Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models.
In recent years, the severe fluctuations in precipitation have affected various parts of the country. On the southern coasts of the Caspian Sea, precipitation as one of the important climatic parameters has undergone changes due to global climate change. In the present study, we tried to evaluate th...
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Kharazmi University
2017-12-01
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author | alimohammad khorshiddoust behrooz sarraf bagher ghermez cheshmeh fatemeh jafarzadeh |
author_facet | alimohammad khorshiddoust behrooz sarraf bagher ghermez cheshmeh fatemeh jafarzadeh |
author_sort | alimohammad khorshiddoust |
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description | In recent years, the severe fluctuations in precipitation have affected various parts of the country. On the southern coasts of the Caspian Sea, precipitation as one of the important climatic parameters has undergone changes due to global climate change. In the present study, we tried to evaluate the effect of climate change on rainfall in this region by applying a suitable model. In this study, observational period rainfall (1961-2001) was analyzed. the output of the HadCM3 model was used. At first, seven synoptic stations were selected and their data were analyzed in terms of accuracy, and length of statistical period, and lost data was restored. The AOGCM data were simulated using the SDSM model and the rainfall values were simulated for the observation period. After confirming the matching of the simulated data with observational data, the values of the Future (2039-2011) is estimated. The estimation errors of the SDSM model were calculated monthly by MBE and MAE criteria, and then compared. The output of the SDSM model was used to study the total annual precipitation in days with rainfall of more than 1 mm in the observation period and the upcoming period (2011-2039) by the R-Climdex model and the values of the PRCPTOT index Became zoning in the Future. The results showed that the model error in season with high rainfall is more than seasons with low rainfall. On a monthly scale, the maximum error occurred in the months of September, October, November and December. The maximum error in the fall and the minimum error was calculated in the spring and April and May months. According to the results, the total annual rainfall in the period of 2039-2011 will decrease in Anzali, Babolsar, Gorgan and Noshahr stations and rainfall will increase in stations of Astara, Ramsar and Rasht. Geographical distribution of selected were 5 sites in the Khuzestan, 20 sites in Bushehr, 24 sites in Hormozghan and 12 sites in Sistan and Baluchistan provinces. In total, 9000 sites were selected with a 2 km2 were suitable for large scale microalgae cultivation. The total area of these sites were estimated to be 18000 km2. The highest number of proper sites were found in Hormozghan province and lowest numbers of sites were found in Khuzestan province. The availability of technical service, carbon dioxide point resources from oil and gas units are an advantages for microalgae related activities in the Bushehr and Khuzestan provinces. The higher quality of water in the Sistan and Baluchistan province is an advantages for development of microalgae biomass production in the area.
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spelling | doaj-art-818da54ce1bc4c9fa6ec1fe7b5cf151f2025-01-31T17:24:06ZfasKharazmi Universityتحقیقات کاربردی علوم جغرافیایی2228-77362588-51382017-12-011747213226Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models.alimohammad khorshiddoust0behrooz sarraf1bagher ghermez cheshmeh2fatemeh jafarzadeh3 tabriz university tabriz university Researcher of Soil Conservation & Watershed Management Research Institute (SCWMRI) tabriz university In recent years, the severe fluctuations in precipitation have affected various parts of the country. On the southern coasts of the Caspian Sea, precipitation as one of the important climatic parameters has undergone changes due to global climate change. In the present study, we tried to evaluate the effect of climate change on rainfall in this region by applying a suitable model. In this study, observational period rainfall (1961-2001) was analyzed. the output of the HadCM3 model was used. At first, seven synoptic stations were selected and their data were analyzed in terms of accuracy, and length of statistical period, and lost data was restored. The AOGCM data were simulated using the SDSM model and the rainfall values were simulated for the observation period. After confirming the matching of the simulated data with observational data, the values of the Future (2039-2011) is estimated. The estimation errors of the SDSM model were calculated monthly by MBE and MAE criteria, and then compared. The output of the SDSM model was used to study the total annual precipitation in days with rainfall of more than 1 mm in the observation period and the upcoming period (2011-2039) by the R-Climdex model and the values of the PRCPTOT index Became zoning in the Future. The results showed that the model error in season with high rainfall is more than seasons with low rainfall. On a monthly scale, the maximum error occurred in the months of September, October, November and December. The maximum error in the fall and the minimum error was calculated in the spring and April and May months. According to the results, the total annual rainfall in the period of 2039-2011 will decrease in Anzali, Babolsar, Gorgan and Noshahr stations and rainfall will increase in stations of Astara, Ramsar and Rasht. Geographical distribution of selected were 5 sites in the Khuzestan, 20 sites in Bushehr, 24 sites in Hormozghan and 12 sites in Sistan and Baluchistan provinces. In total, 9000 sites were selected with a 2 km2 were suitable for large scale microalgae cultivation. The total area of these sites were estimated to be 18000 km2. The highest number of proper sites were found in Hormozghan province and lowest numbers of sites were found in Khuzestan province. The availability of technical service, carbon dioxide point resources from oil and gas units are an advantages for microalgae related activities in the Bushehr and Khuzestan provinces. The higher quality of water in the Sistan and Baluchistan province is an advantages for development of microalgae biomass production in the area. <link href="moz-extension://8b922523-7922-435a-ac74-8ddb59e9beaf/skin/s3gt_tooltip_mini.css" rel="stylesheet" type="text/css" > #s3gt_translate_tooltip_mini { display: none !important; } <link href="moz-extension://8b922523-7922-435a-ac74-8ddb59e9beaf/skin/s3gt_tooltip_mini.css" rel="stylesheet" type="text/css" > #s3gt_translate_tooltip_mini { display: none !important; }http://jgs.khu.ac.ir/article-1-2709-en.pdfrainfallclimate changesdsm modelsouthern coasts of caspian seaprcptot index. |
spellingShingle | alimohammad khorshiddoust behrooz sarraf bagher ghermez cheshmeh fatemeh jafarzadeh Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. تحقیقات کاربردی علوم جغرافیایی rainfall climate change sdsm model southern coasts of caspian sea prcptot index. |
title | Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. |
title_full | Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. |
title_fullStr | Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. |
title_full_unstemmed | Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. |
title_short | Estimation and Analysis of Caspian Region\'s Future Rainfalls by Using General Atmospheric Circulation Models. |
title_sort | estimation and analysis of caspian region s future rainfalls by using general atmospheric circulation models |
topic | rainfall climate change sdsm model southern coasts of caspian sea prcptot index. |
url | http://jgs.khu.ac.ir/article-1-2709-en.pdf |
work_keys_str_mv | AT alimohammadkhorshiddoust estimationandanalysisofcaspianregionsfuturerainfallsbyusinggeneralatmosphericcirculationmodels AT behroozsarraf estimationandanalysisofcaspianregionsfuturerainfallsbyusinggeneralatmosphericcirculationmodels AT bagherghermezcheshmeh estimationandanalysisofcaspianregionsfuturerainfallsbyusinggeneralatmosphericcirculationmodels AT fatemehjafarzadeh estimationandanalysisofcaspianregionsfuturerainfallsbyusinggeneralatmosphericcirculationmodels |