气候变化研究进展 ›› 2015, Vol. 11 ›› Issue (6): 379-386.doi: 10.3969/j.issn.1673-1719.2015.06.001

• 气候系统变化 •    下一篇

中国地面相对湿度非均一性检验及订正

朱亚妮,曹丽娟,唐国利,周自江   

  1. 中国气象局国家气象信息中心, 北京 100081
  • 收稿日期:2015-05-12 修回日期:2015-09-16 出版日期:2015-11-30 发布日期:2015-11-30
  • 通讯作者: 唐国利 E-mail:tanggl@cma.gov.cn
  • 基金资助:

    中国近60年地面关键气候要素均一性检验与订正技术及站址变动影响研究;气象关键技术集成与应用重点项目-地面自动化观测资料均一化处理技术研发及应用

Homogenization of Surface Relative Humidity over China

Zhu Yani, Cao Lijuan, Tang Guoli , Zhou Zijiang   

  1. National Meteorological Information Center, China Meteorological Administration, Beijing 100081, China
  • Received:2015-05-12 Revised:2015-09-16 Online:2015-11-30 Published:2015-11-30

摘要:

利用加拿大环境部气候研究中心研发的PMTred和PMFT方法,选取均一的邻近站为参考站,使用相关系数权重平均构建参考序列,结合元数据信息,对1951—2014年中国2400多个国家级地面站月平均相对湿度进行了非均一性检验与订正,并分析了造成相对湿度序列非均一的主要原因。结果表明,中国地面相对湿度资料存在较严重的非均一问题,68%的台站存在断点,人工观测转自动观测、迁站和时次变化是造成序列非均一的主要原因。整套资料负订正量所占比例较高,订正范围主要集中在-5%~0之间,这种负订正量与人工转自动观测后相对湿度观测值偏低有密切关系。这也使得订正后中国平均相对湿度趋势与订正前存在明显差异,订正前中国平均相对湿度呈下降趋势,订正后相对湿度没有趋势性变化。

关键词: 相对湿度, 非均一性检验与订正, 人工转自动, PMTred和PMFT方法

Abstract:

Using the PMTred (penalized maximum T test) and PMFT (penalized maximum F test) developed by theEnvironment Canada, inhomogeneity test of monthly surface relative humidity of national station in China during 1951-2014 has been launched. The homogenous nearby stations with high correlation coefficients with the area averaged annual relative humidity are chosen to construct reference series by correlation coefficient weighted average method. Combined with the detailed metadata of each station, the main reasons causing the homogenization problem of the surface relative humidity in China have been analyzed. The result shows that the surface relative humidity data have serious problems of inhomogeneity, 68% stations existing break points. Automation, relocation and change of observe times are the main causes of the data discontinuity. For the whole dataset, the negative correction values have the high proportion, mainly between -5% and 0, which is linked tightly to the humidity decreasing after automation. The averaged surface humidity is decreasing in 1951-2014 before adjustment, and there is no obvious trend after adjustment.

Key words: relative humidity, homogenization, observation automation, PMTred and PMFT

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