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首页> 外文期刊>GSA Bulletin >Sediment dispersal in an evolving foreland: Detrital zircon geochronology from Upper Jurassic and lowermost Cretaceous strata, Alberta Basin, Canada
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Sediment dispersal in an evolving foreland: Detrital zircon geochronology from Upper Jurassic and lowermost Cretaceous strata, Alberta Basin, Canada

机译:不断演变的前陆中的沉积物扩散:加拿大阿尔伯塔盆地上侏罗纪和最下白垩纪地层的碎屑锆石年代学

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摘要

The Alberta foreland basin is a classic example of a retro-arc foreland basin, yet the early stages of its development remain poorly understood. Several contrasting hypotheses have been proposed to explain the source areas and dispersal patterns of sediment in western Canada during the Late Jurassic initiation of the foreland basin. Here, we use detrital zircon uranium-lead (U-Pb) geochronology, sandstone petrography, paleocurrent measurements, and regional correlations to reconstruct the early basin evolution, including sediment provenance and depositional history. These data indicate sediment in the early foreland basin was delivered via two principal sedimentary systems: a south-to-north axial river system, and transverse fluvial systems that emanated from the adjacent Cordillera. Accordingly, sandstones of the Jurassic foreland, associated with the Minnes Group and equivalent Kootenay and Nikanassin formations, are divided into two informal groups, type 1 and type 2. Type 1 sandstones are mature quartz arenites, present along the entire north-south length of the Alberta Basin, and generally at the base of the succession. Type 1 sandstones have zircons with age populations between 980 and 2000 Ma, similar to sediments of Jurassic and Lower Cretaceous strata in the western United States. These deposits are interpreted to have been derived from southern sources and transported axially to the north along the earliest foredeep of the Cordilleran foreland basin. Type 2 sandstones by contrast, are less mature, containing higher quantities of chert and lithic fragments, and are dominated by 1765–2100 Ma zircons with a smaller population at 2500–2800 Ma. The zircon age populations of type 2 sandstones are similar to populations recorded in the Neoproterozoic to Triassic miogeocline strata of the adjacent fold-and-thrust belt. Type 2 sandstones are common in the western, orogenic side of the basin, but they extend eastward across the basin in fluvial sediments in the upper portion of the succession. nnChanges in provenance and sediment composition are associated with the evolution of paleodrainages and the increasing importance of Cordilleran erosion to the sediment budget. The progressively greater influx of orogen-derived material relative to subsidence displaced the axial fluvial system toward a more cratonward-position. The collected data support the hypothesis that much of the sediment was initially transported northward by an axial drainage network, followed by Cordilleran-sourced sediments fed by transverse river systems. The present study attempts to unravel predictable patterns of sediment dispersal in evolving foreland basins, while testing whether clear changes in sediment composition of the first clastic pulse of sediment are related to hinterland exhumation, changing drainage divides, weathering processes, or varied provenance.
机译:艾伯塔前陆盆地是后弧前陆盆地的典型例子,但其发展的早期阶段仍知之甚少。提出了几种相反的假设,以解释前陆盆地侏罗纪晚期萌发期间加拿大西部沉积物的来源区域和扩散方式。在这里,我们使用碎屑锆石铀铅(U-Pb)年代学,砂岩岩相学,古流测量和区域相关性来重建盆地的早期演化,包括沉积物来源和沉积历史。这些数据表明,前陆盆地早期的沉积物是通过两个主要的沉积系统输送的:从南到北的轴向河流系统,以及从邻近山脉发出的横向河流系统。因此,侏罗纪前陆的砂岩与Minnes组以及等效的Kootenay和Nikanassin地层相关,分为1类和2类两个非正式类群。1类砂岩是成熟的石英砂,存在于整个南北向。阿尔伯塔盆地,通常是继承的基础。 1型砂岩的锆石年龄在980至2000 Ma之间,类似于美国西部的侏罗纪和下白垩纪地层的沉积物。这些沉积物被解释为源自南部资源,并沿着科迪勒兰前陆盆地的最早前缘轴向向北输送。相比之下,类型2的砂岩较不成熟,含较多的cher石和岩屑碎片,并以1765-2100 Ma锆石为主,而在2500-2800 Ma则较少。 2型砂岩的锆石年龄种群与相邻的褶皱-冲断带的新元古代至三叠纪的微球斜纹岩层中记录的种群相似。 2型砂岩在盆地的西部造山带中很常见,但它们在演替系上部的河流沉积物中向东延伸穿过整个盆地。 nn物源和沉积物成分的变化与古流域的演变以及山脉侵蚀对沉积物收支的重要性日益增加有关。相对于沉陷,造山带来源的物质逐渐大量涌入,使轴向河流系统向更靠近克拉通的位置移动。收集到的数据支持以下假设:许多沉积物最初是通过轴向排水网络向北输送的,然后是由横向河系供给的源自科迪勒兰的沉积物。本研究试图揭示前陆盆地演化过程中可预测的沉积物扩散模式,同时测试沉积物第一个碎屑脉动的沉积物成分的明显变化是否与腹地挖掘,变化的排水沟,风化过程或变化的物源有关。

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