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Assessing the climatic effects and feedback mechanisms of large-scale crop irrigation using the improved WRF model

delete2026-07-29
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OA
AI
H
Haodong Deng
Y
Yu Wang
C
Chaoqun Li *
Q
Qingming Wang
F
Fusheng Li
D
Dengming Yan *
X
Xiaoxue Chen
K
Kai Hou
M
Mingkun Sun
X
Xie Lian
DOI:10.1016/j.agwat.2026.110670delete
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Abstract

Abstract

En 中文
• LSCI alters surface energy balance and increases ET by 2.85%. • Irrigation in HHH basin caused an average cooling of 0.19°C • About 46% of irrigation-induced ET was recycled into local precipitation. • Monsoon winds drove over 30 mm of precipitation increase in downwind plains. • The basin-scale irrigation-to-precipitation conversion rate reached 14.65%.
Keywords:
Irrigation
WRF model
Precipitation
Water vapor
Temperature

Journal

Agricultural Water Management cover
Agricultural Water Management
IF:
6.5
Papers:
8.6K
Citations:
3.5W

Organization

H
Y
yellow river engineering consulting co., ltd.
Scholars:
353
Papers: 290
Citations: 1
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