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Thermal observations of drainage from a mud flat

机译:泥滩排水的热观测

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摘要

Incised channels on tidal flats create a complex flow network conveying water on and off the flat during the tidal cycle. In situ and remotely sensed field observations of water drainage and temperature in a secondary channel on a muddy tidal flat in Willapa Bay, Washington (USA) are presented and a novel technique, employing infrared imagery, is used to estimate surface velocities when the water depth in the channel becomes too shallow for ADCP measurements, i.e., less than 10 cm. Two distinct dynamic regimes are apparent in the resulting observations: ebb-tidal flow and the post-ebb discharge period. Ebb tide velocities result from the surface slope associated with the receding tidal elevation whereas the post-ebb discharge continues throughout the low tide period and obeys uniform open-channel flow dynamics. Volume transport calculations and a model of post-ebb runoff temperatures support the hypothesis that remnant water on the flats is the source of the post-ebb discharge.
机译:潮滩上的切槽形成了一个复杂的流动网络,在潮汐周期中将水输送到水上和水上。介绍了在华盛顿(美国)威拉帕湾(Willapa Bay)的一个潮汐滩上次通道中排水和温度的原位和遥感实地观测,并提出了一种利用红外图像的新技术来估算水深时的表面速度对于ADCP测量而言,通道中的通道变得太浅,即小于10 cm。在所得的观测结果中,有两种明显的动态机制:潮汐流和退潮后排出期。潮汐速度是由潮汐后退相关的表面坡度引起的,而潮汐后的排放在整个低潮期持续,并遵循统一的明渠流动力学。体积输运计算和起潮后径流温度模型支持以下假设:单位上的残留水是起潮后排放的源头。

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