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首页> 外文期刊>Geophysical Research Letters >A measure of near-surface fluid motions that predicts air-water gas transfer in a wide range of conditions
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A measure of near-surface fluid motions that predicts air-water gas transfer in a wide range of conditions

机译:一种测量近地表流体运动的方法,可预测各种条件下的空气-水气体传输

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[1] Air-water gas transfer impacts many important biogeochemical processes, yet current understandings involve large uncertainty. This arises because the process depends on a complex interaction between molecular diffusion and fluid motions that has not been adequately characterized. Here we show the first experimental support for a mechanistic model that relates near-surface motions to gas transfer coefficients over a range of wind conditions, including those leading to breaking wavelets. We find that the square root of the root mean square surface-velocity divergence varies linearly with both the gas transfer coefficient, as predicted by theory, as well as with mean square surface slope. Besides advancing the understanding of the mechanisms governing air-water gas transfer, these results suggest easy-to-measure parameters that could, with further investigation, provide gas transfer coefficients in field settings.
机译:[1]空气-水的气体转移影响许多重要的生物地球化学过程,但目前的理解涉及很大的不确定性。之所以会出现这种情况,是因为该过程取决于尚未充分表征的分子扩散与流体运动之间的复杂相互作用。在这里,我们显示了对机械模型的第一个实验性支持,该模型将近地表运动与一定范围的风况(包括导致小波破裂的风况)下的气体传输系数联系起来。我们发现,均方根表面速度散度的平方根随理论上预测的气体传输系数和均方表面斜率线性变化。这些结果除了提高对控制空气水煤气传输机理的理解外,还提出了易于测量的参数,这些参数可以通过进一步研究在野外设置中提供气体传输系数。

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