4.7 Article

Investigating the Propagation From Meteorological to Hydrological Drought by Introducing the Nonlinear Dependence With Directed Information Transfer Index

期刊

WATER RESOURCES RESEARCH
卷 57, 期 8, 页码 -

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1029/2021WR030028

关键词

drought propagation; nonlinear dependence; directed information transfer index; Pearl River Basin

资金

  1. National Natural Science Foundation of China [51909117, 51825901]
  2. Heilongjiang Provincial Science Fund for Distinguished Young Scholars [YQ2020E002]
  3. Guangdong Provincial Key Laboratory of Soil and Groundwater Pollution Control [2017B030301012]
  4. State Environmental Protection Key Laboratory of Integrated Surface Water-Groundwater Pollution Control

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This study investigates the propagation mechanism from meteorological to hydrological drought by introducing the non-linear dependence with DITI, and constructs a new drought response time evaluation system. Results show that the characteristics of meteorological drought events and the sensitivity of hydrological drought to meteorological drought affect the effective drought propagation rate, while the meteorological drought trigger thresholds can influence the duration of hydrological drought events.
Meteorological drought is the fuse of hydrological drought, and understanding the propagation mechanisms from meteorological to hydrological drought is of great significance to the monitoring and prevention of hydrological drought. Besides the linear dependence, this study thoroughly investigated the propagation from meteorological to hydrological drought by introducing the nonlinear dependence with directed information transfer index (DITI) for the first time. In this study, the standardized precipitation index and the standardized runoff index were used to represent meteorological drought and hydrological drought, respectively. A new drought response time (DRT) evaluation system was constructed based on the maximum Pearson correlation coefficient and DITI, simultaneously considering the linear and nonlinear relationships between meteorological drought and hydrological drought. Moreover, the relationships of drought characteristics (duration and severity) between these two types of drought were established by using run theory and mathematical function, and the trigger thresholds from meteorological to hydrological drought were then determined. The results indicate that: (a) the effective drought propagation rate was mainly affected by the characteristics of meteorological drought events and the sensitivity of hydrological drought to meteorological drought; (b) the DRT in the Pearl River Basin (PRB) was mainly concentrated in 2-5 months, and the drought translation rate in the PRB was relatively large; and (c) the duration of hydrological drought events was longer in the sub-regions with smaller meteorological drought trigger thresholds.

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