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Dominant climatic factors driving annual runoff changes at the catchment scale across China

机译:在中国流域范围内主导年径流量变化的主要气候因素

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With global climate changes intensifying, the hydrological response to climate changes has attracted more attention. It is beneficial not only for hydrology and ecology but also for water resource planning and management to understand the impact of climate change on runoff. In addition, there are large spatial variations in climate type and geographic characteristics across China. To gain a better understanding of the spatial variation of the response of runoff to changes in climatic factors and to detect the dominant climatic factors driving changes in annual runoff, we chose the climate elasticity method proposed by Yang and Yang (2011). It is shown that, in most catchments of China, increasing air temperature and relative humidity have negative impacts on runoff, while declining net radiation and wind speed have positive impacts on runoff, which slow the overall decline in runoff. The dominant climatic factors driving annual runoff are precipitation in most parts of China, net radiation mainly in some catchments of southern China, air temperature and wind speed mainly in some catchments in northern China.
机译:随着全球气候变化的加剧,对气候变化的水文响应引起了更多关注。理解气候变化对径流的影响不仅有利于水文和生态,而且有利于水资源的计划和管理。此外,中国各地的气候类型和地理特征都有很大的空间差异。为了更好地了解径流对气候因子变化的响应的空间变化,并检测驱动年径流变化的主要气候因子,我们选择了Yang和Yang(2011)提出的气候弹性方法。结果表明,在中国大多数流域,气温和相对湿度的升高对径流有负面影响,而净辐射和风速下降对径流有积极影响,这减缓了径流的整体下降。导致年径流量的主要气候因素是中国大部分地区的降水,净辐射主要发生在华南一些流域,气温和风速主要发生在中国北方一些流域。

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