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      • Open Access Article

        1 - Climate Change Assessment in Ardebil province during 2011-2030
        ladan kazemi rad
        Outputs of GCMs downscaled by LARS-WG model for assessing the Climate Change in Ardebil Province. Outputs from 2 GCMs models (MPEH5, HADCM3) based on 2 scenarios (A2, B1) were used for predicting climatic parameters during 2011-2030. Model that has lowest difference com More
        Outputs of GCMs downscaled by LARS-WG model for assessing the Climate Change in Ardebil Province. Outputs from 2 GCMs models (MPEH5, HADCM3) based on 2 scenarios (A2, B1) were used for predicting climatic parameters during 2011-2030. Model that has lowest difference compared to the average results has chosen as a suitable model for predicting the future. Outputs of chosen Model were compared with the base data to determine their trends. The results showed that minimum and maximum temperatures (0.4 ° C) and dry day length (9 days) will increase. Also rainfall (27.5 mm), wet day length (9 days), hot day length (2 days) and frost day length (4 days) will decrease in the period of future. Manuscript profile
      • Open Access Article

        2 - Investigating the effect of climate change on temperature and precipitation using the LARS-WG model (case study: Bashar river basin)
        Hamid reza Panahi Hossein Montaseri Aliakbar Hekmat zadeh Reza Khalili
        The increase of greenhouse gases and the resulting increase in temperature have caused the balance of the earth's climate system and climate changes in most areas of the earth. Therefore, adapting and dealing with climate changes in the water resources sector along with More
        The increase of greenhouse gases and the resulting increase in temperature have caused the balance of the earth's climate system and climate changes in most areas of the earth. Therefore, adapting and dealing with climate changes in the water resources sector along with reducing their reflection should be seriously addressed as part of a comprehensive regional response to the vulnerability caused by climate change. In this study, using LARS-WG exponential microscale software and the HadCM3 oceanic atmospheric general circulation model in the form of different scenarios defined in the fourth IPCC report (basic scenarios), including scenario A1, A2, B1, B2, which are more related to regional issues. And the world is concerned from an economic and environmental point of view, the amount of temperature changes and precipitation in the next 100 years of Bashar river basin was predicted. Then the fifth report scenario (RCP) was used and the results were compared with the basic scenarios. The results showed that in both scenarios in the coming period, we will face a large increase in average air temperature, but the decrease in precipitation will not be significant. In the climate change scenario section, RCPs until the end of the 21st century indicate an increase in temperature and a decrease in precipitation in the coming years. The amount of temperature changes in RCP2.6 was estimated between 3 and 13% and in RCP8.5 between 4 and 14%; This increase in temperature on a large scale increases evaporation and prolongs drought periods. Manuscript profile