Impact of cropping systems on spatiotemporal characteristics of irrigation water demand in China’s staple croplands
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(Academy of Eco-civilization Development for Jing-Jin-Ji Megalopolis, Tianjin Normal University, Tianjin 300387, China)

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TV213.4

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    Abstract:

    To address the insufficient quantitative characterization of the relationship between cropping systems, phenological information and irrigation water demand (IWD), this study utilized phenological data of staple crops in China from 2000 to 2019 to characterize cropping systems, growth stages and crop rotation patterns. Based on the normalized difference vegetation index, potential evapotranspiration and precipitation data, the IWD was estimated using the crop coefficient method, and its linkage with cropping systems was quantified. The results show that the IWD exhibited significant spatiotemporal heterogeneity, with interannual fluctuations ranging from 65.9 billion to 127.3 billion m3. High-IWD years were generally synchronized with drought events, and high-IWD regions were concentrated in high-intensity multiple-cropping regions, such as the Huang-Huai-Hai Plain and the middle-lower reaches of the Yangtze River. Due to the significant spatiotemporal mismatch between the peak crop growth periods and the peak precipitation period, the IWD showed distinct seasonal peaks from May to August. The mean unit-area IWD of the wheat-maize rotation system was consistently higher than those of other cropping systems from 2000 to 2019, making it the dominant factor influencing the spatial distribution of IWD.

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曹永强,刘子华,常奂宇,等.种植制度对中国主粮农田补水需求量时空特征的影响[J].水利水电科技进展,2025,45(5):148-154.(CAO Yongqiang, LIU Zihua, CHANG Huanyu, et al. Impact of cropping systems on spatiotemporal characteristics of irrigation water demand in China’s staple croplands[J]. Advances in Science and Technology of Water Resources,2025,45(5):148-154.(in Chinese))

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History
  • Received:June 24,2025
  • Revised:
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  • Online: September 29,2025
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