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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Interannual variability of temperature and salinity in shallow water: Long Island Sound, New York
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Interannual variability of temperature and salinity in shallow water: Long Island Sound, New York

机译:浅水温度和盐度的年际变化:纽约长岛峡

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Variabilities of temperature and salinity over Long Island Sound (LIS), New York, are examined using observations from 1991 to 2002. There is a strong seasonal variation in the temperature, and its interannual variability is characterized by a higher variance during winter than summer. The salinity exhibits regular seasonal patterns driven by freshwater input, but there is a long-term change throughout LIS. Anomaly maps of temperature and salinity indicate strong longitudinal gradients increasing in the westward direction. Empirical orthogonal function analyses indicate that the first modes of temperature and salinity anomalies can explain 87% and 89% of the total variances, respectively. The first mode principle components of the temperature and salinity anomaly contain quasi-biennial periodicities. The salinity anomaly also contains an additional signal at a decadal timescale. Seasonal variations in the temperature and salinity are primarily associated with heat flux and freshwater discharge. However, the surface heat flux anomaly only accounts for 17% of the total variance of the time rate change of the temperature anomaly, and the freshwater discharge anomaly explains 25% of the variance of the salinity anomaly. Contrary to traditional paradigm about estuaries, this result shows that forcings other than local processes control the interannual variabilities of the temperature and salinity in LIS, most probably through horizontal exchanges. Also, the significant correlation between the salinity anomaly and the Gulf Stream (GS) position suggests that the interannual variability of salinity in LIS is possibly connected to shelf slope water properties associated with changes in the GS position.
机译:使用1991年至2002年的观测数据,对纽约长岛海峡(LIS)上温度和盐度的变化进行了检查。温度存在强烈的季节性变化,其年际变化的特征是冬季比夏季高。盐度表现出规则的季节性模式,受淡水输入驱动,但整个LIS都有长期变化。温度和盐度的异常图表明,强烈的纵向梯度沿西方向增加。经验正交函数分析表明,温度和盐度异常的第一个模式可以分别解释总方差的87%和89%。温度和盐度异常的第一模式主成分包含准两年周期。盐度异常还包含十年时间尺度的附加信号。温度和盐度的季节性变化主要与热通量和淡水排放有关。然而,地表热通量异常仅占温度异常时间变化率总变化的17%,而淡水排放异常解释了盐度异常变化的25%。与关于河口的传统范式相反,这一结果表明,除了局部过程外,强迫还控制着LIS中温度和盐度的年际变化,这很可能是通过水平交换来实现的。同样,盐度异常与墨西哥湾流(GS)位置之间的显着相关性表明,LIS中盐度的年际变化可能与与GS位置变化相关的架子坡水质有关。

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