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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >A global relationship between the ocean water cycle and near‐surface salinity
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A global relationship between the ocean water cycle and near‐surface salinity

机译:海洋水循环与近地表盐度之间的全球关系

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Ocean evaporation (E) and precipitation (P) are the fundamental components of the global water cycle. They are also the freshwater flux forcing (i.e., E‐P) for the open ocean salinity. The apparent connection between ocean salinity and the global water cycle leads to the proposition of using the oceans as a rain gauge. However, the exact relationship between E‐P and salinity is governed by complex upper ocean dynamics, which may complicate the inference of the water cycle from salinity observations. To gain a better understanding of the ocean rain gauge concept, here we address a fundamental issue as to how E‐P and salinity are related on the seasonal timescales. A global map that outlines the dominant process for the mixed‐layer salinity (MLS) in different regions is thus derived, using a lower‐order MLS dynamics that allows key balance terms (i.e., E‐P, the Ekman and geostrophic advection, vertical entrainment, and horizontal diffusion) to be computed from satellite‐derived data sets and a salinity climatology. Major E‐P control on seasonal MLS variability is found in two regions: the tropical convergence zones featuring heavy rainfall and the western North Pacific and Atlantic under the influence of high evaporation. Within this regime, E‐P accounts for 40–70% MLS variance with peak correlations occurring at 2–4 month lead time. Outside of the tropics, the MLS variations are governed predominantly by the Ekman advection, and then vertical entrainment. The study suggests that the E‐P regime could serve as a window of opportunity for testing the ocean rain gauge concept once satellite salinity observations are available.
机译:海洋蒸发(E)和降水(P)是全球水循环的基本组成部分。它们也是开放海洋盐度的淡水通量强迫(即E-P)。海洋盐度与全球水循环之间的明显联系导致提出使用海洋作为雨量计的主张。但是,EP与盐度之间的确切关系受复杂的上层海洋动力学控制,这可能会使从盐度观测中得出的水循环变得复杂。为了更好地了解海洋雨量计的概念,在这里我们解决一个基本问题,即在季节时标上E-P和盐度之间的关系。因此,使用低阶MLS动力学得出了概述不同区域混合层盐度(MLS)的主要过程的全局图,该动力学允许关键的平衡项(例如,EP,Ekman和地转平流,垂直夹杂物和水平扩散)将根据卫星数据集和盐度气候学来计算。在两个区域发现了主要的E-P控制,以控制季节性MLS的变化:热带辐合带降雨多,西部西北太平洋和大西洋受到高蒸发的影响。在这种情况下,EP占MLS差异的40-70%,在2-4个月的交货期出现峰值相关性。在热带以外,MLS的变化主要由埃克曼平流控制,然后由垂直夹带控制。这项研究表明,一旦获得了卫星盐度观测值,EP体制就可以成为检验海洋雨量计概念的机会之窗。

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