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首页> 外文期刊>Theoretical and applied climatology >Comparison of GPS-based precipitable water vapor using various reanalysis datasets for the coastal regions of China
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Comparison of GPS-based precipitable water vapor using various reanalysis datasets for the coastal regions of China

机译:基于GPS的降水水蒸气对中国沿海地区的各种再分析数据集的比较

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摘要

This paper investigated the quality of site-specific surface temperature and surface pressure data in the coastal regions of China, which were interpolated from the European Centre for Medium-Range Weather Forecast Interim reanalysis (ERA-Interim), Japanese 55-year Reanalysis Project (JRA-55), and the National Centers for Environmental Prediction Final (NCEP FNL) reanalysis surface meteorological datasets as well as from the new Global Pressure and Temperature (GPT2) model data. The measured temperature and pressure along with the collocated GPS data from 2014 were collected from 25 observation stations evenly located in the region. Compared with the actual meteorological observations, the performances of the interpolated data from three reanalysis datasets differ marginally, with the root mean square errors (RMSEs) of the interpolated surface temperature and pressure less than 2.4K and 1.6hPa, respectively; however, the RMSEs of the surface temperature and pressure interpolated from the GPT2 model were 3.0K and 4.2hPa, respectively. Data based on GPS PWV products that used the meteorological parameters interpolated from three reanalysis data were very close to those of meteorological observations, with biases within +/- 0.4mm and RMSEs below 0.5mm in most areas, and the RMSE of PWV using the GPT2 model interpolation data was superior by 2mm. The measurement of GPS PWV using the interpolated reanalysis meteorological data also compared well with radiosonde observations, with RMSE between them tending to increase with a decrease of the GPS station's latitude. However, the GPS PWV based on the interpolated data could not reflect the true change in water vapor during typhoon events.
机译:本文调查了中国沿海地区的现场特异性表面温度和表面压力数据的质量,该地区是从欧洲中距离的中期天气预报临时再分析(ERA-Interim),日语55年的Reanalysis项目( JRA-55)和环境预测最终(NCEP FNL)重新分析表面气象数据集以及新的全球压力和温度(GPT2)模型数据的国家中心。测量的温度和压力以及来自2014年的并置的GPS数据从位于该区域均匀的25个观察站收集。与实际的气象观测相比,来自三个再分析数据集的内插数据的性能略有不同,具有内插表面温度和压力小于2.4K和1.6HPa的根均方误差(RMS)。然而,从GPT2模型内插的表面温度和压力的RMSE分别为3.0k和4.2hpa。基于GPS PWV产品的数据使用从三次再分析数据中插入的气象参数非常接近气象观测,在大多数区域+/- 0.4mm的偏差和低于0.5mm的偏差,以及使用GPT的PWV的RMSE模型插值数据​​高2毫米。使用内插再分析气象数据的GPS PWV测量也与无线电探测器观察相比,它们之间的RMSE倾向于随着GPS站的纬度的降低而增加。但是,基于内插数据的GPS PWV无法反映台风事件期间水蒸气的真实变化。

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  • 来源
    《Theoretical and applied climatology》 |2019年第2期|1541-1553|共13页
  • 作者单位

    Natl Marine Data & Informat Serv Tianjin 300171 Peoples R China;

    State Ocean Adm Inst Oceanog 1 Qingdao 266061 Shandong Peoples R China;

    Natl Marine Data & Informat Serv Tianjin 300171 Peoples R China;

    State Ocean Adm Inst Oceanog 1 Qingdao 266061 Shandong Peoples R China;

    Natl Marine Data & Informat Serv Tianjin 300171 Peoples R China;

    Jari Automat Co Ltd Qingdao 266071 Shandong Peoples R China;

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