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An Assessment of Design of Observation Network over the Tibetan Plateau Based on Observing System Simulation Experiments (OSSE)

机译:基于观测系统模拟实验(OSSE)的青藏高原观测网络设计评估

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摘要

An Observing System Simulation Experiment (OSSE) was conducted to test the rationality and regional representation of the layout of the upper-air observation system over the Tibetan Plateau and neighboring areas and to consider the actual significance of observation stations. The simulations were validated primarily by comparing results from corresponding experiments wherein simulated observations were assimilated into the initial fields or not. The results showed that there were significant differences in prediction for the different layouts. The layout with both existing and planned observation stations was better than the ones with only existing or only planned stations in terms of forecast accuracy, especially around the areas with new observations added. Specifically, for winds, there were large improvements in Xinjiang, Qinghai, Gansu Corridor, Tibet, Yunnan and mid-west and northeast Sichuan. For temperature and relative humidity, the most significant improvement was in Tibet, southwest and east Qinghai, mid-east Sichuan, and mid-north Yunnan. For heights, the major improvements were in Xinjiang, Qinghai, east Tibet, mid-west Sichuan and Yunnan. The results also validated the layout of the observations and indicated the necessity to add planned observations over the Tibetan Plateau and neighboring areas.
机译:为了观察青藏高原及周边地区高空观测系统布局的合理性和区域代表性,并考虑了观测站的实际意义,进行了观测系统模拟实验(OSSE)。主要通过比较相应实验的结果对仿真进行验证,在仿真实验中,是否将模拟观测值同化为原始场。结果表明,对于不同布局的预测存在显着差异。就预测准确性而言,既有现有观测站又有计划观测站的布局要好于只有现有观测站或只有计划观测站的布局,尤其是在增加了新观测值的区域附近。具体而言,在风方面,新疆,青海,甘肃走廊,西藏,云南以及四川中西部和东北部都有较大改善。在温度和相对湿度方面,最显着的改善是在西藏,青海西南和东部,四川中部和云南中北部。在高度方面,主要的改善是在新疆,青海,西藏东部,四川中西部和云南。结果还证实了观测资料的布局,并表明有必要在青藏高原及其周边地区增加计划观测资料。

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