Drought assessment and development trend in Mu Us Sandy Land based on standardized precipitation and potential evapotranspiration index
作者:LIANG Li’e, Wang Xiaohan, Chao Yan, Jiamin Li, Yonghua Zhu · 发表于:Climate Services · 年份:2025 · DOI:10.1016/j.cliser.2025.100588 · 被引用次数:4 · 研究领域:Hydrology and Drought Analysis、Climate variability and models、Hydrology and Watershed Management Studies
• The multi-scale drought index is calculated from high quality climate data. • The drought trend was analyzed by improved M−K test. • The temporal and spatial characteristics of drought are based on EOF analysis. • Multi-threshold operating theory is used to identify drought events. • Drought prediction based on different emission scenarios. Global warming leads to more frequent droughts. Therefore, in order to understand the development characteristics of drought, based on high-resolution climate data, the Mann-Kendall test, empirical orthogonal function decomposition and multi-threshold operation theory were adopted to analyze the characteristics of the multi-scale standardized precipitation index (SPI) and the standardized potential evapotranspiration index (SPEI) from 2002 to 2021. Based on CMIP6, the development trend of drought under different emission scenarios from 2021 to 2040 was predicted through multi-model ensemble (MME). The results show that both SPI and SPEI effectively identify the drought conditions in MUSL. The short-term scale (1/3 month) of SPI is stable in identifying drought with precipitation deficiency, and SPEI is more sensitive to sudden drought driven by high temperature. Both indicators on a long-term scale (6/12 months) can effectively monitor persistent drought. In the low-emission scenario (SSP126/245), drought is mainly dominated by precipitation changes. The results of SPI and SPEI are relatively consistent and both can be used for monitorin...