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Wave transformation and wave-driven flow across a steep coral reef

机译:波浪转换和波浪驱动的流动穿过陡峭的珊瑚礁

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摘要

Observations of waves, setup, and wave-driven mean flows were made on a steep coral forereef and its associated lagoonal system on the north shore of Moorea, French Polynesia. Despite the steep and complex geometry of the forereef, and wave amplitudes that are nearly equal to the mean water depth, linear wave theory showed very good agreement with data. Measurements across the reef illustrate the importance of including both wave transport (owing to Stokes drift), as well as the Eulerian mean transport when computing the fluxes over the reef. Finally, the observed setup closely follows the theoretical relationship derived from classic radiation stress theory, although the two parameters that appear in the model-one reflecting wave breaking, the other the effective depth over the reef crest-must be chosen to match theory to data. © 2013 American Meteorological Society.
机译:在法属波利尼西亚莫雷阿岛北岸的一个陡峭的珊瑚前缘及其相关的泻湖系统上,观察到了波浪,设置和波浪驱动的平均水流。尽管前额的几何形状陡峭而复杂,并且波幅几乎等于平均水深,但线性波理论显示出与数据非常吻合的特征。计算礁石上的通量时,对礁石的测量说明了包括波浪传输(由于斯托克斯漂移)和欧拉平均传输在内的重要性。最后,观察到的设置非常接近经典辐射应力理论得出的理论关系,尽管模型中出现的两个参数(一个反射波破裂),但必须选择另一个在礁石顶上的有效深度,以使理论与数据相匹配。 。 ©2013美国气象学会。

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