Irrigation Scheduling for Maize under Different Hydrological Years in Heilongjiang Province, China

Author:

Nie Tangzhe1234ORCID,Gong Zhenping3,Zhang Zhongxue14,Wang Tianyi14,Sun Nan14,Tang Yi2,Chen Peng5,Li Tiecheng14,Yin Shuai6,Zhang Mengmeng7,Jiang Siwen14

Affiliation:

1. Key Laboratory of Effective Utilization of Agricultural Water Resources, Ministry of Agriculture and Rural Affairs, Northeast Agricultural University, Harbin 150030, China

2. School of Water Conservancy and Electric Power, Heilongjiang University, Harbin 150006, China

3. Post-doctoral Scientific Research Station of Crop Science, College of Agriculture, Northeast Agricultural University, Harbin 150030, China

4. School of Water Conservancy and Civil Engineering, Northeast Agricultural University, Harbin 150030, China

5. College of Agricultural Science and Engineering, Hohai University, Nanjing 210024, China

6. Earth System Division, National Institute for Environmental Studies, Tsukuba 3058506, Japan

7. Heilongjiang Provincial Key Laboratory of Ecological Restoration and Resource Utilization for Cold Region, School of Life Sciences, Heilongjiang University, Harbin 150006, China

Abstract

Appropriate irrigation schedules could minimize the existing imbalance between agricultural water supply and crop water requirements (ETc), which is severely impacted by climate change. In this study, different hydrological years (a wet year, normal year, dry year, and an extremely dry year) in Heilongjiang Province were calculated by hydrological frequency methods. Then, the single crop coefficient method was used to calculate the maize ETc, based on the daily meteorological data of 26 meteorological stations in Heilongjiang Province from 1960 to 2020. Afterward, the CROPWAT model was used to calculate the effective precipitation (Pe) and irrigation water requirement (Ir), and formulate the irrigation schedules of maize in Heilongjiang Province under different hydrological years. The results showed that ETc and Ir decreased first and then increased from west to east. The Pe and crop water surplus deficit index increased first and then decreased from west to east in Heilongjiang Province. Meanwhile, the average values of the Ir in were 171.14 mm, 232.79 mm, 279.08 mm, and 334.47 mm in the wet year, normal year, dry year, and extremely dry year, respectively. Heilongjiang Province was divided into four irrigation zones according to the Ir of different hydrological years. Last, the irrigation quotas for the wet year, normal year, dry year, and extremely dry year were 0~180 mm, 20~240 mm, 60~300 mm, and 80~430 mm, respectively. This study provides reliable support for maize irrigation practices in Heilongjiang Province, China.

Funder

Opening Project of Key Laboratory of Efficient Use of Agricultural Water Resources

the Ministry of Agriculture and Rural Affairs of the People’s Republic of China

Basic Scientific Research Fund of Heilongjiang Provincial Universities

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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