A new agricultural drought index considering the irrigation water demand and water supply availability

被引:0
|
作者
Zikang Xing
Miaomiao Ma
Yongqiang Wei
Xuejun Zhang
Zhongbo Yu
Peng Yi
机构
[1] Hohai University,State Key Laboratory of Hydrology
[2] Hunan Institute of Water Resources and Hydropower Research,Water Resources and Hydraulic Engineering
[3] China Institute of Water Resources and Hydropower Research,Research Center on Flood and Drought Disaster Reduction of the Ministry of Water Resources
[4] Hohai University,College of Hydrology and Water Resources
来源
Natural Hazards | 2020年 / 104卷
关键词
Drought; Agriculture; Index; Irrigation; Hydrological model;
D O I
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中图分类号
学科分类号
摘要
Agricultural drought has a tremendous impact on crop yields and economic development under the context of global climate change. As an essential component of water balance in irrigated areas, artificial irrigation, which is not widely incorporated into agricultural drought indices in previous studies. Therefore, an irrigation water deficit index (IWDI) based on the estimation of irrigation water demand and supply is proposed. The performance of the new index was compared with the Soil Moisture Anomaly Percentage Index (SMAPI) over the upstream of the Zi River basin (UZRB). The results indicated the IWDI is highly correlated with precipitation, runoff, and potential evapotranspiration, combined with a more comprehensive moisture condition than the previous agricultural drought index. Due to the consideration of crop growth process and farmland spatial distribution, the proposed index showed a significant advantage in stressing drought conditions of agricultural concentration area and eliminating the impact of invalid soil moisture drought of non-growing seasons. Furthermore, the drought condition identified by the new index presented a good agreement with the historical drought event that occurred in 2013.7–8, which accurately reproduced the soil moisture variation and vegetation growth dynamics.
引用
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页码:2409 / 2429
页数:20
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