Submarine-Channel Element Architecture Demonstrates Facies Heterogeneity in Both Strike and Dip Views: Miocene Modelo Formation, Lake Piru, California, USA

J. Gilbert, Z. Jobe
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Abstract

Submarine channels deliver vast quantities of sediment into ocean basins and the deposits left by these systems host important archives of paleoenvironmental change and are major targets for hydrocarbon production and carbon sequestration. However, similarities between channel subenvironments often make their identification difficult, particularly because some subenvironments are transitional or quite variable. While large channel complexes can often be resolved on seismic data, only outcrop data yields high-resolution detail of their internal heterogeneity. This study integrates 10 measured sections with drone-based photography to document lateral and vertical changes in depositional architecture in a well exposed outcrop of a submarine-channel element in the Miocene Modelo Formation at Lake Piru, California. The channel-element architecture is well constrained by erosional-surface mapping and lateral and vertical facies changes. The 3-dimensionality of the outcrop provides a unique example to demonstrate this heterogeneity in both strike (i.e., cross-sectional view) and dip orientations (i.e., longitudinal view). This channel element has a predictable vertical facies succession of thin sandstones and mudstones, mass transport deposits and amalgamated sandstones. The element is capped by a siliceous mudstones that provide a unique marker of hemipelagic deposition and the presence of an abandonment surface. The amalgamated sand packages are thickest in axial locations and thin over a distance of 500 m in the dip direction, but thin over 150 m in the strike direction toward two locations along the same margin. This thinning is used to constrain the dimensions and sinuosity of the channel element. We interpret a channel-element width of 550 m, a thickness of 29 m and an aspect ratio of 19:1, which is in agreement with previously published ranges of channel-element dimensions. With the documentation of lateral facies heterogeneity in orientations slightly oblique to both strike and dip, this study provides important data for understanding channelized sediment gravity flow dynamics in submarine channels and aids in evaluating reservoir-model volume and connectivity estimates.
美国加利福尼亚州皮鲁湖中新世Modelo组走向和倾角均表现出相非均质性
海底通道将大量沉积物输送到海洋盆地,这些系统留下的沉积物承载着古环境变化的重要档案,是油气生产和碳封存的主要目标。然而,通道子环境之间的相似性通常使它们的识别变得困难,特别是因为一些子环境是过渡的或非常可变的。虽然大型通道复合体通常可以通过地震数据进行解析,但只有露头数据才能提供其内部非均质性的高分辨率细节。该研究将10个测量剖面与无人机摄影相结合,记录了加利福尼亚州皮鲁湖中新世莫德罗组海底水道元素露头的横向和纵向沉积结构变化。河道单元的构型很好地受到侵蚀面填图以及横向和纵向相变化的约束。露头的三维性提供了一个独特的例子,证明了走向(即横断面视图)和倾角(即纵向视图)的非均质性。该水道元素具有可预测的薄砂岩和泥岩、块状搬运沉积和杂化砂岩垂向相序列。该元素被硅质泥岩覆盖,这为半深海沉积和废弃表面的存在提供了独特的标志。混合砂包在轴向位置最厚,在倾角方向500 m范围内厚度较薄,但在走向方向150 m范围内厚度较薄。这种细化用于约束通道元素的尺寸和弯曲度。我们解释了550 m的通道单元宽度,29 m的厚度和19:1的纵横比,这与之前公布的通道单元尺寸范围一致。该研究记录了沿走向和倾斜方向均略有倾斜的横向相非均质性,为理解海底河道化沉积物重力流动力学提供了重要数据,并有助于评价储层模型体积和连通性估计。
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