大型碎屑锆石资料集调查与物源填图:在落基山脉祖先变形之前、期间和之后的局部、区域和大陆沉积物来源

GSA Bulletin Pub Date : 2023-03-01 DOI:10.1130/b36285.1
Tyson M. Smith, J. Saylor, T. Lapen, R. Leary, K. Sundell
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引用次数: 1

摘要

碎屑年代学数据集的数量和规模的增加为提高沉积物路径模型的精度和分辨率提供了新的机会。然而,新的机遇伴随着大数据集成和可视化方面的挑战而来。为了应对这些挑战,我们概述了两种有助于分析和解释大型碎屑年代学数据集的新方法:(1)自下而上和自上而下碎屑锆石源建模的结合;(2)沉积物物源制图。结合源模拟方法对碎屑锆石经验源识别和源比例确定具有指导意义。物源制图将建模结果和补充的地质数据(如古海流、古地理和地层厚度图)中的物源比例集成在一起,通过数据稀疏或模糊的区域推断物源信息,从而减轻数据分布不均一性的问题。沉积物物源图还提供了数据的概要视图,与碎屑锆石来源建模一起,有助于避免对包含数百个样本的数据集的单个年龄模式进行冗长的描述,这可能会模糊数据中的潜在趋势。我们将此方法应用于晚古生代-早中生代地层,利用329个已发表和新发现的U-Pb碎屑锆石样品,记录了Laurentia西部(即祖先落基山脉(ARM))板内变形核心区的5次沉积路线。这些时期之间的过渡由沉积物源分布的变化来定义,物源分布的变化可以通过物源图来说明(1)ARM盆地与横贯大陆沉积物源隔离的程度和范围,以及(2)ARM驱动的横贯大陆沉积物路径系统的变化。我们绘制了ARM核心周围远端衍生沉积物的可能沉积路径,说明ARM隆起改变了板块内剧烈变形区域周围的横大陆系统。此外,在ARM变形之前、期间和之后,西部Laurentia沉积路线的演变为跨大陆沉积路线与板内变形之间的相互作用提供了一个例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large detrital zircon data set investigation and provenance mapping: Local versus regional and continental sediment sources before, during, and after Ancestral Rocky Mountain deformation
The increasing number and size of detrital geochronology data sets offer new opportunities for increased accuracy and resolution of sediment routing models. However, the new opportunities come coupled with challenges in large data integration and visualization. We address these challenges by outlining two novel approaches that aid in analyzing and interpreting large detrital geochronology data sets: (1) combination of bottom-up and top-down detrital zircon source modeling, and (2) sediment provenance mapping. Combining source-modeling methods provides guidance in identifying empirical detrital zircon sources and determining source proportions. Provenance mapping integrates source proportions from modeling results and complimentary geologic data (e.g., paleocurrents, paleogeography, and stratal thickness maps) to extrapolate provenance information through areas with sparse or ambiguous data, thus mitigating issues of data distribution heterogeneity. Sediment provenance maps also provide a synoptic view of data that, along with detrital zircon source modeling, aids in circumventing lengthy descriptions of individual age modes for data sets containing hundreds of samples, which can obscure underlying trends in the data. We apply this approach to late Paleozoic−early Mesozoic strata, using 329 published and new U-Pb detrital zircon samples, and document five sediment-routing episodes in the core zone of intraplate deformation in western Laurentia (i.e., the Ancestral Rocky Mountains (ARM)). The transitions between these episodes are defined by changes in sediment source distribution, which are illustrated by provenance maps that show (1) the degree and extent of ARM basin isolation from transcontinental sediment sources and (2) ARM-driven changes in transcontinental sediment routing systems. We map possible sediment pathways of distally derived sediment around the ARM core, illustrating that ARM uplifts diverted transcontinental systems around areas of intense intraplate deformation. Further, the evolution of sediment routing in western Laurentia before, during, and after ARM deformation provides an example of the interaction between transcontinental sediment routing and intraplate deformation.
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