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Nutrient dynamics and phytoplankton development along an estuary-coastal zone continuum: A model study

机译:河口-沿海带连续体的营养动态和浮游植物发育:一个模型研究

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This study presents a first attempt to quantify the biogeochemical transformations and fluxes of carbon and nutrients along the entire mixing zone of the shallow, tidally-dominated estuary-coastal zone continuum of the Scheldt (Belgium/The Netherlands). A fully transient, two-dimensional, nested-grid hydrodynamic model of the continuum is coupled to the biogeochemical MIRO model for the coastal zone and the CONTRASTE model for the estuary. Transient model simulations are performed with a high spatial (80-750 m) and temporal (30 min) resolution over a period of one year (January-December 1995). The high temporal resolution allows including the short-term variability triggered by the tides, the freshwater discharge and the wind stress. System scale simulations provide time series of nutrient transformations and fluxes along the entire estuary-coastal zone continuum, as well as highly resolved nutrient inventories for the estuarine and the coastal zone sub-domains. Simulation results reveal that the balance between highly variable estuarine nutrient inputs and physical constrains set by the unsteady residual transport field exert an important control on the magnitude and succession of phytoplankton blooms and the ecosystem structure in the coastal zone. In addition, they suggest that the poorly surveyed estuarine-coastal zone interface plays a central role in the continuum. In this dynamic area, marked spatial concentration gradients develop and episodically lead to a reversal of material fluxes from the coast into the estuary. During distinct episodes of the productive period, euryhaline coastal diatoms intrude far upstream into the saline estuary. This intrusion reduces the estuarine nutrient concentrations and export fluxes, thereby reinforcing the nutrient limitation in the coastal area. As a consequence, the estuarine filter does not operate independently from the processes in the coastal zone. The dynamic interplay between the two ecosystems and the intense process rates operating at their transition, therefore, strongly supports our continuum approach.
机译:这项研究是首次尝试量化Scheldt(比利时/荷兰)的浅滩,潮汐占主导的河口-沿海带连续体整个混合区的生物地球化学转化以及碳和养分通量。连续体的完全瞬态二维嵌套网格水动力模型与沿海地区的生物地球化学MIRO模型和河口的CONTRASTE模型耦合。在一年的时间内(1995年1月至12月)以高空间分辨率(80-750 m)和时间分辨率(30 min)进行了瞬态模型仿真。较高的时间分辨率允许包括潮汐,淡水排放和风应力触发的短期变化。系统规模模拟提供了整个河口-沿海带连续体的养分转化和通量的时间序列,以及河口和沿海带子域的高度解析的养分清单。模拟结果表明,河口养分投入的高度可变与残余不稳定运移场所设定的物理约束之间的平衡,对沿海地区浮游植物水华的大小和演替以及生态系统结构具有重要的控制作用。此外,他们认为,调查不充分的河口-沿海地带界面在连续体中起着核心作用。在这个动态区域中,明显的空间浓度梯度逐渐形成,并导致从海岸到河口的物质通量逆转。在生产期的不同时期,欧亚滨海硅藻侵入上游到盐水河口。这种入侵降低了河口养分浓度和出口通量,从而加强了沿海地区养分的限制。结果,河口过滤器不能独立于沿海地区的过程而运行。因此,这两个生态系统之间的动态相互作用以及在过渡过程中运行的剧烈过程速率,强烈支持了我们的连续性方法。

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