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Climate and Hydrological Change Characteristics and Applicability of GLDAS Data in the Yarlung Zangbo River Basin, China

机译:中国雅隆Zangbo河流域GLDAS数据的气候和水文改变特征及适用性

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摘要

The hydrological cycle is particularly sensitive to and is greatly affected by global climate change. In addition, runoff change has a strong influence on the hydrological cycle and migration of biogenic substances. The Yarlung Zangbo River basin in China is a typical basin for which climate and hydrological data are lacking. Land surface models can provide data for studying land surface substance and energy circulation, which are meaningful to face climate change. The midstream region of the Yarlung Zangbo River basin, which is strongly affected by climate change, was selected as the study area. First, the observed mean temperature, precipitation and runoff characteristics were analysed. Second, after combining the Global Land Data Assimilation System (GLDAS) and the water balance equation, we simulated climate and hydrological processes for the same time period. Finally, the correlation and error between GLDAS and observed data were analysed to verify applicability of the GLDAS data, and the impacts of climate factors on runoff were discussed. The results revealed that under the background of global warming, precipitation, temperature, and runoff changed significantly and showed strong consistency during the research period. Mean monthly precipitation, temperature and runoff exhibited clear cyclical fluctuations of approximately 12 months, and they all tended to increase. GLDAS is not a good system to describe the land surface conditions of the Yarlung Zangbo River basin all the time. However, within a certain time period, GLDAS data have a good applicability in the basin. Thereinto, the GLDAS mean monthly precipitation was moderately correlated with observed precipitation, with a correlation coefficient of 0.75. GLDAS mean monthly temperature was highly correlated with observed data, with a correlation coefficient of 0.94. Based on the Brunke ranking method, it indicates that GLDAS-Noah-based runoff data were closer to observed runoff data than the three other GLDAS models. Correlation coefficients between precipitation and runoff for the three time scales were higher than those between temperature and runoff. This means that rainfall was the main factor affecting natural runoff change, as opposed to temperature, and it can control the evolution of the river to some degree. This paper indicates the impacts of climate change on runoff and the application of GLDAS for data-limited basins. The results provide a deeper understanding of the Yarlung Zangbo River basin characteristics and can provide a scientific basis for the management of water resources and policy implementation for this basin.
机译:水文循环对全球气候变化的影响特别敏感。此外,径流变化对生物物质的水文循环和迁移产生了强烈影响。中国亚隆Zangbo河流域是一种典型的盆地,气候和水文数据缺乏。陆地表面模型可以为研究土地表面物质和能量循环提供数据,这有意义地面临气候变化。雅隆Zangbo河流域的中游地区受到气候变化强烈影响的,被选为研究区。首先,分析了观察到的平均温度,降水和径流特性。其次,结合全球土地数据同化系统(GLDAS)和水平衡方程后,我们模拟了同一时间段内的气候和水文过程。最后,分析了GLDAS与观察数据之间的相关性和误差以验证GLDA数据的适用性,并讨论了气候因素对径流的影响。结果表明,在全球变暖,降水,温度和径流的背景下发生了重大改变,在研究期间表现出强烈的一致性。平均每月降水量,温度和径流表现出大约12个月的清晰周期性波动,它们都趋于增加。 GLDAS不是一个良好的系统,可以一直描述Yarlung Zangbo River河流域的土地面条。但是,在一定时间内,GLDAS数据在盆地中具有良好的适用性。其中,GLDAs平均月沉淀与观察到的沉淀相当相关,相关系数为0.75。 GLDAS平均每月温度与观察到的数据高度相关,相关系数为0.94。基于Brunke排名方法,表示基于GLDA-Noah的径流数据比其他三个其他GLDA模型更接近观察到的径流数据。三个时间尺度的降水和径流之间的相关系数高于温度和径流之间的相关系数。这意味着降雨是影响自然径流变化的主要因素,而不是温度,它可以控制河流的演变到某种程度上。本文表明了气候变化对径流的影响以及全球厕所对数据限制盆地的应用。结果对雅隆Zangbo河流域特征更深入了解,可以为这条盆地管理水资源和政策实施提供科学依据。

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