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Assessment of Climate Change Effects on Water Resources in the Yellow River Basin, China

机译:黄河流域气候变化对水资源的影响评价。

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The water resources in the Yellow River basin (YRB) are vital to social and economic development in North and Northwest China. The basin has a marked continental monsoon climate and its water resources are especially vulnerable to climate change. Projected runoff in the basin for the period from 2001 to 2030 was simulated using the variable infiltration capacity (VIC) macroscale hydrology model. VIC was first calibrated using observations and then was driven by the precipitation and temperature projected by the RegCM3 high-resolution regional climate model under the IPCC scenario A2. Results show that, under the scenario A2, the mean annual temperature of the basin could increase by 1.6 degrees C, while mean annual precipitation could decrease by 2.6%. There could be an 11.6% reduction in annual runoff in the basin according to the VIC projection. However, there are marked regional variations in these climate change impacts. Reductions of 13.6%, 25.7%, and 24.6% could be expected in the regions of Hekouzhen to Longmen, Longmen to Sanmenxia, and Sanmenxia to Huayuankou, respectively. Our study suggests that the condition of water resources in the YRB could become more severe in the period from 2001 to 2030 under the scenario A2.
机译:黄河流域(YRB)的水资源对于中国北部和西北部地区的社会和经济发展至关重要。流域拥有明显的大陆性季风气候,其水资源特别容易受到气候变化的影响。使用可变渗透能力(VIC)宏观水文模型模拟了2001年至2030年流域的预计径流量。首先使用观测值对VIC进行校准,然后在IPCC情景A2下,由RegCM3高分辨率区域气候模型预测的降水和温度来驱动VIC。结果表明,在方案A2下,流域的年平均温度可以增加1.6摄氏度,而年平均降水量可以减少2.6%。根据国际中心预测,流域的年径流量可能减少11.6%。但是,这些气候变化影响存在明显的地区差异。预计河口镇至龙门,龙门至三门峡和三门峡至花园口的区域分别减少13.6%,25.7%和24.6%。我们的研究表明,在情景A2下,黄河流域的水资源状况可能在2001年至2030年期间变得更加严峻。

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