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Mediterranean sea water budget long-term trend inferred from salinity observations

机译:根据盐度观测推断的地中海海水预算长期趋势

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摘要

Changes in the Mediterranean water cycle since 1950 are investigated using salinity and reanalysis based air-sea freshwater flux datasets. Salinity observations indicate a strong basin-scale multi-decadal salinification, particularly in the intermediate and deep layers. Evaporation, precipitation and river runoff variations are all shown to contribute to a very strong increase in net evaporation of order 20-30%. While large temporal uncertainties and discrepancies are found between E-P multi-decadal trend patterns in the reanalysis datasets, a more robust and spatially coherent structure of multi-decadal change is obtained for the salinity field. Salinity change implies an increase in net evaporation of 8 to 12% over 1950-2010, which is considerably lower than that suggested by air-sea freshwater flux products, but still largely exceeding estimates of global water cycle amplification. A new method based on water mass transformation theory is used to link changes in net evaporation over the Mediterranean Sea with changes in the volumetric distribution of salinity. The water mass transformation distribution in salinity coordinates suggests that the Mediterranean basin salinification is driven by changes in the regional water cycle rather than changes in salt transports at the straits.
机译:使用基于盐度和再分析的空气-海洋淡水通量数据集,研究了1950年以来地中海水循环的变化。盐度观测表明,盆地规模的年代际盐化作用很强,尤其是在中层和深层。蒸发量,降水量和河流径流的变化都显示出净蒸发量非常强烈地增加了20-30%。虽然在重新分析数据集中发现E-P多年代际趋势模式之间存在较大的时间不确定性和差异,但对于盐度场却获得了更健壮且空间连贯的多年代际变化结构。盐度变化意味着1950-2010年净蒸发量增加8%至12%,这大大低于空气-海洋淡水通量产品的建议值,但仍大大超过了全球水循环放大的估计值。一种基于水质转化理论的新方法被用于将地中海上的净蒸发量变化与盐度体积分布变化联系起来。盐度坐标中的水质转化分布表明,地中海盆地的盐化作用是由区域水循环的变化驱动的,而不是海峡两岸盐分迁移的变化。

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