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Steady-state solutions for subsurface chlorophyll maximum in stratified water columns with a bell-shaped vertical profile of chlorophyll

机译:钟形叶绿素钟形分层水柱中地下叶绿素最大值的稳态解

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摘要

A bell-shaped vertical profile of chlorophyll a (Chl a) concentration, conventionally referred to as a subsurface chlorophyll maximum (SCM) phenomenon, has frequently been observed in stratified oceans and lakes. This profile is assumed to be a general Gaussian distribution in this study. By substituting the general Gaussian function into ecosystem dynamical equations, the steady-state solutions for SCM characteristics (i.e., SCM layer depth, thickness, and intensity) in various scenarios are derived. These solutions indicate that (1) the maximum concentration of Chl a occurs at or below the depth of maximum growth rates of phytoplankton located at the transition from nutrient limitation to light limitation, and the depth of SCM layer deepens logarithmically with an increase in surface light intensity; (2) thickness and intensity of the SCM layer are mainly affected by nutrient supply, but independent of surface light intensity; and (3) intensity of the SCM layer is proportional to the diffusive flux of nutrients from below, which becomes stronger as a result of this layer being shrunk by a higher light attenuation coefficient or a larger sinking velocity of phytoplankton. In addition, the limitation and potential application of the analytical solutions are also presented.
机译:在分层的海洋和湖泊中经常观察到叶绿素a(Chl a)浓度的钟形垂直轮廓,通常称为地下叶绿素最大值(SCM)现象。在本研究中,假定此轮廓为高斯分布。通过将一般的高斯函数代入生态系统动力学方程,可以得出各种情况下SCM特性(即SCM层深度,厚度和强度)的稳态解。这些解决方案表明(1)Chla的最大浓度出现在从营养限度向光限度过渡的浮游植物最大生长速度的深度处或以下,并且随着表面光的增加,SCM层的深度对数加深强度; (2)SCM层的厚度和强度主要受养分供应的影响,但与表面光强无关。 (3)SCM层的强度与来自下方的营养物的扩散通量成正比,这是由于该层由于较高的光衰减系数或较大的浮游植物下沉速度而收缩所致。此外,还介绍了分析解决方案的局限性和潜在应用。

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