Improved identification and monitoring of meteorological, agricultural, and hydrological droughts using the modified nonstationary drought indices in the Yellow River Basin of China

Author:

Niu Ben,Li Yi,Li Liu De,Xie Lulu,Wang Lei,Jiang Xiaohui,Feng Hao,Yu Qiang,He Jianqiang,Lin Haixia

Funder

Ministry of Water Resources

NSW Department of Primary Industries

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference40 articles.

1. Crop evapotranspiration: guidelines for computing crop water requirements, FAO irrigation and drainage paper 56;Allen;Food and Agriculture Organization of the United Nations (FAO), Rome.,1998

2. Multimodel ensemble projection of meteorological drought scenarios and connection with climate based on spectral analysis;Aryal;Int. J. Climatol.,2020

3. A Non-stationary Reconnaissance Drought Index (NRDI) for drought monitoring in a changing climate;Bazrafshan;Water Resour. Manage.,2018

4. Amplification of non-stationary drought to heatwave duration and intensity in eastern China: Spatiotemporal pattern and causes;Bian;J. Hydrol.,2022

5. Drought propagation in Northern China Plain: a comparative analysis of GLDAS and MERRA-2 datasets;Chen;J. Hydrol.,2020

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