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Assessment of the Relationship between Coastal Morphometry, Bottom Dynamic Conditions and the Critical Depth

机译:评估海岸形态,海底动力条件和临界深度之间的关系

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Coastal sediment can be classified by functional bottom type, depending on whether cohesive fine material is eroded (E), transported (T) or deposited/accumulated (A) there. The assessment of such bottom dynamic conditions is useful in many ways, including as a fundament for structuring mass balance models. In this paper more than 200 recently investigated Swedish coastal areas were analyzed using geographic information systems (GIS). Statistical relationships between morphometry, the average proportion of A-areas (BA) and the average critical depth (DTA), which separates ET-areas from A-areas, were investigated. Many morphometric parameters showed significant correlation with both BA and DTA and multiple regression models were obtained that could explain much of the variation in these parameters. Parameters describing sheltering effects from islands, mean depth and mean slope were important in this context. Large differences were found in empirical BA-values from two different sources. Furthermore, a new empirical dataset was presented for 209 Swedish coastal areas.
机译:可以根据功能性底部类型对沿海沉积物进行分类,具体取决于粘性细料是被侵蚀(E),被运输(T)还是被沉积/积累(A)。对这种底部动态条件的评估在许多方面都是有用的,包括作为构造质量平衡模型的基础。本文使用地理信息系统(GIS)对200多个最近调查的瑞典沿海地区进行了分析。研究了形态学,A区域的平均比例(BA)和将ET区域与A区域分开的平均临界深度(DTA)之间的统计关系。许多形态计量学参数显示与BA和DTA都显着相关,并且获得了多个回归模型,这些模型可以解释这些参数中的许多变化。在此背景下,描述来自岛屿的遮盖作用,平均深度和平均坡度的参数很重要。发现来自两个不同来源的经验BA值差异很大。此外,为209个瑞典沿海地区提供了一个新的经验数据集。

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