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Sub-kilometer length scales in coastal waters

机译:沿海水域的亚千米长度刻度

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摘要

Patchiness or spatial variability is ubiquitous in marine systems. With increasing anthropogenic impacts to coastal resources and coastal systems being disproportionately large contributors to ocean productivity, identifying the spatial scales of this patchiness, particularly in coastal waters, is of critical importance to understand coastal ecosystem dynamics. The current work focuses on fine scale structure in three coastal regions. More specifically, we utilize variogram analyses to identify sub-kilometer scales of variability in biological and physical parameters measured by an autonomous underwater vehicle (AUV) in the Mid-Atlantic Bight, Monterey Bay, and in San Luis Obispo Bay between 2001 and 2004. Critical scales of variability in density, turbidity, fluorescence, and bioluminescence are examined as a function of depth and distance offshore. Furthermore, the effects of undersampling are assessed using predictive error analysis. Results indicate the presence of scales of variability ranging from 10s to 100s of meters and provide valuable insight for sampling design and resource allocation for future studies. Published by Elsevier Ltd.
机译:斑驳或空间变化在海洋系统中无处不在。随着人为因素对沿海资源和沿海系统的影响日益增加,海洋生产力成比例地增加,确定这种斑块的空间尺度,特别是在沿海水域,对于理解沿海生态系统动态至关重要。目前的工作集中在三个沿海地区的精细规模结构上。更具体地说,我们利用变异函数分析来确定2001年至2004年之间在蒙特利湾,大西洋中部湾和圣路易斯·奥比斯波湾的自动水下航行器(AUV)测量的生物和物理参数变化的亚千米尺度。密度,浊度,荧光和生物发光的可变性的关键尺度作为离岸深度和距离的函数进行了检验。此外,使用预测误差分析评估欠采样的影响。结果表明存在可变范围为10s至100s的米,并为样本设计和资源分配提供了有价值的见解,以供将来研究之用。由Elsevier Ltd.发布

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