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Reduced mixing from the breaking of internal waves in equatorial waters

机译:减少赤道水域内浪破裂引起的混合

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In the oceans, heat, salt and nutrients are redistributed much more easily within water masses of uniform density than across surfaces separating waters of different densities. But the magnitude and distribution of mixing across density surfaces are also important for the Earth's climate as well as the concentrations of organisms(1). Most of this mixing occurs where internal waves break, overturning the density stratification of the ocean and creating patches of turbulence. Predictions of the rate at which internal waves dissipate(2,3) were confirmed earlier at midlatitudes(4,5). Here we present observations of temperature and velocity fluctuations in the Pacific and Atlantic oceans between 42degreesN and 2degreesS to extend that result to equatorial regions. We find a strong latitude dependence of dissipation in accordance with the predictions(3). In our observations, dissipation rates and accompanying mixing across density surfaces near the Equator are less than 10% of those at mid-latitudes for a similar background of internal waves. Reduced mixing close to the Equator will have to be taken into account in numerical simulations of ocean dynamics-for example, in climate change experiments. [References: 24]
机译:在海洋中,热量,盐分和养分在密度均匀的水团中比在不同密度的水分开的表面更容易重新分配。但是,密度表面上混合的程度和分布对地球的气候以及生物体的浓度也很重要(1)。这种混合大部分发生在内部波浪破裂的地方,从而推翻了海洋的密度分层并形成了湍流斑块。在中纬度地区(4,5)较早地证实了内部波消散的速率(2,3)。在这里,我们介绍了太平洋和大西洋在42°N和2°S之间的温度和速度波动观测,以将其结果扩展到赤道地区。根据预测,我们发现耗散对纬度的依赖性很强(3)。在我们的观察中,对于相似的内波背景,在赤道附近的密度表面上的耗散率及其伴随的混合比中纬度的低10%。在海洋动力学的数值模拟中,例如在气候变化实验中,必须考虑到靠近赤道的混合减少。 [参考:24]

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