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Numerical Simulation of the Response of the Ocean Surface Layer to Precipitation

机译:海洋表层对降水响应的数值模拟

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摘要

Numerical experiments were conducted to investigate the ocean's response to the precipitation. A squall line observed in TOGA COARE was simulated. The simulation reproduced some of the observed ocean responses to the precipitation, such as the formation of a fresh water layer, surface cooling and the variation of upper layer turbulent mixing. The precipitation-induced fresh layer can cause the vertical turbulent diffusivities to decrease from the surface to a depth of about 11–13 meters within a few hours. After the rainfall, the turbulence increases near the surface of the ocean due to the combined effect of increased shear and wind forcing, but decreases with depth due to the development of a stable layer. The main reason for the turbulence variation is the decrease in the vertical turbulence flux below the surface fresh layer because of increased static stability. Sensitivity experiments reveal that the sea-surface temperature increases faster after rainfall due to the formation of a shallow fresh water layer near the surface.
机译:进行了数值实验以研究海洋对降水的响应。模拟了在TOGA COARE中观察到的线。模拟重现了观测到的海洋对降水的一些响应,例如淡水层的形成,表面冷却以及上层湍流混合的变化。降水诱导的新鲜层可导致垂直湍流扩散率在数小时内从地表降至约11-13米的深度。降雨之后,由于增加的剪切力和风强迫的共同作用,湍流在海洋表面附近增加,但由于稳定层的发展,湍流随着深度减小。湍流变化的主要原因是由于静态稳定性的提高,表面新鲜层以下的垂直湍流减小。敏感性实验表明,降雨后由于表面附近浅水浅层的形成,海面温度上升更快。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2003年第12期|2419-2446|共28页
  • 作者单位

    Department of Marine Earth and Atmospheric Sciences North Carolina State University;

    Department of Marine Earth and Atmospheric Sciences North Carolina State University;

    Department of Marine Earth and Atmospheric Sciences North Carolina State University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Air-sea interaction; coupled model; ocean mixed layer;

    机译:海海相互作用;耦合模型;海洋混合层;

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