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An eddy-permitting, dynamically consistent adjoint-based assimilation system for the tropical Pacific: Hindcast experiments in 2000

机译:一种允许涡流,动态一致的基于伴随的热带太平洋同化系统:2000年的Hindcast实验

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摘要

An eddy-permitting adjoint-based assimilation system has been implemented to estimate the state of the tropical Pacific Ocean. The system uses the Massachusetts Institute of Technology's general circulation model and its adjoint. The adjoint method is used to adjust the model to observations by controlling the initial temperature and salinity; temperature, salinity, and horizontal velocities at the open boundaries; and surface fluxes of momentum, heat, and freshwater. The model is constrained with most of the available data sets in the tropical Pacific, including Tropical Atmosphere and Ocean, ARGO, expendable bathythermograph, and satellite SST and sea surface height data, and climatologies. Results of hindcast experiments in 2000 suggest that the iterated adjoint-based descent is able to significantly improve the model consistency with the multivariate data sets, providing a dynamically consistent realization of the tropical Pacific circulation that generally matches the observations to within specified errors. The estimated model state is evaluated both by comparisons with observations and by checking the controls, the momentum balances, and the representation of small-scale features that were not well sampled by the observations used in the assimilation. As part of these checks, the estimated controls are smoothed and applied in independent model runs to check that small changes in the controls do not greatly change the model hindcast. This is a simple ensemble-based uncertainty analysis. In addition, the original and smoothed controls are applied to a version of the model with doubled horizontal resolution resulting in a broadly similar “downscaled” hindcast, showing that the adjustments are not tuned to a single configuration (meaning resolution, topography, and parameter settings). The time-evolving model state and the adjusted controls should be useful for analysis or to supply the forcing, initial, and boundary conditions for runs of other models.
机译:已实施了一个基于涡流的伴随同化系统,以估算热带太平洋的状况。该系统使用麻省理工学院的总体流通模型及其伴随模型。伴随法用于通过控制初始温度和盐度将模型调整为观测值。开放边界处的温度,盐度和水平速度;以及动量,热量和淡水的表面通量。该模型受到热带太平洋地区大多数可用数据集的约束,包括热带大气和海洋,ARGO,消耗性水温仪,卫星海温和海面高度数据以及气候。 2000年的后验实验结果表明,迭代的基于伴随的下降能够显着提高模型与多元数据集的一致性,从而动态地实现热带太平洋环流的动态实现,该环流通常会将观测值与指定误差相匹配。通过与观察值进行比较,以及通过检查控件,动量平衡以及同化中使用的观察值未很好采样的小尺度特征的表示,来评估估计的模型状态。作为这些检查的一部分,对估计的控件进行平滑处理并将其应用于独立的模型运行中,以检查控件中的细微变化不会大大改变模型的后预报。这是基于集合的简单不确定性分析。此外,原始控件和平滑控件应用于具有两倍水平分辨率的模型版本,从而产生了大致相似的“缩减比例”后继结果,表明调整未调整为单个配置(即分辨率,地形和参数设置) )。随时间变化的模型状态和调整后的控件应有助于分析或为其他模型的运行提供强迫,初始和边界条件。

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