Atmospheric and Climate Sciences

Atmospheric and Climate Sciences

ISSN Print: 2160-0414
ISSN Online: 2160-0422
www.scirp.org/journal/acs
E-mail: acs@scirp.org
"Evaluation of Spatial-Temporal Variability of Drought Events in Iran Using Palmer Drought Severity Index and Its Principal Factors (through 1951-2005)"
written by Mojtaba Zoljoodi, Ali Didevarasl,
published by Atmospheric and Climate Sciences, Vol.3 No.2, 2013
has been cited by the following article(s):
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[7] Assessing long-term spatio-temporal variability in humidity and drought in Iran using Pedj Drought Index (PDI)
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[8] Assessing vegetation restoration potential under different land uses and climatic classes in northeast Iran
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[9] Hydrological Modelling for Water Resource Management in a Semi-Arid Mountainous Region Using the Soil and Water Assessment Tool: A Case Study in Northern …
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[12] Climate-Triggered Drought as Causes for Different Degradation Types of Natural Forests
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[13] An investigation of the climate change impacts on the water resources in Iran
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[14] Drought in Luvuvhu River Catchment-South Africa: Assessment, Characterisation and Prediction
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[15] Development of a Non-Linear Integrated Drought Index (NDI) for Managing Drought and Water Resources Forecasting in the Upper Tana River Basin-Kenya
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[16] Global-scale drought risk assessment for agricultural systems
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[17] Seasonal Drought Pattern Changes Due to Climate Variability: Case Study in Afghanistan
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[18] Spatio-temporal characterization of Agricultural Drought using Soil Moisture Deficit Index (SMDI) in the Upper Tana River basin, Kenya
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[19] Spatio-Temporal Drought Characterization and Forecasting Using Indices and Artificial Neural Networks. A Case of the Upper Tana River Basin, Kenya
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[20] sc_PDSI is more sensitive to precipitation than to reference evapotranspiration in China during the time period 1951–2015
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[21] Effects of Monsoon, Shamal and Levar winds on dust accumulation over the Arabian Sea during summer–The July 2016 case
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[22] SEASONAL DROUGHT PATTERN CHANGES DUE TO CLIMATE VARIABILITY IN AFGHANISTAN
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[23] Modification of the Palmer Drought Severity Index (PDSI) based on Atmosphere-Land Surface Interaction Scheme (ALSIS) in Karkheh River Basin
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[24] Climatic signals in stable carbon isotope ratios of Juniper and Oak tree rings from northern Iran
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[25] Spatiotemporal drought evaluation of Hyrcanian deciduous forests and semi‐steppe rangelands using MODIS time‐series in Northeast Iran
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[26] Assessing the impact of cold and warm ENSO on drought over Iran
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[27] Study and Simulation of Severe Dust Storms in the West and Southwest of Iran
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[28] Visualizing Geographic Information in Event Logs
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[29] Исследование и моделирование сильных пыльных бурь на западе и юго-западе Ирана
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[30] Drought Modeling Examples
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[31] A Study of Drought Management for Ben Tre Province in the Mekong Delta, Vietnam
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[32] Agricultural Drought Indices: Combining Crop, Climate, and Soil Factors
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[33] Assessment of dust activity and dust-plume pathways over Jazmurian Basin, southeast Iran
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[34] Stochastic Drought Forecasting Exploration for Water Resources Management in the Upper Tana River Basin, Kenya
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[35] The relationship between drought and tourist arrivals: A case study of Kruger National Park, South Africa
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[36] Effect of Air Temperature on Historical Trend of Long-Term Droughts in Different Climates of Iran
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[37] Detection of homogeneous precipitation regions at seasonal and annual time scales, northwest Iran
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[38] Analysis of spatial and temporal drought variability in a tropical river basin using Palmer Drought Severity Index (PDSI)
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[39] Modeling the Spatial and Temporal Variability of Precipitation in Northwest Iran
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[40] Comparison of various drought indices to monitor drought status in Pakistan
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[41] Characterization of temporal and spatial drought risk events using surface water supply index (SWSI) in a tropical river basin
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[42] Spatial variability analysis of precipitation in northwest Iran
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[43] Iran's Socio-economic Drought: Challenges of a Water-Bankrupt Nation
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[44] Drought assessment and forecasting using indice and artificial neural networks for the upper Tana River basin, Kenya
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[45] Spatio-Temporal Distribution of Drought and its Characteristics over Pakistan
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[46] Regime shift in Arabian dust activity, triggered by persistent Fertile Crescent drought
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[47] Spatio-temporal Drought Characterization for the Upper Tana River Basin, Kenya Using Standardized Precipitation Index (SPI)
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[48] Spatio-temporal drought characterization for the Upper Tana River Basin, Kenya using the Standardized Precipitation Index (SPI)
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[49] Rural adaptation strategies to drought, case study: Pshtang Village in Ravansar township
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[50] Meteorological aspects associated with dust storms in the Sistan region, southeastern Iran
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[51] Drought Forecasting Using Indices and Artificial Neural Networks for Upper Tana River Basin, Kenya-A Review Concept
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[52] Trends in meteorological and agricultural droughts in Iran
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[53] ANALYSIS OF DROUGHT EFFECT ON ANNUAL STREAM FLOWS OF RIVER MALEWA IN THE LAKE NAIVASHA BASIN, KENYA
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[54] Drought Indices Assessment for Sustainable Water Resources Management-a Case Review for upper Tana River basin, Kenya
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