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Assessment of Error in Synoptic-Scale Diagnostics Derived from Wind Profiler and Radiosonde Network Data

机译:由风廓线仪和探空仪网络数据得出的天气尺度诊断中的误差评估

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摘要

A topic of current practical interest is the accurate characterization of the synoptic-scale atmospheric state from wind profiler and radiosonde network observations. We have examined several related and commonly applied objective analysis techniques for performing this characterization and considered their associated level of uncertainty both from a theoretical and a practical standpoint. A case study is presented where two wind profiler triangles with nearly identical centroids and no common vertices produced strikingly different results during a 43-h period. We conclude that the uncertainty in objectively analyzed quantities can easily be as large as the expected synoptic-scale signal. In order to quantify the statistical precision of the algorithms, we conducted a realistic observing system simulation experiment using output from a mesoscale model. A simple parameterization for estimating the uncertainty in horizontal gradient quantities in terms of known errors in the objectively analyzed wind components and temperature is developed from these results.
机译:当前实际感兴趣的一个主题是根据风廓线仪和探空仪网络观测结果对天气尺度大气状态进行准确表征。我们已经研究了几种相关的并且普遍应用的客观分析技术来进行这种表征,并从理论和实践的角度考虑了它们相关的不确定性水平。提出了一个案例研究,其中两个风廓线三角形的质心几乎相同,没有共同的顶点,在43小时内产生了截然不同的结果。我们得出结论,客观分析数量的不确定性很容易与预期的天气尺度信号一样大。为了量化算法的统计精度,我们使用中尺度模型的输出进行了现实的观测系统模拟实验。从这些结果得出了一个简单的参数化方法,用于根据客观分析的风分量和温度中的已知误差来估计水平梯度量的不确定性。

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