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首页> 外文期刊>Journal of water resource and protection >Study on Daily ET Based on SEBAL Model in a Typical Watershed of the Loess Plateau of China
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Study on Daily ET Based on SEBAL Model in a Typical Watershed of the Loess Plateau of China

机译:基于SEBAL模型的黄土高原典型流域每日ET研究。

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Under the double impact of global climate change and human intervention, surface evapotranspiration (ET), as an important part of hydrological cycle, is affecting watershed land-use planning and economic development. The Loess Plateau is mostly arid and semi-arid areas and its ecological environment is fragile. Drought and soil erosion not only reflects the regional climate change, but also human social activities and ecosystems. In particular, these processes are directly related to the thermal and water gradients exchange in the soil-vegetation-atmosphere system. Luoyugou watershed, a typical Loess Plateau watershed, is selected for this study. Estimating ET through SEBAL (Surface Energy Balance Algorithm for Land) model demonstrates that the SEBAL model in the watershed is more applicable. At the same time, ET seasonal variation is got, combined with the corresponding periods of the land-use changes for analysis. The results show that ET in the Northwest of the basin is higher than the East on the spatial distribution, especially in the high vegetation coverage area. Land use changes significantly in the watershed over the past 20 years, mainly transferring from sloping terraces to the terraces and woodland. ET significantly increased area accounts for 47.6% of the total area in the valley, however, conspicuously reduced area accounts for 13.2%. The daily ET of different land use types had significant differences with the ET of water land and wood land was the largest. It is important that this study on the ET distribution can aid policy and decision makers for land use planning and environmental construction in Luoyugou watershed.
机译:在全球气候变化和人类干预的双重影响下,作为水文循环重要组成部分的地表蒸散量正在影响流域的土地利用规划和经济发展。黄土高原多为干旱半干旱地区,其生态环境十分脆弱。干旱和水土流失不仅反映了区域气候变化,而且反映了人类的社会活动和生态系统。特别地,这些过程与土壤-植被-大气系统中的热梯度和水梯度交换直接相关。罗yu沟流域是典型的黄土高原流域,被选为这项研究。通过SEBAL(土地表面能量平衡算法)模型估算ET表明,流域中的SEBAL模型更适用。同时得到了ET的季节变化,并结合相应的土地利用变化时期进行分析。结果表明,盆地西北部的ET在空间分布上高于东部,特别是在高植被覆盖地区。在过去的20年中,流域的土地利用发生了重大变化,主要是从倾斜的梯田转移到梯田和林地。 ET显着增加了面积,占山谷总面积的47.6%,但是明显减少的面积却占13.2%。不同土地利用类型的日均ET与水地ET有显着差异,其中林地ET最大。重要的是,有关ET分布的研究可以帮助政策和决策者制定罗玉沟流域的土地利用规划和环境建设。

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