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Verification of the mixed layer depth in the OceanMAPS operational forecast model for Austral autumn

机译:验证南澳秋季海洋地图运营预测模型中的混合层深度

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The ocean mixed layer depth is an important parameter describing the exchange of fluxes between the atmosphere and ocean. In ocean modelling a key factor in the accurate representation of the mixed layer is the parameterization of vertical mixing. An ideal opportunity to investigate the impact of different mixing schemes was provided when the Australian Bureau of Meteorology upgraded its operational ocean forecasting model, OceanMAPS to version 3.0. In terms of the mixed layer, the main difference between the old and new model versions was a change of vertical mixing scheme from that of Chen et al.?(1994) to the General Ocean Turbulence Model. The model estimates of the mixed layer depth were compared with those derived from Argo observations. Both versions of the model exhibited a deep bias in tropical latitudes and a shallow bias in the Southern Ocean, consistent with previous studies. The bias, however, was greatly reduced in version 3.0, and variance between model runs decreased. Additionally, model skill against climatology also improved significantly. Further analysis discounted changes to model resolution outside of the Australian region having a significant impact on these results, leaving the change in vertical mixing scheme as the main factor in the assessed improvements to mixed layer depth representation.
机译:海洋混合层深度是描述大气和海洋之间的助熔剂交换的重要参数。在海洋建模中,混合层精确表示的关键因素是垂直混合的参数化。当澳大利亚气象局升级其运营海洋预测模型,海洋地图3.0版时,提供了调查不同混合计划影响的理想机会。就混合层而言,旧型号和新型版本之间的主要区别是陈等人的垂直混合方案的变化,从Chen等人的垂直混合方案到一般海洋湍流模型。将混合层深度的模型估计与来自Argo观察结果的估计进行了比较。这两种版本的模型在热带纬度和南海的浅偏见方面表现出深处,与之前的研究一致。然而,在3.0版本中大大减少了偏差,而模型运行之间的差异减少。此外,抗气候学的模型技能也显着提高。进一步分析对澳大利亚地区以外的模型分辨率对这些结果产生重大影响的折扣变更,将垂直混合方案的变化作为评估改善对混合层深度表示的主要因素。

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