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Modeling tides and their influence on the circulation in Prince William Sound, Alaska

机译:模拟潮汐及其对阿拉斯加威廉王子湾环流的影响

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In the process of developing a real-time data-assimilating coastal ocean forecasting system for Prince William Sound, Alaska, tidal signal was added to a three-domain nested model for the region. The model, which is configured from the Regional Ocean Modeling System (ROMS), has 40 levels in the vertical direction and horizontal resolutions of 10.6. km, 3.6. km and 1.2. km for its three nested domains, respectively. In the present research, the ROMS tidal solution was validated using data from coastal tide gauges, satellite altimeters, high-frequency coastal radars, and Acoustic Doppler Current Profiler (ADCP) current surveys. The error of barotropic tides, as measured by the total root mean square discrepancy of eight major tidal constituents is 5.3. cm, or 5.6% of the tidal sea surface height variability in the open ocean. Along the coastal region, the total discrepancy is 9.6. cm, or 8.2% of the tidal sea surface height variability. Model tidal currents agree reasonably well with the observations. The influence of tides on the circulation was also investigated using numerical experiments. Besides tides, other types of forcing fields (heat flux, wind stress, evaporation minus precipitation, and freshwater discharge) were also included in the model. Our results indicate that tides play a significant role in shaping the mean circulation of the region. For the summer months, the tidal residual circulation tends to generate a cyclonic gyre in the central Sound. The net transport into the Sound through Hinchinbrook Entrance is reduced. Tides also increase the mixed layer depth in the Sound, especially during the winter months.
机译:在为阿拉斯加威廉王子湾开发实时数据辅助沿海海洋预报系统的过程中,将潮汐信号添加到了该地区的三域嵌套模型中。该模型由区域海洋建模系统(ROMS)配置,在垂直方向上具有40个级别,水平分辨率为10.6。公里,3.6。公里和1.2。 km分别代表其三个嵌套域。在本研究中,使用来自沿海潮汐仪,卫星高度计,高频沿海雷达和声学多普勒电流剖面仪(ADCP)当前测量的数据验证了ROMS潮汐解决方案。由八种主要潮汐成分的总均方根差衡量,正压潮汐的误差为5.3。厘米,或公海中潮汐海面高度变化的5.6%。沿海地区的总差异为9.6。厘米,即潮汐海面高度变化的8.2%。模型潮流与观测值相当吻合。还使用数值实验研究了潮汐对环流的影响。除潮汐外,模型中还包括其他类型的强迫场(热通量,风应力,蒸发减去降水和淡水排放)。我们的结果表明,潮汐在塑造该地区的平均环流中起着重要作用。在夏季,潮汐残留循环趋向于在中部海峡产生气旋回旋。通过欣钦布鲁克入口进入声音的净运输量减少了。潮汐还会增加声音中的混合层深度,尤其是在冬季。

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