首页> 外文期刊>Marine Geology >The Moira Mounds, small cold-water coral mounds in the Porcupine Seabight, NE Atlantic: Part B—Evaluating the impact of sediment dynamics through high-resolution ROV-borne bathymetric mapping
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The Moira Mounds, small cold-water coral mounds in the Porcupine Seabight, NE Atlantic: Part B—Evaluating the impact of sediment dynamics through high-resolution ROV-borne bathymetric mapping

机译:Moira土墩,东北大西洋豪猪海域的小型冷水珊瑚土墩:B部分-通过高分辨率的ROV测深图评估沉积物动力学的影响

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Large cold-water coral carbonate mounds are well-known from several locations along the north-east Atlantic continental margin. With these mound structures, which can measure up to 350 m in height, often smaller mounds are found in the same hydrodynamic settings. This paper illustrates the importance of local sediment dynamics on the morphology and development of small-sized mounds, the Moira Mounds, in the Belgica Mound Province (Porcupine Seabight, SW of Ireland) through ROV-borne microbathymetry and video data. The data set illustrates the sedimentary setting of small mounds in the Porcupine Seabight, gives new insights in the sedimentary processes acting around the small mounds and sheds more light on the interaction between hydrodynamics, sedimentation and erosion, cold-water coral mound initiation and mound growth. The high-resolution bathymetry over the Moira Mounds reveals the presence of several well-delineated zones, each characterized by typical sedimentary structures bearing witness of active sediment transport. The most important ones are: (1) regular E–Wdirected sediment waves, (2) irregular overgrown sediment waves, and (3) furrows and ridges associated with straight-crested sediment waves. The Moira Mounds appear as small-mounded features, subcircular in shape, measuring 30–50 macross and up to ~5 mtall. The evolution of the Moira Mounds can be explained by the interaction between cold-water coral growth and sediment baffling through a positive feedback mechanism. However, it is suggested that the small mound build-ups represent nowadays rather a way of mound formation under stressed conditions due to high sediment fluxes, than an initial phase of extensive mound growth.
机译:大型冷水珊瑚碳酸盐丘在东北大西洋大陆边缘的几个地方都广为人知。对于这些可以测量高达350 m高度的土墩结构,在相同的水动力环境中通常会发现较小的土墩。本文通过ROV传播的微测深法和视频数据,说明了比利时沉积土动力学对比利时土墩省(爱尔兰西南部的Porcupine Seabight)小土墩(Moira土墩)的形态和发育的重要性。该数据集说明了豪猪海域中小丘的沉积环境,为围绕小丘的沉积过程提供了新见解,并为流体力学,沉积和侵蚀,冷水珊瑚丘萌发和土丘生长之间的相互作用提供了更多信息。 Moira丘陵上的高分辨率测深显示出几个轮廓分明的区域的存在,每个区域都有典型的沉积结构特征,这些沉积结构是活跃的沉积物运输的见证。最重要的是:(1)常规的W向沉积物波,(2)不规则的杂草丛生的沉积物波,以及(3)与直顶沉积物波相关的犁沟和山脊。莫伊拉土墩为小丘形特征,形状为亚圆形,尺寸为30–50巨像,最高可达〜5 mtall。 Moira土墩的演化可以通过正反馈机制通过冷水珊瑚生长与沉积物挡板之间的相互作用来解释。然而,有人建议,小丘堆积物如今代表的是由于高泥沙通量而在应力条件下形成丘的方式,而不是广泛的丘生长的初始阶段。

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