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Variations of mixed layer properties in the Norwegian Sea for the period 1948-1999

机译:1948-1999年挪威海混合层性质的变化

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The mixed layer of the ocean and the processes therein affect the ocean's biological production, the exchanges with the atmosphere, and the water modification processes important in a climate change perspective. To provide a better understanding of the variability in this system, this paper presents time series of the mixed layer properties depth, temperature, salinity, and oxygen from Ocean Weather Station M (OWSM; 66° N,2° E) as well as spatial climatologies for the Norwegian Sea. The importance of underlying mechanisms such as atmospheric fluxes, advective signals, and dynamic control of isopycnal surfaces are addressed. In the region around OWSM in the Norwegian Atlantic Current (NwAC) the mixed layer depth varies between ~20 m in summer and ~300 m in winter. The depth of the wintertime mixing here is ultimately restrained by the interface between the Atlantic Water (AW) and the underlying water mass, and in general, the whole column of AW is found to be mixed during winter. In the Lofoten Basin the mean wintertime mixed layer reaches a depth of ~600 m, while the AW fills the basin to a mean depth of ~800 m. The temperature of the mixed layer at OWSM in general varies between 12 ℃ in summer and 6 ℃ in winter. Atmospheric heating controls the summer temperatures while the winter temperatures are governed by the advection of heat in the NwAC. Episodic lateral Ekman transports of coastal water facilitated by the shallow summer mixed layer is found important for the seasonal salinity cycle and freshening of the northward flowing AW. Atmospheric freshwater fluxes have no significant influence on the salinity of the AW in the area. Oxygen shows a clear annual cycle with highest values in May-June and lowest in August-September. Interannual variability of mixed layer oxygen does not appear to be linked to variations in any of the physical properties of the mixed layer.
机译:海洋的混合层及其中的过程影响海洋的生物生产,与大气的交换以及对气候变化有重要意义的水质改良过程。为了更好地了解该系统的可变性,本文介绍了海洋气象站M(OWSM; 66°N,2°E)和空间的混合层特性深度,温度,盐度和氧气的时间序列挪威海的气候。解决了诸如大气通量,对流信号以及等渗面动态控制等基本机制的重要性。在挪威大西洋洋流(NwAC)的OWSM周围地区,混合层深度在夏季〜20 m和冬季〜300 m之间变化。此处冬季混合的深度最终受到大西洋水(AW)与下层水团之间的界面的限制,并且通常在冬季发现整个AW柱都是混合的。在罗弗敦盆地,冬季平均混合层的深度约为〜600 m,而AW充填盆地的平均深度为〜800 m。 OWSM混合层的温度通常在夏季12℃和冬季6℃之间变化。大气加热控制着夏季的温度,而冬季的温度则受NwAC中热对流的控制。夏季浅层混合层促进了沿海水的偶发横向Ekman输送,这对于季节性盐度循环和北向流AW的新鲜化很重要。大气淡水通量对该地区的AW盐度没有显着影响。氧气显示出清晰的年度周期,5月至6月的最高值,而8月至9月的最低值。混合层氧的年际变化似乎与混合层中任何物理性质的变化无关。

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