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Evaluation of wind profiles from the NERC MST radar, Aberystwyth, UK

机译:评估来自英国阿伯里斯特威斯的NERC MST雷达的风廓线

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This study quantifies the uncertainties in winds measured by the Aberystwyth Mesosphere-Stratosphere-Troposphere (MST) radar (52.4° N, 4.0° W), before and after its renovation in March 2011. A total of 127 radiosondes provide an independent measure of winds. Differences between radiosonde and radar-measured horizontal winds are correlated with long-term averages of vertical velocities, suggesting an influence from local mountain waves. These local influences are an important consideration when using radar winds as a measure of regional conditions, particularly for numerical weather prediction. For those applications, local effects represent a source of sampling error additional to the inherent uncertainties in the measurements themselves. The radar renovation improved the signal-to-noise ratio (SNR) of measurements, with a corresponding improvement in altitude coverage. It also corrected an underestimate of horizontal wind speeds attributed to beam formation problems, due to pre-renovation component failure. The root mean square error (RMSE) in radar-measured horizontal wind components, averaged over half an hour, increases with wind speed and altitude, and is 0.8-2.5 ms~(-1) (6-12% of wind speed) for post-renovation winds. Pre-renovation values are typically 0.1 m s~(-1) larger. The RMSE in radial velocities is < 0.04 m s~(-1). Eight weeks of special radar operation are used to investigate the effects of echo power aspect sensitivity. Corrections for echo power aspect sensitivity remove an underestimate of horizontal wind speeds; however aspect sensitivity is azimuthally anisotropic at the scale of routine observations (≈ 1 h). This anisotropy introduces random error into wind profiles. For winds averaged over half an hour, the RMSE is around 3.5 % above 8 km, but as large as 4.5 % in the mid-troposphere.
机译:这项研究量化了阿伯里斯特威斯中层-平流层-对流层(MST)雷达(52.4°N,4.0°W)在2011年3月进行改造前后的不确定性。总共127个探空仪提供了独立的风向测量方法。探空仪和雷达测得的水平风之间的差异与垂直速度的长期平均值相关,这表明受到局部山波的影响。当使用雷达风作为区域条件的度量标准时,这些局部影响是重要的考虑因素,尤其是在数值天气预报方面。对于那些应用,局部效应代表了采样误差的来源,除了测量本身固有的不确定性。雷达翻新改善了测量的信噪比(SNR),并相应提高了海拔范围。它还修正了由于翻新前组件故障而导致的梁形成问题引起的水平风速的低估。雷达测量的水平风分量的均方根误差(RMSE),平均半小时以上,随风速和高度的增加而增加,在0.8-2.5 ms〜(-1)(风速的6-12%)范围内装修后的风。翻新前的值通常会大0.1 m s〜(-1)。径向速度的RMSE <0.04 m s〜(-1)。八周的特殊雷达操作用于调查回波功率方面灵敏度的影响。对回波功率方面灵敏度的校正消除了对水平风速的低估。但是,在常规观测的范围内(约1小时),方面灵敏度是各向异性的。这种各向异性将随机误差引入风廓线中。对于平均半小时以上的风,RMSE在8公里以上约为3.5%,但在对流层中部则高达4.5%。

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