Estimation of Actual Evapotranspiration Distribution in the Huaihe River Upstream Basin Based on the Generalized Complementary Principle

Author:

Gao Jiaqi1ORCID,Qiao Miao2,Qiu Xinfa3ORCID,Zeng Yan4ORCID,Hua Huanhuan5,Ye Xiuzhi6,Adamu Mustapha7

Affiliation:

1. College of Atmospheric Science, Nanjing University of Information Science and Technology, Nanjing 210044, China

2. Inner Mongolia Meteorological Information Center, Huhehot 010000, China

3. College of Applied Meteorology, Nanjing University of Information Science and Technology, Nanjing 210044, China

4. Climate Centre of Jiangsu Province, Jiangsu Provincial Meteorological Bureau, Nanjing 210009, China

5. Nanjing Broadcasting System, Nanjing 210001, China

6. Jinjiang Meteorological Bureau, Quanzhou 362200, China

7. College of International Students, Nanjing University of Information Science and Technology, Nanjing 210044, China

Abstract

The accurate estimation of actual evapotranspiration can help improve the utilization of water resources and ease the ecological stress. Based on the generalized complementary principle proposed by Brutsaert in 2015, we used meteorological and hydrological data to estimate the actual evapotranspiration at a resolution of 1 km × 1 km between the years of 1961 and 2000 and also verified the model’s stability. In this study, we used the water balance equation to calibrate the parameters, coupled with the spatial simulation results of the meteorological elements in the actual evapotranspiration model. The estimation results of actual evapotranspiration show that the generalized complementary principle model had high estimation precision in this basin, with an average absolute error of 16.64 mm and an average relative error of 2.25%. With respect to spatial distribution, the average actual evapotranspiration over the years in the basin tended to have high and low distribution in the northern and southern parts of the basin, respectively. The actual evapotranspiration in the basin showed a decreasing trend over the period, with a rate of 24.1 mm/10 years. Correlation coefficient analysis showed that the percentage decreases in percentage sunshine and the decreases in the daily range of temperature were the main reasons for the decrease in actual evapotranspiration.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Atmospheric Science,Pollution,Geophysics

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