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Linking pattern to process in reef sediment dynamics at Lady Musgrave Island, southern Great Barrier Reef

机译:大堡礁南部的夫人穆斯格雷夫岛的礁沉积动力学过程与模式的联系

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摘要

Linking surficial sediment patterns in reef environments to the processes that underlie their depositional dynamics enables predictions to be made of how environmental changes will influence reef-associated sedimentary landforms, such as islands and beaches. Geomorphic linkages between sediment deposition patterns and the biophysical processes that drive them are often poorly resolved, particularly at broad landscape scales where tangible statements can be made about structural changes to landforms. The present study applies geospatial techniques to link patterns in reef sediment dynamics at Lady Musgrave Island to the underlying processes driving them. In situ calcification is characterized by developing a high resolution map of the surficial calcium carbonate producing communities inhabiting the reef platform, and associated sediments across the reef flat are analysed for grain size, kurtosis, sorting and threshold bed shear stress to explore transport pathways across the reef flat and lagoon. Wave energy is modelled across the entire reef platform as a potential driver of sediment dynamics, and morphometric linkages are empirically defined between wave energy and grain size. Findings indicate that carbonate sediments are primarily sourced from calcifying communities colonizing the outer periphery of the reef platform and that sediment grain size can be reliably linked to wave energy by virtue of a linear model.
机译:将礁石环境中的表面沉积物模式与其沉积动力学基础联系起来,可以预测环境变化将如何影响与礁石相关的沉积地貌,例如岛屿和海滩。沉积物沉积模式与驱动它们的生物物理过程之间的地貌联系通常很难解决,特别是在宽广的景观尺度上,在那里可以对地貌的结构变化做出切实的陈述。本研究应用地理空间技术将拉格斯·马斯格雷夫岛礁石沉积动力学中的模式与驱动它们的潜在过程联系起来。原位钙化的特征是建立一个高分辨率的图谱,该图谱居住在礁石平台上,在表层形成碳酸钙,并分析礁石滩上的相关沉积物的粒径,峰度,分选和阈值床剪切应力,以探索跨礁的运输途径。礁滩和泻湖。波浪能在整个礁石平台上被建模,作为沉积物动力学的潜在驱动力,并且根据经验定义了波浪能与晶粒尺寸之间的形态学联系。研究结果表明,碳酸盐沉积物主要来自定居在礁石平台外围的钙化群落,并且借助线性模型可以可靠地将沉积物粒径与波能联系起来。

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