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首页> 外文期刊>Journal of Hydrology >Impacts of climate change and reservoir operation on streamflow and flood characteristics in the Lancang-Mekong River Basin
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Impacts of climate change and reservoir operation on streamflow and flood characteristics in the Lancang-Mekong River Basin

机译:气候变化和水库运行对澜沧江-湄公河流域水流和洪水特征的影响

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The Lancang-Mekong River Basin (LMRB) is one of the most important transboundary river basins in Asia. While climate change perturbs the streamflow and affects flood events, reservoir operation may mitigate or aggravate this impact. Therefore, quantitative assessment of the climate change impact and reservoir effect on the LMRB is a vital prerequisite for future hydropower development and environmental protection. This study aimed to estimate the variation of the streamflow and flood characteristics affected by climate change and reservoir operation within the LMRB. A reservoir module was incorporated into the Variable Infiltration Capacity (VIC) model to simulate the streamflow susceptible to the reservoirs. It was found that the reservoirs had a substantial influence on the streamflow during 2008-2016, when many reservoirs were constructed in the LMRB. The reservoirs across the Lancang River (the upper Mekong River located in China) reduced the annual average streamflow by 5 at Chiang Sean station (northern Thailand) in 2008-2016, whereas their influence became undetectable downstream of Vientiane station (northern Laos). The streamflow changes downstream of Mukdahan station at southern Laos (including the stations in Cambodia and southern Vietnam) were mainly attributed to the local reservoirs and climate change. Compared with the baseline period of 1985-2007, the upstream reservoir operation dramatically affected streamflow at the midstream stations with higher dry season streamflow (+15 to +37), but lower wet season streamflow was less affected (-2 to -24) in 2008-2016. Climate change increased the magnitude and frequency of the flood by up to 14 and 45, respectively,whereas the reservoir operation reduced them by 16 and 36, respectively. Our findings provide insights into the interaction between climate change and reservoir operation and their integrated effects on the streamflow, informing and supporting water management and hydropower development in
机译:澜沧江-湄公河流域是亚洲最重要的跨界河流流域之一。虽然气候变化扰乱了水流并影响了洪水事件,但水库运行可能会减轻或加剧这种影响。因此,定量评估气候变化对LMRB的影响和水库效应是未来水电开发和环境保护的重要前提。本研究旨在估算LMRB内受气候变化和水库运行影响的径流和洪水特征的变化。在可变渗透能力 (VIC) 模型中加入了一个水库模块,以模拟易受水库影响的流量。研究发现,在2008-2016年期间,水库对水流有重大影响,当时LMRB建造了许多水库。2008-2016年,澜沧江(位于中国湄公河上游)的水库使清山站(泰国北部)的年平均流量减少了5%,而万象站下游(老挝北部)的影响变得难以察觉。老挝南部莫达汉站下游(包括柬埔寨和越南南部站)的径流变化主要归因于当地水库和气候变化。与1985-2007年基线期相比,2008-2016年旱季径流量较高(+15%至+37%),而雨季流量较低(-2%至-24%),上游水库运行对中游站径流量影响显著。气候变化使洪水的规模和频率分别增加了14%和45%,而水库运行分别减少了16%和36%。我们的研究结果为气候变化与水库运行之间的相互作用及其对径流的综合影响提供了见解,为水资源管理和水电开发提供了信息和支持。

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