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Coupling Tank Model and Lars-Weather Generator in Assessments of the Impacts of Climate Change on Water Resources

机译:耦合罐模型和Lars天气发电机评估气候变化对水资源的影响

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With the aim of assessing the impact of climate change on surface water resources, a conceptual rainfall-runoff model (the tank model) was coupled with LARS-WG as a weather generator model. The downscaled daily rainfall, temperature, and evaporation from LARS-WG under various IPCC climate change scenarios were used to simulate the runoff through the calibrated Tank model. A catchment (4648 ha) located in the southern basin of the Caspian Sea was chosen for this research study. The results showed that this model has a reasonable predictive capability in simulating minimum and maximum temperatures at a level of 99%, rainfall at a level of 93%, and radiation at a level of 97% under various scenarios in agreement with the observed data. Moreover, the results of the rainfall-runoff model indicated an increase in the flow rate of about 108% under the A1B scenario, 101% under the A2 scenario, and 93% under the B1 scenario over the 30-year time period of the discharge prediction.
机译:旨在评估气候变化对地表水资源的影响,概念降雨 - 径流模型(坦克模型)与Lars-WG作为天气发生器模型。在各种IPCC气候变化场景下,Lars-WG的次要日落,温度和蒸发用于通过校准的罐模型来模拟径流。选择了一个集水区(4648公顷),位于里海南部的海域,为这项研究进行了选择。结果表明,该模型具有合理的预测能力,在达到99%,降雨量的水平,降雨量为93%的水平,辐射与观察到的数据一致的各种情况下的辐射为97%。此外,降雨 - 径流模型的结果表明,在A2场景下的101%下,101%的流量增加了约108%的流速,在排放的30年期间,在B1场景下的93%预言。

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