Spatial and temporal variation of reference evapotranspiration under climate change: a case study in the Sanjiang Plain, Northeast China

被引:5
作者
Song, Xinyi [1 ,2 ]
Zhu, Kui [2 ]
Lu, Fan [1 ]
Xiao, Weihua [1 ]
机构
[1] China Inst Water Resources & Hydropower Res, State Key Lab Simulat & Regulat Water Cycle River, Beijing 100038, Peoples R China
[2] China Univ Min & Technol, Sch Resources & Earth Sci, Xuzhou 221116, Peoples R China
来源
HYDROLOGY RESEARCH | 2018年 / 49卷 / 01期
基金
中国国家自然科学基金;
关键词
climate change; Penman-Monteith; reference evapotranspiration; Sanjiang Plain; REFERENCE CROP EVAPOTRANSPIRATION; HEIHE RIVER-BASIN; ARIDITY INDEX; SENSITIVITY; VARIABLES; REGION; PARAMETERS; TRENDS;
D O I
10.2166/nh.2017.039
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
It is essential to understand the changing patterns in reference evapotranspiration (ET0) and its relation to climate variables. In this study, meteorological data obtained from the Sanjiang Plain (SJP) between 1959 and 2013 are used to calculate ET0 via the Penman-Monteith method. This study analyses the spatial and temporal changes of ET0 and determines which meteorological variables have an impact on this. The Mann-Kendall test, moving t-test, sensitivity analysis and simulated results have been used to conduct these analyses. The results demonstrate the following. (1) Spatially, there is an increasing trend in the annual ET0 values in agricultural areas. However, significant decreasing trends (P < 0.05) can be found in mountainous regions. (2) Temporally, two abrupt changes can be detected in the early 1980s and the late 1990s for the entire SJP, leading to large inter-annual differences. (3) Sensitivity analysis shows that relative humidity (RH) is the most sensitive climate variable and has a negative influence on ET0, followed by temperature, sunshine duration and wind speed, all of which exert positive impacts. (4) The simulated result shows that ET0 is most sensitive to RH. However, significant reductions in wind speed can exert large influences on the ET0 values.
引用
收藏
页码:251 / 265
页数:15
相关论文
共 31 条
  • [1] Allen R. G., 1998, FAO Irrigation and Drainage Paper
  • [2] Regional evapotranspiration from a wetland in Central Europe, in a 16-year period without human intervention
    Anda, Angela
    Soos, Gabor
    Teixeira da Silva, Jaime A.
    Kozma-Bognar, Veronika
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 2015, 205 : 60 - 72
  • [3] [Anonymous], ADV METEOROLOGY CLIM
  • [4] Chen G. Q., 1994, CHINESE GEOGR SCI, V4, P159
  • [5] An innovative remote sensing based reference evapotranspiration method to support irrigation water management under semi-arid conditions
    Cruz-Blanco, M.
    Lorite, I. J.
    Santos, C.
    [J]. AGRICULTURAL WATER MANAGEMENT, 2014, 131 : 135 - 145
  • [6] Trends in reference evapotranspiration in Turkey: 1975-2006
    Dadaser-Celik, Filiz
    Cengiz, Eda
    Guzel, Ozge
    [J]. INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2016, 36 (04) : 1733 - 1743
  • [7] Processes and prediction of land use/land cover changes (LUCC) driven by farm construction: the case of Naoli River Basin in Sanjiang Plain
    Dan, Wu
    Wei, Hou
    Zhang Shuwen
    Kun, Bu
    Bao, Xiang
    Yi, Wang
    Yue, Li
    [J]. ENVIRONMENTAL EARTH SCIENCES, 2015, 73 (08) : 4841 - 4851
  • [8] Variation of reference evapotranspiration in the central region of Argentina between 1941 and 2010
    de la Casa, A. C.
    Ovando, G. G.
    [J]. JOURNAL OF HYDROLOGY-REGIONAL STUDIES, 2016, 5 : 66 - 79
  • [9] Trends in reference crop evapotranspiration over Iran
    Dinpashoh, Yagob
    Jhajharia, Deepak
    Fakheri-Fard, Ahmad
    Singh, Vijay P.
    Kahya, Ercan
    [J]. JOURNAL OF HYDROLOGY, 2011, 399 (3-4) : 422 - 433
  • [10] Field CB, 2014, CLIMATE CHANGE 2014: IMPACTS, ADAPTATION, AND VULNERABILITY, PT A: GLOBAL AND SECTORAL ASPECTS, P1