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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Application of a nested-grid ocean circulation model to Lunenburg Bay of Nova Scotia: Verification against observations
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Application of a nested-grid ocean circulation model to Lunenburg Bay of Nova Scotia: Verification against observations

机译:嵌套网格海洋环流模型在新斯科舍省伦嫩堡湾的应用:对观测资料的验证

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摘要

A nested-grid ocean circulation modeling system is used to study the response of Lunenburg Bay in Nova Scotia, Canada, to local wind-forcing, tides, remotely generated waves, and buoyancy forcing in the summer and fall of 2003. Quantitative comparisons between observations and model results demonstrate that the modeling system reproduces reasonably well the observed sea level, temperature, salinity, and currents in the bay. Numerical results reveal that the spatial and temporal variability of temperature and salinity in the bay during the study period is mainly forced by the local wind stress and surface heat/freshwater fluxes, with some contribution from tidal circulation. In particular, the local heat balance on the monthly timescale is dominated by cooling due to vertical advection and warming due to horizontal advection and net surface heat flux, while high-frequency variations (timescales of 1–30 days) are mainly associated with vertical advection, i.e., wind-induced upwelling and downwelling. There is also a strong baroclinic throughflow over the deep water region outside Lunenburg Bay that is strongly influenced by wind-forcing. The vertically integrated momentum balance analysis indicates a modified geostrophic balance on the monthly timescale and longer, and is dominated by the pressure term and wind minus bottom stress in the high-frequency band.
机译:嵌套网格海洋环流建模系统用于研究加拿大新斯科舍省的伦嫩堡湾对2003年夏季和秋季的局部强迫,潮汐,远程产生的波浪和浮力的响应。观测值之间的定量比较模型结果表明,该建模系统可以很好地再现海湾中观测到的海平面,温度,盐度和洋流。数值结果表明,研究期间海湾温度和盐度的时空变化主要受局部风应力和地表热/淡水通量的影响,潮汐环流也有一定作用。特别是,每月时间尺度上的局部热量平衡主要由垂直对流引起的冷却和水平对流和净表面热通量引起的变暖所致,而高频变化(1–30天的时间尺度)主要与垂直对流有关,即风引起的上升流和下降流。伦嫩堡湾外的深水区域也有强烈的斜斜通流,这受到强迫作用的强烈影响。垂直积分动量平衡分析表明,在每月的时间尺度上和更长的时间里,地转营养平衡发生了变化,并且主要受压力项和风减去高频带中的底部应力的影响。

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