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The Influence of tidal straining and wind on suspended matter and phytoplankton dynamics in the Rhine outflow region

机译:潮汐应变和风对莱茵河流域悬浮物和浮游植物动态的影响

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摘要

To study the short-term effects of the physical environment on phytoplankton dynamics in the Rhine out¯ow area, changes in salinity, beam attenuation and phytoplankton distribution were observed in a series of high resolution measurements. During periods of weak wind and neap tide (low turbulent kinetic energy, TKE), the system was dominated by tidal straining that resulted in semi-diurnal oscillations in stratification. Phytoplankton was kept in resuspension at about 10±15m depth. Subsequent strong wind and tidal mixing (high TKE) broke down strati®cation, enhanced horizontal gradients and suppressed estuarine transport. It is hypothesised that during low TKE, tidal straining and frontal circulation determined the phytoplankton distribution; and at high TKE, input by wind and tide enhanced conditions for growth, which resulted in a bloom in the surface layer of the Rhine Plume, where light and nutrients were available.
机译:为了研究物理环境对莱茵河下游地区浮游植物动力学的短期影响,在一系列高分辨率测量中观察到了盐度,射线束衰减和浮游植物分布的变化。在弱风和潮汐(低湍动能,TKE)期间,该系统以潮汐应变为主,导致分层的半日振荡。浮游植物重悬于约10±15m的深度。随后的强风和潮气混合(高TKE)破坏了地层,增加了水平梯度并抑制了河口的运输。假设在低TKE期间,潮汐应变和额叶环流决定了浮游植物的分布。在高TKE时,风和潮汐的输入增加了生长条件,导致莱茵河羽流表层出现水华,那里有光和养分。

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