Skip to content

Assessment of the uncertainties of global climate models in the evaluation of standardized precipitation and runoff indices: a case study

Departments

Global Change Impacts and Adaptation

Abstract

Uncertainties in climate change projection can originate from various sources and cause challenges. Thus, two specific approaches were developed in this study, for use in the selection of global climate models and in the assessment of drought occurrence. Considering the bias-corrected data, the performance of global climate models was evaluated using statistical methods, and the 14 best-ranked models were selected. These climate scenarios were used in the Long Ashton Research Station (LARS) downscaling model to obtain the precipitation and temperature time series. Identification of unit Hydrographs And Component flows from Rainfall, Evaporation, and Streamflow (IHACRES) was used to model the runoff time series. Standardized precipitation and runoff indices were considered to assess the probability of meteorological and hydrological droughts. Finally, the Bayesian method was used to analyse the uncertainty assessment of drought occurrence. This methodology was applied in the Karkheh River basin and presented the moderate drought condition as the most probable state.

Cite this activity

Salimian N., Nazari S. and Ahmadi A. (2021) Assessment of the uncertainties of global climate models in the evaluation of standardized precipitation and runoff indices: a case study. Hydrological Sciences Journal 66(9): 1419-1436. 10.1080/02626667.2021.1937178

Details

Research topics
Date 02.07.2021
Journal Hydrological Sciences Journal
Issue 9
Volume 66
Pages 1419-1436
Open Access Closed Access
Open Access Status Closed Access
Eprints_link https://cris.leibniz-zmt.de/id/eprint/4947
Peer-Reviewed

Research Spectrum

The content on this page is maintained by the authors.