首页> 外文期刊>Sedimentary geology >Sedimentary fabrics of the macrotidal, mud-dominated, inner estuary to fluvio-tidal transition zone, Petitcodiac River estuary, New Brunswick, Canada
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Sedimentary fabrics of the macrotidal, mud-dominated, inner estuary to fluvio-tidal transition zone, Petitcodiac River estuary, New Brunswick, Canada

机译:加拿大新不伦瑞克省Petitcodiac河口大潮河段,以泥浆为主的内河口至潮潮过渡区的沉积物

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The study provides a detailed description of mud-dominated sedimentary fabrics and their application for the rock record within the inner estuary to the fluvial zone of the Petitcodiac River estuary, New Brunswick, Canada. Sedimentological characteristics and fades distributions of the clay- and silt-rich deposits are reported. The inner estuary is characterized by thick accumulations of interbedded silt and silty clay on intertidal banks that flank the tidally influenced channel. The most common sedimentary structures observed are parallel and wavy lamination, small-scale soft-sediment deformation with microfaults, and clay and silt current ripples. The tidal channel contains sandy silt and clayey silt with planar lamination, massive and convolute bedding. The fluvio-tidal transition zone is represented by interbedded trough cross-stratified sand and gravel beds with planar laminated to massive silty mud. The riverine, non-tidal reach of the estuary is characterized by massive, planar tabular and trough cross-stratified gravel-bed deposits. The absence of bioturbation within the inner estuary to the fluvio-tidal transition zone can be explained by the following factors: low water salinities (0-5 ppt), amplified tide and current speeds, and high concentrations of flocculated material in the water body. Notably, downstream in the middle and outer estuary, bioturbation is seasonally pervasive: in those locales the sedimentary conditions are similar, but salinity is higher. In this study, the sedimentological (i.e., grain size, bedding characters, sedimentary structures) differences between the tidal estuary and the fluvial setting are substantial, and those changes occur over only a few hundred meters. This suggests that the widely used concept of an extensive fluvio-tidal transition zone and its depositional character may not be a geographically significant component of fluvial or estuary deposits, which can go unnoticed in the study of the ancient rocks. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究详细描述了以泥浆为主的沉积织物及其在加拿大新不伦瑞克Petitcodiac河口河床内河段至河床带内的岩石记录中的应用。据报道富含粘土和粉砂的沉积物的沉积学特征和褪色分布。内河口的特征是潮汐河岸两侧潮间带河床上淤积了粉砂和粉质粘土。观察到的最常见的沉积结构是平行和波浪状的叠层,具有微断层的小规模软沉积物变形以及粘土和粉沙电流波动。潮汐河道包含砂质粉砂和粘土质粉砂,具有平面层压,大量而回旋的垫层。潮潮过渡带的特征是夹层低谷交叉分层的沙子和砾石床,其平面层压成块状粉质泥土。河口的非潮汐河段的特征是块状平坦的平板状和槽状交叉分层砾石床沉积物。潮汐过渡带内河口内没有生物扰动的原因可以归结为以下因素:低盐度(0-5 ppt),潮汐和潮流速度增大以及水体中的絮凝物质浓度高。值得注意的是,在中部和外河口的下游,生物扰动在季节上普遍存在:在这些地区,沉积条件相似,但盐度较高。在这项研究中,潮汐河口与河流环境之间的沉积学(即粒度,层理特征,沉积结构)差异很大,而这些变化仅发生在几百米处。这表明广泛使用的潮汐-潮汐过渡带概念及其沉积特征可能不是河流或河口沉积物的地理重要组成部分,在古代岩石的研究中可能没有注意到这一点。 (C)2016 Elsevier B.V.保留所有权利。

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