首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Practical problems in the application of the sequence stratigraphic method and key surfaces: integrating observations from ancient fluvial–deltaic wedges with Quaternary and modelling studies
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Practical problems in the application of the sequence stratigraphic method and key surfaces: integrating observations from ancient fluvial–deltaic wedges with Quaternary and modelling studies

机译:层序地层方法和关键地层应用中的实际问题:将古代河流-三角洲楔块的观测结果与第四纪和模拟研究相结合

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摘要

Sequence stratigraphy solved the basic problem that genetically related, but different, lithofacies were routinely assigned to different lithostratigraphic units defined by arbitrary vertical and horizontal cutoffs. Stratigraphically important stratal relationships, and especially stratal terminations (for example, lapout) can be observed in seismic data and can be documented in continuous outcrops, such as in the deserts of the Western Interior of North America and in closely spaced well-log data sets. In sparse data sets, interpolation of lapout patterns introduces uncertainty in correlation and designation of sequences and systems tracts and their associated surfaces. Diachroneity of fluvial terrace deposits is documented using detailed facies architectural studies, and calls into question the assumed chronostratigraphic significance of many so-called sequence boundaries identified in the rocks of the Cretaceous Interior Seaway of North America. Sequence boundaries, formed during prolonged sea-level falls, may be less chronostratigraphically significant than transgressive surfaces formed during rapid rises. As a consequence, flooding surfaces are theoretically more significant, and also have greater utility as allostratigraphic boundaries, although they may also exhibit diachroneity. Tectonic unconformities produce differential lithospheric deformation, which results in angular unconformities, although the angle of discordance may be very small. In the Cretaceous Interior Seaway of North America, such unconformities may be expressed by marine erosion in distal basin settings. Regional isochronous bentonites provide useful marker beds that clearly illustrate angular discordance. In the fluvial realm, such tectonic discontinuities may be indicated by changes in palaeocurrent orientations, as well as by provenance changes. Although sequence stratigraphy provides a powerful methodology and theoretical framework for correlating and understanding the evolution of stratigraphic successions in the context of changing accommodation, allostratigraphy remains the only accepted scheme for the formal naming of stratigraphic units based on bounding discontinuities. Whatever type of sequence stratigraphy or allostratigraphy is preferred, in all cases it is key to recognize that sequence stratigraphy, at its heart, is the re-ordering, correlation, and sometimes renaming of stratigraphic units on the basis of bounding discontinuities and their correlative surfaces, as opposed to the arbitrary lithofacies-oriented approach using broad facies zones (for example, ‘shazamlines’) or arbitrary cutoffs, such as is used in traditional lithostratigraphy.
机译:层序地层学解决了一个基本问题,即遗传上相关的岩相被常规地分配给由任意垂直和水平边界定义的不同岩相地层学单元。在地震数据中可以观察到地层学上重要的地层关系,尤其是地层终止点(例如圈闭),并且可以在连续的露头中记录下来,例如在北美西部内陆的沙漠中以及紧密分布的测井数据集中。在稀疏数据集中,叠加模式的插值会在序列和系统域及其关联表面的相关性和指定中引入不确定性。使用详细的相结构研究记录了河流阶地沉积物的历时性,这使人们对北美白垩纪内海道岩石中发现的许多所谓层序界线的假定年代地层学意义提出了质疑。在长时间的海平面下降过程中形成的层序边界在时间地层学意义上可能不如在快速上升过程中形成的海侵面重要。结果,溢流表面在理论上更为重要,并且作为同质地层边界也有更大的用途,尽管它们也可能表现出铁错误。尽管不一致的角度可能很小,但构造不整合会产生微分的岩石圈形变,从而导致角度不整合。在北美白垩纪内海航道中,此类不整合可能由盆地远端地区的海洋侵蚀所表示。区域等时膨润土提供了有用的标记床,可以清楚地说明角度不一致。在河流域,这种构造的不连续性可以通过古流向的变化以及物源的变化来表明。尽管层序地层学提供了一个强大的方法和理论框架,用于在适应性变化的背景下关联和理解地层演替的演变,但同层地层学仍然是唯一基于边界不连续性正式命名地层单元的方案。无论首选哪种层序地层学或同位地层学,在所有情况下,都必须认识到层序地层学的本质是根据边界不连续面及其相关面对地层单元进行重新排序,关联以及有时重命名,这与使用宽相带(例如“ shazamlines”)或任意边界(例如在传统岩性地层学中使用)的面向岩相的任意方法相反。

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