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Temperature changes in Three Gorges Reservoir Area and linkage with Three Gorges Project

机译:三峡库区温度变化和三峡工程联系

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The Three Gorges Project (TGP) is one of the largest hydroelectric projects throughout the world. It has brought many benefits to the society but also led to endless debates about its environmental and climatic impacts. Monitoring the spatiotemporal variations of temperature in the Three Gorges Reservoir Area (TGRA) is important for understanding the climatic impacts of the TGP. In this study, we used remote sensing-based land surface temperature (LST) and ground-measured air temperature data to investigate temperature changes in the TGRA. Results showed that during the daytime in summer, LST exhibited significant cooling (1-5 degrees C) in the downstream region of the reservoir, whereas LST during the nighttime in winter exhibited significant warming (1-5 degrees C) across the entire reservoir. However, these cooling and warming effects were both locally constrained within 5km buffer along the reservoir. The changes in air temperature were consistent with those in LST, with 0.67 degrees C cooling in summer and 0.33 degrees C warming in winter. The temperature changes along the reservoir not only resulted from the land-water conversion induced by the dam impounding but were also related to the increase of vegetation cover caused by the ecological restoration projects. Significant warming trends were also found in the upstream of TGRA, especially during the daytime in summer, with up to 5 degrees C for LST and 0.52 degrees C for air temperature. The warming was caused mainly by urban expansion, which was driven in part by the population resettlement of TGP. Based on satellite observations, we investigated the comprehensive climatic impacts of TGP caused by multiple factors.
机译:三峡项目(TGP)是全球最大的水电项目之一。它为社会带来了许多好处,但也导致了关于其环境和气候影响的无穷无尽的争论。监测三峡库区(TGRA)中的温度的时空变化对于了解TGP的气候冲击是重要的。在这项研究中,我们使用遥感的地表温度(LST)和地面测量的空气温度数据来研究TGRA的温度变化。结果表明,在白天在夏季,LST在储层的下游区域中表现出显着的冷却(1-5℃),而LST在冬季夜间在整个储层中显示出显着的变暖(1-5摄氏度)。然而,这些冷却和升温效果沿储存器局部在5km缓冲器内局部受约束。空气温度的变化与LST中的变化一致,夏季含有0.67摄氏度,冬季升温0.33摄氏度。储层的温度变化不仅是由坝蓄积损耗引起的土地 - 水转换而导致的,而且还与生态修复项目引起的植被覆盖的增加。 TGRA的上游也发现了显着的变暖趋势,特别是在夏季白天期间,LST高达5摄氏度,空气温度为0.52℃。变暖主要是通过城市扩张引起的,这部分是由TGP的人口移民安置而导致的。基于卫星观察,我们调查了多种因素引起的TGP的全面气候冲击。

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