气层组、砂层组、小层等划分单元。而对可以作为层组划分与对比辅助手段的白垩系与古近系不整合界面、库姆格列木群底砂岩段顶界以及层组中的隔夹层等的识别,为层组的精细划分对比提供了重要保证,很好地解决了巴什基奇克组、库姆格列木群的层组划分问题,对英买力地区凝析气藏的后期开发等问题具有积极的指导意义。 相似文献