首页> 外文学位 >Sediment volume partitioning, topset processes and clinoform architecture. Understanding the role of sediment supply, sea level and delta types in shelf margin building and deepwater sand bypass: The Lance-Fox Hills-Lewis system in S. Wyoming.
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Sediment volume partitioning, topset processes and clinoform architecture. Understanding the role of sediment supply, sea level and delta types in shelf margin building and deepwater sand bypass: The Lance-Fox Hills-Lewis system in S. Wyoming.

机译:沉积物的体积分区,最高层处理和倾斜形式的体系结构。了解沉积物供应,海平面和三角洲类型在陆架边缘建设和深水绕道中的作用:怀俄明州的Lance-Fox Hills-Lewis系统。

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摘要

This research focuses on how sediment supply, sea level and delta processes control the partitioning of the sediment budget across and into the topset, slope and basin-floor compartments of deepwater basins. Addressing this problem provides significant insight to characterize source-to-sink systems, improve tectono-stratigraphic models and predict sand bypass to deepwater areas. The research was carried out in the Lance-Fox Hills-Lewis shelf margin formed during the Maastrichtian in the Washakie-Great Divide basin of southern Wyoming. I use a database with approximately 520 wells integrated with outcrops to develop a high resolution, dynamic stratigraphy approach for shelf-margin characterization.; The results emphasize the driving role of sediment supply in rapid shelf-margin building and deepwater sand emplacement. On the study margin, high sediment supply was able to outpace shelf accommodation even at times of relatively high and rising sea level. At these times, shelf margin clinoforms developed a more aggradational architecture with relatively thick and more marine influenced topsets formed in response to basin deepening due to rapid subsidence. The high supply and subsidence are interpreted to have resulted from crustal loading and significant erosion during prominent Laramide thrust-driven source uplift. The high supply caused the formation of highstand shelf-edge deltas with strong wave and river influences. These deltas resulted in extensive coastal sand belts at the shelf margin, and bypass of significant volumes of sand to deepwater areas. In contrast, during times of stable to very low rates of sea level rise, the basin developed more progradational clinoforms with more terrestrial and generally thinner topsets. More of the sediment was funneled to the basin floor and shelf-edge deltas were under strong river and tidal influence. Stable or even falling sea level resulted from decreased subsidence or slight basin uplift, interpreted to have resulted from decreasing uplift, tectonic quiescence or possibly slight tectonic rebound in the basin. The Lewis-Fox Hills margin is considered supply-dominated, a term to denote moderately deep shelf margins ( 1000 m) that prograde at high rates (several tens of km/my) and deliver sand to deepwater areas recurrently and in large volumes even at sea level highstand.
机译:这项研究的重点是沉积物供应,海平面和三角洲过程如何控制沉积物分配在深水盆地的顶部,斜坡和盆地-底层间的分配。解决该问题为表征源-汇系统,改善构造地层模型以及预测深水区域的砂流提供了重要的见识。这项研究是在怀俄明州南部Washakie-Great Divide盆地的马斯特里赫特时期形成的Lance-Fox Hills-Lewis架缘进行的。我使用一个大约有520口井与露头相集成的数据库来开发高分辨率,动态地层学方法来进行层架边缘表征。研究结果强调了沉积物供应在快速架缘建筑物和深水砂土安置中的驱动作用。在研究范围内,即使在海平面相对较高和上升的时候,高沉积物供应也能超过架子的容纳量。在这些时期,陆架边缘斜成岩体形成了一种更加集聚的构造,具有相对较厚且受海底影响较大的顶部,这些顶部是由于快速沉降导致盆地深化而形成的。大量的供应和沉降被认为是由于拉拉米德推力驱动的气源抬升过程中地壳负荷和严重侵蚀所致。高的供应量导致形成了波浪和河流强烈影响的高架陆架三角洲。这些三角洲在陆架边缘形成了广泛的沿海砂带,并且将大量的砂土旁路到深水区域。相反,在海平面上升速率稳定到极低的时期,该盆地发育出更多的渐进型斜脊形,陆基也更多,顶面通常更薄。更多的沉积物被汇入盆地底部,而陆缘三角洲则受到强大的河流和潮汐影响。沉降的降低或盆地的轻微隆起导致海平面稳定甚至下降,这被解释为盆地中的隆起减小,构造静止或可能轻微的构造回弹。 Lewis-Fox Hills边缘被认为是供应主导的,该术语表示中等深度的架子边缘(<1000 m),该边缘以高速率(数十公里/我)前进,并经常向大面积的深水区域输送砂土,甚至在海平面高位。

著录项

  • 作者

    Carvajal, Cristian Rene.;

  • 作者单位

    The University of Texas at Austin.$bDepartment of Geological Sciences.;

  • 授予单位 The University of Texas at Austin.$bDepartment of Geological Sciences.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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