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Modelling the long-term morphological evolution of the Clyde Estuary, Scotland, UK

机译:为英国苏格兰克莱德河口的长期形态演化建模

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The long-term morphodynamic response of the Clyde Estuary to any possible change in environmental forcing associated with global climate change and human interference is examined here using a model based on a systems approach. The model, which uses Boolean Algebra as its formal mathematical language, provides a qualitative insight into the long term morphodynamic behaviour of the estuarine system, at this level without the need for detailed and quantitative hydrodynamic and morphodynamic process knowledge or extensive data resources. The model predictions suggest that the long-term morphological changes in the Clyde Estuary largely depend on the fluvial flow of the River Clyde. Salt marshes in the upper reaches of the estuary were found to be the most vulnerable morphological feature of the estuary. In the event of increased river flow in the future, a likely situation according to climate change scenarios, saltmarshes will deplete or disappear altogether, irrespective of the sediment influx into the estuary. Changes to waves and tides will also contribute to the evolution by taking the estuary through significantly different intermediate morphological states whilst evolving towards a stable end state.
机译:本文使用基于系统方法的模型来检验克莱德河口对与全球气候变化和人为干扰相关的环境强迫的任何可能变化的长期形态动力学响应。该模型使用布尔代数作为形式数学语言,可在此级别上定性地了解河口系统的长期形态动力学行为,而无需详细和定量的流体动力学和形态动力学过程知识或大量数据资源。模型预测表明,克莱德河口的长期形态变化在很大程度上取决于克莱德河的河流流量。河口上游的盐沼被认为是河口最脆弱的形态特征。如果将来的河流流量增加,根据气候变化的情况,盐沼可能会全部枯竭或消失,而与沉积物流入河口无关。通过使河口进入明显不同的中间形态状态,同时向稳定的最终状态发展,波和潮汐的变化也将有助于进化。

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