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Development of a MetUM (v 11.1) and NEMO (v 3.6) coupled operational forecast model for the Maritime Continent – Part 1: Evaluation of ocean forecasts

机译:开发Metum(v 11.1)和Nemo(V 3.6)耦合的海事大陆的运营预测模型 - 第1部分:海洋预测的评估

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This article describes the development and ocean forecast evaluation of an atmosphere–ocean coupled prediction system for the Maritime Continent (MC) domain, which includes the eastern Indian and western Pacific oceans. The coupled system comprises regional configurations of the atmospheric model MetUM and ocean model NEMO at a uniform horizontal resolution of 4.5?km? × ?4.5?km, coupled using the OASIS3-MCT libraries. The coupled model is run as a pre-operational forecast system from 1 to 31?October?2019. Hindcast simulations performed for the period 1?January?2014 to 30?September?2019, using the stand-alone ocean configuration, provided the initial condition to the coupled ocean model. This paper details the evaluations of ocean-only model hindcast and 6?d coupled ocean forecast simulations. Direct comparison of sea surface temperature (SST) and sea surface height (SSH) with analysis, as well as in situ observations, is performed for the ocean-only hindcast evaluation. For the evaluation of coupled ocean model, comparisons of ocean forecast for different forecast lead times with SST analysis and in situ observations of SSH, temperature, and salinity have been performed. Overall, the model forecast deviation of SST, SSH, and subsurface temperature and salinity fields relative to observation is within acceptable error limits of operational forecast models. Typical runtimes of the daily forecast simulations are found to be suitable for the operational forecast applications.
机译:本文介绍了海洋大陆(MC)领域的大气海洋耦合预测系统的开发和海洋预测评估,包括东方印度和西太平洋。耦合系统包括大气模型Metum和海洋模型Nemo的区域配置,均匀的水平分辨率为4.5 km? ×4.5?Km,使用Oasis3-MCT库耦合。耦合型号以1到31人作为预运算预测系统运行?2019年10月? Hindcast模拟在1月1日?2014年1月到30岁?9月?2019年,使用独立的海洋配置,为耦合海洋模型提供了初始条件。本文详细说明了海洋模型Hindcast和6?D耦合海洋预测模拟的评估。对海面温度(SST)和海面高度(SSH)的直接比较,以及分析以及原位观察,对仅海洋的Hindcast评估进行。对于耦合海洋模型的评估,已经进行了SST分析和SSH,温度和盐度的不同预测倍数的海洋预测的比较。总之,SST,SSH和地下温度和盐度相对于观察的模型预测偏差是操作预测模型的可接受误差限制。发现每日预测模拟的典型运行时间适用于操作预测应用。

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