...
首页> 外文期刊>Atmospheric Measurement Techniques >A semiempirical error estimation technique for PWV derived from atmospheric radiosonde data
【24h】

A semiempirical error estimation technique for PWV derived from atmospheric radiosonde data

机译:基于大气探空仪数据的PWV的半经验误差估计技术

获取原文
           

摘要

A semiempirical method for estimating the error and optimum number of sampled levels in precipitable water vapour (PWV) determinations from atmospheric radiosoundings is proposed. Two terms have been considered: the uncertainties in the measurements and the sampling error. Also, the uncertainty has been separated in the variance and covariance components. The sampling and covariance components have been modelled from an empirical dataset of 205 high-vertical-resolution radiosounding profiles, equipped with Vaisala RS80 and RS92 sondes at four different locations: Güímar (GUI) in Tenerife, at sea level, and the astronomical observatory at Roque de los Muchachos (ORM, 2300 m?a.s.l.) on La Palma (both on the Canary Islands, Spain), Lindenberg (LIN) in continental Germany, and Ny-?lesund (NYA) in the Svalbard Islands, within the Arctic Circle. The balloons at the ORM were launched during intensive and unique site-testing runs carried out in 1990 and 1995, while the data for the other sites were obtained from radiosounding stations operating for a period of 1 year (2013–2014). The PWV values ranged between?~??0.9 and ~??41?mm. The method sub-samples the profile for error minimization. The result is the minimum error and the optimum number of levels. brbr The results obtained in the four sites studied showed that the ORM is the driest of the four locations and the one with the fastest vertical decay of PWV. The exponential autocorrelation pressure lags ranged from 175?hPa (ORM) to 500?hPa (LIN). The results show a coherent behaviour with no biases as a function of the profile. The final error is roughly proportional to PWV whereas the optimum number of levels (iN/isub0/sub) is the reverse. The value of iN/isub0/sub is less than 400 for 77?% of the profiles and the absolute errors are always &??0.6?mm. The median relative error is 2.0 ±??0.7 % and the 90th percentile iP/isub90/sub?=?4.6?%. Therefore, whereas a radiosounding samples at least iN/isub0/sub uniform vertical levels, depending on the water vapour content and distribution of the atmosphere, the error in the PWV estimate is likely to stay below ≈??3?%, even for dry conditions.
机译:提出了一种半经验方法,用于估计大气放射性声音中可沉淀水蒸气(PWV)测定中的误差和最佳采样水平数。已经考虑了两个术语:测量的不确定性和采样误差。同样,不确定性已在方差和协方差分量中分开。采样和协方差组件是根据205个高分辨率高分辨率声音剖面的经验数据集建模的,这些数据在四个不同位置配备了Vaisala RS80和RS92探空仪:海平面在特内里费岛的居马尔(GUI),海平面在天文台北极圈内拉帕尔玛岛上的Roque de los Muchachos(ORM,2300 m?asl)(均在西班牙加那利群岛上),德国大陆上的Lindenberg(LIN)和斯瓦尔巴群岛上的Ny-lesund(NYA) 。 ORM的气球是在1990年和1995年进行的密集且独特的站点测试运行期间发射的,而其他站点的数据则是从运行1年(2013-2014年)的无线电探空站获得的。 PWV值在?〜?? 0.9和〜?? 41?mm之间。该方法对配置文件进行子采样以最小化错误。结果是最小的误差和最佳的水平数。 在所研究的四个位置获得的结果表明,ORM是四个位置中最干燥的位置,而PWV的垂直衰减最快。指数自相关压力滞后范围为175?hPa(ORM)至500?hPa(LIN)。结果表明,作为配置文件的函数,没有偏差的相干行为。最终误差与PWV大致成比例,而最佳水平数( N 0 )相反。对于77%的轮廓, N 0 的值小于400,并且绝对误差始终<0.6mm。中位数相对误差为2.0±+/- 0.7%,第90个百分位数 P 90 ≥4.6%。因此,尽管声音听起来至少采样 N 0 个均匀垂直水平,但取决于水蒸气含量和大气分布,PWV估计中的误差很可能会保持不变即使在干燥条件下也低于≈?3%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号