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Evaluation of the Change-Factor and LARS-WG Methods of Downscaling for Simulation of Climatic Variables in the Future (Case study: Herat Azam Watershed, Yazd - Iran)

Publish Year: 1393
Type: Journal paper
Language: English
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JR_ECOPER-3-1_001

Index date: 22 December 2024

Evaluation of the Change-Factor and LARS-WG Methods of Downscaling for Simulation of Climatic Variables in the Future (Case study: Herat Azam Watershed, Yazd - Iran) abstract

Prediction of climatic variables on a local scale by General Circulation Models of the atmosphere is impossible because the models have large-scale network of resolution. Therefore, downscaling methods are used to solve this problem. Since the climate change phenomenon can affect different systems such as, water resources, agriculture, environment, industry and economy as well, Selection of the most suitable downscaling method is very important. This study aims to evaluate performance of Change-Factor (CF) and LARS-WG downscaling methods in prediction of future climate variability of the Azam River Watershed, located in Yazd Province, Iran, for the period of 2010-2039. For this purpose, the CGCM3-AR4 model under the A2 emission scenario and also two methods of downscaling including statistical (LARS-WG) and proportional (CF) approaches were applied. The results showed increasing of temperature by both downscaling methods in the Azam River watershed in the future. Average temperature difference obtained from the two methods is about 3 to 4 percent. On the other hand, based on the climate condition, the amount of rainfall varied in the whole watershed, in a way that the future maximum precipitation difference calculated by two downscaling methods is about 30 percent.

Evaluation of the Change-Factor and LARS-WG Methods of Downscaling for Simulation of Climatic Variables in the Future (Case study: Herat Azam Watershed, Yazd - Iran) Keywords:

Evaluation of the Change-Factor and LARS-WG Methods of Downscaling for Simulation of Climatic Variables in the Future (Case study: Herat Azam Watershed, Yazd - Iran) authors

Elahe Goodarzi

Former M.Sc. Student, Department of Watershed Management, Faculty of Natural Resources, Yazd University, Yazd, Iran

Mohammadtaghi Dastorani

Associate Professor, Faculty of Natural Resources and Environment, Ferdowsi University of Mashhad (FUM), Mashhad, Iran

Alireza Massah bavani

Associate Professor, Department of Irrigation and Drainage Engineering, Faculty of Abouraihan, University of Tehran, Pakdasht, Iran

Ali Talebi

Associate Professor, Department of Watershed Management, Faculty of Natural Resources, Yazd University, Yazd, Iran

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Fiseha, B.M., Melesse, A.M., Romano, E., Volpi, E. and Fiori, ...
Hu, Y., Maskey, S. and Uhlenbrook, S. Downscaling daily precipitation ...
Hu, Y., Maskey, S. and Uhlenbrook, S. Trends in temperature ...
IPCC- TGCIA. General Guidelines on The use of scenario data ...
IPCC-TGCIA. Special Report Emissions Scenarios (SRES). Summary for policymakers. A ...
Jones, P.D. and Hulme, M. Calculating regional climatic times series ...
Kamal, A., Massah Bavani, A. and Najafi, M. Uncertainty of ...
King, L.M., Irwin, S., Sarwar, R., Ian McLeod, A. and ...
Massah Bavani, A.R. and Morid, S. Impact of climate change ...
Mitchell, T.D. Pattern Scaling: An Examination of Accuracy of the ...
Muluye, G. Comparison of statistical methods for downscaling daily precipitation. ...
Nnyaladzi, B. and Brent, Y. Rainfall variability and trends in ...
Qian, B., Gameda, S., Hayhoe, H., De Jong, R. and ...
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Semenov, M.A. Simulation of extreme weather events by a stochastic ...
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