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首页> 外文期刊>Journal of Hydrology >The impacts of climate change and land cover/use transition on the hydrology in the upper Yellow River Basin, China
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The impacts of climate change and land cover/use transition on the hydrology in the upper Yellow River Basin, China

机译:黄河上游地区气候变化和土地覆盖/利用变化对水文学的影响

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Observed streamflow over the past decades in the upper Yellow River Basin (UYRB) was examined for changes in hydrological regime. The modified Variable Infiltration Capacity (VIC) model was employed to better understand climate change impact and long-term and recent land cover/use change impact as it relates to the "Grain for Green Project" and "Three Rivers Source Region Reserve" on water resources by examining mechanisms behind observed streamflow changes.UYRB hydrological regimes have undergone changes over the past decades as reflected by a decrease in wet and warm season streamflow, and annual streamflow. Progressively more streamflow has been generated in the early part of the year compared to the latter part, consequently leading to the earlier occurrence of the day representing the midpoint of yearly mass flow. VIC simulations suggest that these changes in observed streamflow were due to the combined effects of changes in precipitation, evapotranspiration, rainfall runoff, and baseflow and were caused primarily by climate change above Tang Nai Hai (TNH) hydrometric station. Below TNH where human activity is relative intense, land cover/use change and reservoir release impacts became important. Changes in snowmelt runoff were negligible over the past decades. Owing to this, snowmelt runoff appeared to play only a modest role in the changing hydrology of the region. The conservation programs were shown to start to exhibit some positive impacts on water resources in the UYRB.
机译:检查了过去几十年来黄河流域上游(UYRB)观测到的水流,以寻找水文状况的变化。修改后的可变渗透能力(VIC)模型用于更好地了解气候变化影响以及长期和近期土地覆被/用途变化的影响,因为它与水的“绿色项目”和“三河源地区保护区”有关通过检查观测到的流量变化背后的机制来获取资源。在过去的几十年中,UYRB水文状况发生了变化,反映为湿季和暖季流量减少以及年流量减少。与下半年相比,在今年早些时候逐渐产生了更多的水流,因此导致一天中较早出现,这代表了年质量流量的中点。 VIC模拟表明,观测到的水流变化是由于降水,蒸散量,降雨径流和基流变化的综合影响,并且主要是由唐乃海(TNH)水文站上方的气候变化引起的。在人类活动相对活跃的TNH以下,土地覆盖/使用变化和水库释放影响变得很重要。在过去的几十年中,融雪径流的变化可忽略不计。因此,融雪径流在该地区不断变化的水文学中似乎只发挥了适度的作用。事实表明,这些保护计划已开始对“乌拉圭回合上游”的水资源产生一些积极影响。

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