GCM Simulation Studies on the Relative Importance of Wind Observing Systems for Numerical Weather Prediction

M. Halem
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Abstract

Two series of simulation experiments were conducted with the GLAS Fourth Order GCM to assess the information content of different observing systems capabilities to infer atmospheric states. In the first set of experiments, the "natural atmosphere" from which simulated observations were derived is a long integration of the model. In the second set of experiments, simulated observations were extracted from the NMC operational analysis for the FGGE Special Observing Period - 1. In both cases, the observations consisted of complete 3-dimensional fields of either winds, temperatures or surface pressure. These observations were then used to run a 12 hour analysis/forecast cycle and the ability of the observations to infer the other unobserved fields was determined from the (asymptotic) 12 hour forecast errors.
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风观测系统对数值天气预报相对重要性的GCM模拟研究
利用GLAS四阶GCM进行了两个系列的模拟实验,以评估不同观测系统对大气状态推断能力的信息含量。在第一组实验中,模拟观测的“自然大气”是模型的长积分。在第二组实验中,提取了FGGE特殊观测期- 1的NMC运行分析的模拟观测数据。在这两种情况下,观测结果都包括风、温度或地面压力的完整三维场。这些观测结果随后被用于运行一个12小时的分析/预测周期,观测结果推断其他未观测场的能力由(渐近的)12小时预测误差确定。
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