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Patterns and drivers of daily bed-level dynamics on two tidal flats with contrasting wave exposure

机译:波浪形对比下两个潮滩日床动态的模式和驱动因素

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摘要

Short-term bed-level dynamics has been identified as one of the main factors affecting biota establishment or retreat on tidal flats. However, due to a lack of proper instruments and intensive labour involved, the pattern and drivers of daily bed-level dynamics are largely unexplored in a spatiotemporal context. In this study, 12 newly-developed automatic bed-level sensors were deployed for nearly 15 months on two tidal flats with contrasting wave exposure, proving an unique dataset of daily bed-level changes and hydrodynamic forcing. By analysing the data, we show that (1) a general steepening trend exists on both tidal flats, even with contrasting wave exposure and different bed sediment grain size; (2) daily morphodynamics level increases towards the sea; (3) tidal forcing sets the general morphological evolution pattern at both sites; (4) wave forcing induces short-term bed-level fluctuations at the wave-exposed site, but similar effect is not seen at the sheltered site with smaller waves; (5) storms provoke aggravated erosion, but the impact is conditioned by tidal levels. This study provides insights in the pattern and drivers of daily intertidal bed-level dynamics, thereby setting a template for future high-resolution field monitoring programmes and inviting in-depth morphodynamic modelling for improved understanding and predictive capability.
机译:短期床位动力学已被认为是影响潮间带生物群建立或后退的主要因素之一。但是,由于缺乏适当的工具和大量的劳动,在时空环境下,人们每天对床层动力学的模式和驱动因素仍未开发。在这项研究中,将12个新开发的自动床位传感器部署在两个潮汐平地上近15个月,并进行了对比波曝光,证明了每日床位变化和水动力强迫的独特数据集。通过分析数据,我们发现:(1)两个潮滩都存在普遍的陡峭趋势,即使有不同的波浪照射和不同的床底沉积物粒径也是如此; (2)每天向海的形态动力学水平增加; (3)潮汐强迫设定了两个地点的总体形态演化模式; (4)波浪强迫在暴露于波浪的地点引起了短期的床面波动,但是在较小波浪的掩蔽处没有看到类似的效果; (5)暴风雨加剧了侵蚀,但影响取决于潮汐水平。这项研究提供了有关每日潮间带水位动力学模式和驱动力的见解,从而为将来的高分辨率野外监测程序设置了模板,并邀请了深入的形态动力学建模来提高理解和预测能力。

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