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Initial growth of phytoplankton in turbid estuaries: A simple model

机译:混浊河口浮游植物的初始生长:简单模型

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摘要

An idealised model is presented and analysed to gain more fundamental understanding about the dynamics of phytoplankton blooms in well-mixed, suspended sediment dominated estuaries. The model describes the behaviour of subtidal currents, suspended sediments, nutrients and phytoplankton in a channel geometry. The initial growth of phytoplankton and its spatial distribution is calculated by solving an eigenvalue problem. The growth rates depend on the position in the estuary due to along-estuary variations in nutrient concentration and suspended sediment concentration. The model yields an insight into how the onset of blooms in the model depends on physical and biological processes (turbulent mixing, fresh water discharge, light attenuation, imposed nutrient concentrations at the river and sea side). In particular, the model demonstrates that the joint action of spatial variations in turbidity and in nutrients causes the maximum phytoplankton concentrations to occur seaward of the estuarine turbidity maximum. (c) 2007 Elsevier Ltd. All rights reserved.
机译:提出并分析了一个理想化的模型,以获得对充分混合,悬浮的以沉积物为主的河口中浮游植物水华动态的更基本的了解。该模型描述了潮汐流,悬浮沉积物,养分和浮游植物在航道几何中的行为。浮游植物的初始生长及其空间分布是通过求解特征值问题来计算的。由于营养物浓度和悬浮沉积物浓度沿河口变化,增长率取决于河口中的位置。该模型可以深入了解模型中水华的发生如何取决于物理和生物过程(湍流混合,淡水排放,光衰减,在河和海侧施加的营养物浓度)。特别是,该模型表明,浊度和养分中空间变化的共同作用导致最大的浮游植物浓度发生在河口浊度最大值的靠海处。 (c)2007 Elsevier Ltd.保留所有权利。

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