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首页> 外文期刊>Estuarine Coastal and Shelf Science >Mapping tidal current and salinity at a shallow tidal channel junction using the fluvial acoustic tomography system
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Mapping tidal current and salinity at a shallow tidal channel junction using the fluvial acoustic tomography system

机译:使用河流声学断层扫描系统在浅潮气通道结处映射潮流和盐度

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摘要

Applying the fluvial acoustic tomography (FAT) system to shallow tidal junctions for studying the flow division and spatiotemporal difference of velocity and salinity is vital to understand the tidal hydrodynamics in multichannel networks. To the best of our knowledge, this is the first study that monitors continuous 2D current and salinity distributions at a shallow tidal junction using six FATs for -34.4 days. The horizontal distribution and spatiotemporal variation of the currents and salinity were efficiently estimated by the inverse method. These results demonstrate that FAT is a potential tool for the continuous mapping of variable 2D currents and salinity at shallow tidal junctions. The reciprocating patterns of the current and salinity during the spring tide at the junction responded well to the tide. High salinity occurred around high water, whereas salinity was negligible at low water. During flood tides, significant landward currents flowed with the maximum speed of -0.4 m/s, and significant seaward currents with the maximum speed of -0.55 m/s occurred during ebb tides. During neap tides, the salinity pattern began to develop landward from the low water and reached a mature phase around the high water; salinity at the ebb slack remained high. Inverted FAT results indicated a counter-clockwise circulation around the low water during neap tide; some of the currents continuously flowed landward at the downstream of the junction (S4-S5), whereas others continuously flowed to the Tenma River. The behaviors of the currents varied slightly with the tide. The behaviors of the current and salinity during the neap tide mostly resulted from the density-driven current phenomenon. Furthermore, tidal harmonic analyses of the reconstructed currents were performed to clarify the river-tide interactions at the tidal junction. The results reflected the increased tidal wave deformation that occurred with the gradually increasing tidal range and demonstrated the role of the limited river flow on the tidal asymmetry at this tidal junction. This study advances the understanding of river flow dynamics in shallow tidal junction systems.
机译:将河流声学断层扫描(脂肪)系统应用于浅潮汐交叉路口,用于研究流程和施力的流程和时空差异对于了解多通道网络中的潮气动力学至关重要。据我们所知,这是第一次研究,在浅潮汐交界处使用六种脂肪为-34.4天监测连续的2D电流和盐度分布。通过逆方法有效地估计电流和盐度的水平分布和时空变化。这些结果表明,脂肪是浅潮汐结的可变2D电流和盐度连续映射的潜在工具。在结的春季潮汐期间的电流和盐度的往复式响应于潮汐良好。高水平发生高盐度,而低水平盐度可忽略不计。在洪水潮汐期间,在退潮期间,以最大速度为-0.4米/秒的最大速度流动的落地电流和最大速度的大电流发生在-0.55 m / s期间。在NeAP潮汐期间,盐度模式开始从低水水开发着陆,并达到高水位的成熟阶段;呼吸困难的盐度仍然很高。倒置脂肪结果在NEAP潮汐期间在低水周围表示逆时针循环;一些电流在结的下游在结的下游连续流动(S4-S5),而其他电流则持续流入Tenma河流。电流的行为与潮流略有不同。 NeAP潮期间的电流和盐度的行为主要是由密度驱动的电流现象引起的。此外,进行了重建电流的潮谐波分析,以阐明潮汐结的河流相互作用。结果反映了潮汐范围逐渐增加的潮汐波变形的增加,并证明了有限河流在该潮汐交界处的潮汐不对称上的作用。本研究进展了浅潮汐交界系统中河流动力学的理解。

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