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A "Global Radiosonde and tracked-balloon Archive on Sixteen Pressure levels" (GRASP) going back to 1905 – Part 2: homogeneity adjustments for pilot balloon and radiosonde wind data

机译:可追溯到1905年的“全球无线电探空仪和16级气压跟踪气球档案”(GRASP)。第2部分:飞行员气球和探空仪风数据的均匀性调整

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摘要

This paper describes the comprehensive homogenization of the "Global Radiosonde and tracked balloon Archive on Sixteen Pressure levels" (GRASP) wind records. Many of those records suffer from artificial shifts that need to be detected and adjusted before they are suitable for climate studies.Time series of departures between observations and the National Atmospheric and Oceanic Administration 20th-century (NOAA-20CR) surface pressure only reanalysis have been calculated offline by first interpolating the observations to pressure levels and standard synoptic times, if needed, and then interpolating the gridded NOAA-20CR standard pressure level data horizontally to the observation locations. These difference time series are quite sensitive to breaks in the observation time series and can be used for both automatic detection and adjustment of the breaks.Both wind speed and direction show a comparable number of breaks, roughly one break in three stations. More than a hundred artificial shifts in wind direction could be detected at several US stations in the period 1938/1955. From the 1960s onward the wind direction breaks are less frequent. Wind speed data are not affected as much by measurement biases, but one has to be aware of a large fair-weather sampling bias in early years, when high wind speeds were much less likely to be observed than after 1960, when radar tracking was already common practice. This bias has to be taken into account when calculating trends or monthly means from wind speed data.Trends of both wind speed and direction look spatially more homogeneous after adjustment. With the exception of a widespread wind direction bias found in the early US network, no signs of pervasive measurement biases could be found. The adjustments can likely improve observation usage when applied during data assimilation. Alternatively they can serve as a basis for validating variational wind bias adjustment schemes. Certainly, they are expected to improve estimates of global wind trends.All the homogeneity adjustments are available in the PANGAEA archive with associated doi:10.1594/PANGAEA.823617.
机译:本文介绍了“全球无线电探空仪和16气压水平的跟踪气球档案”(GRASP)风记录的全面均质化。这些记录中的许多记录都存在人为变化,需要进行检测和调整后才能进行气候研究。观测值与美国国家大气和海洋管理局20世纪(NOAA-20CR)表面压力之间的时间序列偏差仅是重新分析而已。通过首先将观测值内插到压力水平和标准天气时间,然后将网格化的NOAA-20CR标准压力水平数据水平内插到观测位置,来离线计算。这些差异时间序列对观测时间序列中的中断非常敏感,可用于自动检测和调整中断。风速和风向都显示可比较的中断次数,三个站中大约一个中断。在1938/1955年的几个美国气象站中,可以检测到一百多个风向的人为改变。从1960年代开始,风向中断的频率降低了。风速数据不受测量偏差的影响很大,但是人们必须意识到,早年的较大公平天气采样偏差比1960年(当时已经进行雷达跟踪)观测到的高风速要小得多常见的做法。从风速数据计算趋势或月度平均值时必须考虑到这种偏差。调整后,风速和风向趋势在空间上看起来更加均匀。除了在美国早期网络中发现广泛的风向偏差外,没有发现普遍存在测量偏差的迹象。当在数据同化期间应用这些调整时,可能会改善观察的使用率。可替代地,它们可以用作验证变化的风偏调节方案的基础。当然,它们有望改善对全球风向的估计。所有同质性调整都可在PANGEA档案中找到,其相关doi:10.1594 / PANGAEA.823617。

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