Numerical comparison of streamflow drought index (SDI) and standardized streamflow index (SSI) for evaluation of Isfahan drought status

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Опубликовано в::Geology, Ecology, and Landscapes vol. 9, no. 3 (Sep 2025), p. 893-907
Главный автор: Mohammad Hossein Jahangir
Другие авторы: Zarfeshani, Arian, Shaghayegh Danehkar
Опубликовано:
Taylor & Francis Ltd.
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022 |a 2474-9508 
024 7 |a 10.1080/24749508.2024.2359775  |2 doi 
035 |a 3259405745 
045 2 |b d20250901  |b d20250930 
100 1 |a Mohammad Hossein Jahangir  |u Department of Renewable Energies and Environment, Faculty of New Sciences and Technologies, University of Tehran , Tehran , Iran 
245 1 |a Numerical comparison of streamflow drought index (SDI) and standardized streamflow index (SSI) for evaluation of Isfahan drought status 
260 |b Taylor & Francis Ltd.  |c Sep 2025 
513 |a Journal Article 
520 3 |a ABSTRACT Hydrological droughts are the most serious and alarming variation of droughts due to their numerous long-term negative impacts on natural ecosystems, agricultural capacities, and the water regime of a specific region. Isfahan province, in Iran, is highly prone to this type of drought, and its arid climate has already made the efficient water management in this area a challenging task. Due to the lack of a uniform method for drought evaluation, various indices have been suggested by different researchers over the last few decades. The streamflow drought index (SDI) and standardized streamflow index (SSI) are the two primary hydrological drought indices that have been used in many regions with similar climatic conditions to Isfahan province. Their reliability in previous case studies and the easy computational process have made them suitable drought measurement tools for Isfahan. In this study, these two indices are calculated based on the obtained data from 10 hydrometric stations in Isfahan, for the timeframe (1988–2018). The analysis of SSI and SDI in this region shows consistent and station-specific drought patterns, with moderate drought conditions prevailing. These findings offer valuable insights for regional water resource management and climate adaptation, guiding policies to mitigate the impact of droughts. 
653 |a Climate adaptation 
653 |a Water resources management 
653 |a Arid climates 
653 |a Agricultural ecosystems 
653 |a Hydrometric stations 
653 |a Drought 
653 |a Stream flow 
653 |a Hydrology 
653 |a Drought conditions 
653 |a Water management 
653 |a Climatic conditions 
653 |a Resource management 
653 |a Hydrologic drought 
653 |a Drought index 
653 |a Environmental impact 
653 |a Stream discharge 
653 |a Drought patterns 
653 |a Environmental 
700 1 |a Zarfeshani, Arian  |u Faculty of New Sciences and Technologies, University of Tehran , Tehran , Iran 
700 1 |a Shaghayegh Danehkar  |u Faculty of Engineering, Kyushu University , Fukuoka , Japan 
773 0 |t Geology, Ecology, and Landscapes  |g vol. 9, no. 3 (Sep 2025), p. 893-907 
786 0 |d ProQuest  |t Research Library 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3259405745/abstract/embedded/ZKJTFFSVAI7CB62C?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3259405745/fulltextPDF/embedded/ZKJTFFSVAI7CB62C?source=fedsrch