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Response of GPS-Tracked Drifters to Wind and Water Currents in a Tidal Estuary

机译:GPS跟踪的漂流对潮汐口中风和水流的响应

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摘要

Lagrangian field data in tidal shallow waters are rare, but valuable for the understanding of the spatiotemporal structure of flow and particle transport. The response of drifters to the wind and water flow in tidal shallow water was examined using correlation, spectral, and coherence analyses. Under moderate wind conditions (0-4 m /s), floating drifter motions in bounded sheltered water are affected by wind through low-frequency induced wind current rather than direct wind drag, when only a small portion of the drifter is unsubmerged. The field validation of both high- and low-resolution drifters with surface measured velocity from a fixed acoustic Doppler current profiler is good in the streamwise direction. The correlation between the drifter and fixed instrument velocities is low in the cross-stream direction due to strong spatial variability of the flow field. The evaluation shows that drifters are applicable to studying the flow dynamics of tidal water bodies in relation to small-scale processes.
机译:潮汐浅水区中的拉格朗日场数据很少,但对于了解流量和粒子传输的时空结构很有用。使用相关性,频谱和相干分析检查了潮汐浅水中漂流者对风和水流的响应。在适度的风力条件下(0-4 m / s),当只有一小部分未被淹没时,通过低频感应风流而不是直接的风阻会影响有遮蔽的水中漂浮的漂浮物运动。从固定的声学多普勒电流剖面仪测得的表面速度测得的高分辨力和低分辨力漂移器的现场验证在流向方面是很好的。由于流场的空间变化很大,因此在横流方向上,漂移器和固定仪器速度之间的相关性较低。评价表明,漂流器适用于研究与小规模过程有关的潮汐水体的流动动力学。

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