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On the practical applications of atmosphere-ocean and atmosphere-wave coupling in mesoscale numerical modeling.

机译:论大气-海洋和大气-波耦合在中尺度数值模拟中的实际应用。

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摘要

The objectives of this work were to develop coupled atmosphere-ocean and atmosphere-wave models for the verification of the atmospheric simulations, model the small-scale ocean circulations, analyze the role of the atmospheric stability in the generation of coastal upwelling, improve the accuracy of numerical prediction over the coastal areas, and develop a parameterization of the swell-induced wind stress.;The study confirmed the applicability of the high resolution Mesoscale Model 5 (MM5) wind field prediction to driving small scale ocean models applied to the U.S. West Coast, and showed that the small-scale circulation pattern of Bodega Bay can be well simulated even by the relatively simple 2D ocean model. Additional experiments performed with the complex 3D Princeton Ocean Model (POM) coupled with the MM5 showed the importance of the atmospheric stability in terms of the modification of the wind stress-curl pattern and the generation of coastal upwelling. The study revealed that the introduction of the stability effect to the wind stress computation may change the monthly mean wind stress curl by up to 0.15Pa/100km, and increase the simulated upwelling velocity by up to 25%, significantly improving the picture of the simulated upwelling and relaxation events. Further analysis performed with the MM5 model run at 9km resolution, showed that the introduction of the atmosphere-ocean coupling greatly improved the quality of the model results. The comparison with buoy data revealed that the atmosphere-ocean coupling led to a 95% increase in the correlation coefficients of the air temperature and heat fluxes, 23% for the wind direction, and up to 25% for the wind speed, and the reduction of the mean errors by up to 30%.;The air-wave interaction model developed during this study showed the applicability of the innovative semi-analytical approach to the computation of the swell-induced stress. Its results also confirmed the importance of the swell-induced stress for medium and weak winds (up to 20% of the total stress) and its significance in terms of atmosphere, ocean and climate modeling.
机译:这项工作的目的是开发用于验证海洋模拟的大气-海洋和大气-波浪耦合模型,为小规模海洋环流建模,分析大气稳定性在沿海上升流产生中的作用,提高准确性沿海地区的数值预测,并建立了由激增引起的风应力的参数化。;该研究证实了高分辨率中尺度模型5(MM5)风场预测在美国西部驱动小型海洋模型中的适用性海岸,并表明即使使用相对简单的2D海洋模型也可以很好地模拟Bodega湾的小规模环流模式。使用复杂的3D普林斯顿海洋模型(POM)和MM5进行的其他实验表明,就改变风应力-卷曲模式和产生海岸上升流而言,大气稳定的重要性。研究表明,将稳定效应引入风应力计算中可能使每月平均风应力卷曲变化高达0.15Pa / 100km,并使模拟上升流速度提高多达25%,从而显着改善了模拟结果上升流和放松事件。对以9km分辨率运行的MM5模型进行的进一步分析表明,引入大气-海洋耦合可以大大提高模型结果的质量。与浮标数据的比较表明,大气-海洋耦合导致空气温度和热通量的相关系数增加了95%,风向的相关系数增加了23%,风速的增加了25%,并且降低了平均误差最多可提高30%。;在此研究中开发的气波相互作用模型表明,创新的半分析方法可用于计算膨胀诱发的应力。其结果还证实了中风和弱风(高达总应力的20%)的胀大应力的重要性及其在大气,海洋和气候模拟方面的重要性。

著录项

  • 作者

    Kochanski, Adam.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Geophysics.;Physics Atmospheric Science.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;大气科学(气象学);
  • 关键词

  • 入库时间 2022-08-17 11:38:52

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