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Climate Forcing and Salinity Variability in Chesapeake Bay, USA

机译:美国切萨皮克湾的气候强迫和盐度变化

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摘要

Salinity is a critical factor in understanding and predicting physical and biogeochemical processes in the coastal ocean where it varies considerably in time and space. In this paper, we introduce a Chesapeake Bay community implementation of the Regional Ocean Modeling System (ChesROMS) and use it to investigate the interannual variability of salinity in Chesapeake Bay. The ChesROMS implementation was evaluated by quantitatively comparing the model solutions with the observed variations in the Bay for a 15-year period (1991 to 2005). Temperature fields were most consistently well predicted, with a correlation of 0.99 and a root mean square error (RMSE) of 1.5°C for the period, with modeled salinity following closely with a correlation of 0.94 and RMSE of 2.5. Variability of salinity anomalies from climatology based on modeled salinity was examined using empirical orthogonal function analysis, which indicates the salinity distribution in the Bay is principally driven by river forcing. Wind forcing and tidal mixing were also important factors in determining the salinity stratification in the water column, especially during low flow conditions. The fairly strong correlation between river discharge anomaly in this region and the Pacific Decadal Oscillation suggests that the long-term salinity variability in the Bay is affected by large-scale climate patterns. The detailed analyses of the role and importance of different forcing, including river runoff, atmospheric fluxes, and open ocean boundary conditions, are discussed in the context of the observed and modeled interannual variability.
机译:盐度是理解和预测沿海海洋的物理和生物地球化学过程的关键因素,而沿海海洋的时空变化很大。在本文中,我们介绍了切萨皮克湾社区对区域海洋模型系统(ChesROMS)的实施,并使用它来研究切萨皮克湾盐度的年际变化。通过将模型解决方案与在15年内(1991年至2005年)在海湾地区观察到的变化进行定量比较,评估了ChesROMS的实施情况。温度场的预测最一致,该期间的相关性为0.99,均方根误差(RMSE)为1.5°C,建模的盐度紧随其后,相关性为0.94,RMSE为2.5。使用经验正交函数分析检查了基于建模盐度的气候学盐度异常的变异性,这表明海湾中的盐度分布主要由河流强迫驱动。强迫风和潮汐混合也是确定水柱中盐分分层的重要因素,特别是在低流量条件下。该地区河流流量异常与太平洋年代际涛动之间存在相当强的相关性,表明该海湾的长期盐度变化受大规模气候模式的影响。在观测和模拟的年际变化的背景下,讨论了对不同强迫作用(包括河流径流,大气通量和海洋边界条件)的作用和重要性的详细分析。

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