干旱气象

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影响海河流域参考作物蒸散量的气象因子定量分析

杨艳娟1曹经福1熊明明1赵玉娟2   

  1. 1.天津市气候中心,天津300074;2.天津市气象信息中心,天津300074
  • 出版日期:2017-06-26 发布日期:2017-06-26
  • 作者简介:杨艳娟(1979- ),女,辽宁葫芦岛人,高级工程师,主要从事气候变化、气候应用相关研究. E-mail:yangyyj1979@163.com
  • 基金资助:

    干旱气象科学研究基金项目(IAM201501)资助

Quantitative Analysis of Climate Factors Influencing on Potential
 Evapotranspiration Changes over Haihe River Basin

  • Online:2017-06-26 Published:2017-06-26

摘要:

基于海河流域159个气象站1961—2014年逐日气象资料,采用P-M模型计算该地区的参考作物蒸散量(ET0),分析海河流域ET0对平均最高、最低气温及相对湿度、平均风速和日照时数的敏感性,并结合各气象要素的多年相对变化率定量探讨ET0变化的主导因子。结果表明:海河流域年ET0以-22.7 mm·(10 a)-1的速率显著减少,在空间分布上,除流域西北部分地区呈增加趋势外,大部分地区ET0呈显著减少趋势。ET0对各要素的敏感系数除相对湿度外,其他均为正值。综合考虑ET0对各要素的敏感性及各要素的多年相对变化率发现,相对湿度及最高、最低气温是导致ET0增加的因子,平均风速和日照时数则是导致ET0减少的因子。虽然平均风速和日照时数的敏感系数不是最高,但其减小趋势显著,多年相对变化率较大,导致对ET0的贡献较大,成为海河流域ET0变化的主导因子,二者的显著减少造成了整个流域ET0显著减少的事实。

关键词: 气候变化, Penman-Monteith模型, 参考作物蒸散量, 海河流域

Abstract:

Based on the daily data of 159 meteorological stations over the Haihe River basin during 1961-2014, the potential evapotranspiration (ET0) was calculated by Penman-Monteith equation to analyze the sensitivity coefficients of ET0 to meteorological elements including maximum temperature, minimum temperature, relative humidity, average wind speed and sunshine duration. Additionally, the dominant factors influencing ET0 change were discussed combined with the multi-year relative variations of meteorological elements. The results show that annual mean ET0 over the Haihe River basin reduced significantly with the rate of 22.7 mm·(10 a)-1 from 1961 to 2014, and the mutation occurred in 1979. From the spatial distribution, ET0 reduced significantly in the most of the basin, except for the northwestern part. The sensitive coefficients of ET0 to meteorological elements were almost positive, except for relative humidity. Considering the sensitive coefficients of ET0 to meteorological elements and the multi-year relative variations of each element, the relative humidity and the maximum, minimum temperature were the factors causing the increase of ET0, the average wind speed and sunshine duration were the factors causing the decrease of ET0. The sensitive coefficients of ET0 to average wind speed and sunshine duration were not the highest, but the average wind speed and sunshine duration decreased significantly and their relative variations were larger, so they contributed great to ET0 and became the dominant factors of ET0 change. To summarize, ET0 decreased significantly due to the decreasing of average wind speed and sunshine duration over the Haihe River basin.

Key words: climate change, Penman-Monteith, potential evapotranspiration, Haihe River basin