首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Three-dimensional to two-dimensional cross-strata transition in the lower Pleistocene Catanzaro tidal strait transgressive succession (southern Italy)
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Three-dimensional to two-dimensional cross-strata transition in the lower Pleistocene Catanzaro tidal strait transgressive succession (southern Italy)

机译:下更新世卡坦扎罗潮汐海峡海进海演替中的三维到二维跨地层过渡(意大利南部)

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摘要

Sandstone tidal cross-strata are the predominant sedimentary feature of strait-fill stratigraphic successions. However, although widely described in numerous studies, tidal strait-fill two-dimensional and three-dimensional cross-strata have rarely been reported to occur in discrete intervals which are laterally adjacent or vertically stacked, and the meaning of this stratigraphic architecture has not yet been fully investigated. Understanding of the processes responsible for changes in the internal features of modern and ancient tidal bedforms is essential in order to predict lateral and vertical heterogeneities in analogous reservoir strata. This facies-based study aims to interpret the three-dimensional to two-dimensional cross-strata transition observed in the lower Pleistocene mixed siliciclastic/bioclastic sandstone filling the Catanzaro Strait, in southern Italy, during a continuous phase of tectonically driven marine transgression. Tidal cross-strata disappear in the uppermost interval of the studied succession, where mudstone strata prevail. This stratigraphic trend is interpreted as the evidence of an important change in the tidal strait hydrodynamics due to a phase of relative sea-level rise. At the beginning of the transgression, three-dimensional tidal dunes migrated throughout the ca 3 to 4km wide and ca 30km long, WNW-ESE-oriented Catanzaro Strait, due to strong tidal currents amplified through the seaway and flowing in semi-diurnal phase opposition. As the intermediate phase of transgression enlarged the seaway width, the tidal current strength decreased as tidal water exchange occurred over a larger cross-sectional area. The progressive reduction of the bed shear stress modified three-dimensional tidal dunes into an extensive two-dimensional bedform field. At the end of the transgression, the further widening of the Catanzaro Strait into a ca 10 to 12km wide marine passageway changed the tidally dominated strait into a non-tidal open shelf. The results of this research suggest the presence of a critical cross-sectional area' in the narrowest strait-centre zone which controls the activation and deactivation of tidal current amplification along a marine seaway.
机译:砂岩潮汐交叉地层是海峡填充地层演替的主要沉积特征。但是,尽管在许多研究中得到了广泛描述,但很少报道潮汐海峡填充的二维和三维交叉地层以横向相邻或垂直堆叠的离散间隔出现,并且这种地层构造的含义尚未经过充分调查。为了预测类似储层的横向和垂直非均质性,了解现代和古代潮汐床形内部特征变化的过程至关重要。这项基于相的研究旨在解释在构造驱动的海侵连续阶段中,在意大利南部卡坦扎罗海峡填充的下更新世混合硅质碎屑/生物碎屑混合砂岩中观察到的三维到二维横断面过渡。潮间带地层在所研究的演替过程的最高层消失,其中以泥岩地层为主。这种地层趋势被解释为由于相对海平面上升阶段导致的海峡水动力变化的重要证据。在海侵开始时,由于强烈的潮流潮流通过海道放大并以半日相逆流流动,三维潮汐沙丘在WNW-ESE导向的卡坦扎罗海峡宽约3至4公里,长约30公里。 。随着海侵的中间阶段扩大了海道宽度,随着潮流换水在更大的横截面上发生,潮流强度降低。床剪切应力的逐渐减小将三维潮汐沙丘转变为二维二维床形场。在海侵结束时,卡坦扎罗海峡进一步扩宽为大约10至12公里的海洋通道,将潮汐主导的海峡变成了非潮汐开放式海峡。这项研究的结果表明,在最狭窄的海峡中心区存在一个临界横截面区域,该区域控制着沿海洋航道的潮流放大作用的激活和失活。

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