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首页> 外文期刊>Ecological Modelling >Retrieval of the surface evapotranspiration patterns in the alpine grassland-wetland ecosystem applying SEBAL model in the source region of the Yellow River, China
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Retrieval of the surface evapotranspiration patterns in the alpine grassland-wetland ecosystem applying SEBAL model in the source region of the Yellow River, China

机译:应用SEBAL模型反演中国黄河源区高寒草地湿地生态系统蒸散量

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The source region of the Yellow River is located in the eastern of Tibetan Plateau at an altitude of 3900-5300. m. Applying the method of unsupervised classification, ISODATA, we defined the land covers of the region into five types, snow cover, water body, bare soil, low coverage grassland, and middle-and-high coverage grassland. To learn the pattern of evapotranspiration (ET) at large scale is essential for the local water use and management. With surface energy balance algorithm for land (SEBAL), we retrieved ET and the energy fluxes with Landsat 5 remote sensing images of the area in the summer of 2006. It was estimated that the instantaneous evapotranspiration was highest in middle-and-high coverage grassland of the southern region at 0.31. mm/h on average level, and lowest in bare soil of the northern region at 0.13. mm/h on average level. The key variables in SEBAL model, including the normalized difference vegetation index, surface albedo, the surface radiation temperature, net radiation, and sensible heat fluxes were calculated and illustrated to see their patterns in the region. At final, based on the correlation analysis among the key variables, we conducted a conceptual framework of cause-effect loops involving the main factors in the process of ET. Under the framework, we described the typical situations of hydro-heat in the source region.
机译:黄河源区位于青藏高原东部,海拔3900-5300。米应用非监督分类法ISODATA,将本地区的土地覆盖分为五种类型:积雪,水体,裸土,低覆盖草地和中高覆盖草地。大规模了解蒸散模式对当地用水和管理至关重要。利用土地表面能平衡算法(SEBAL),利用2006年夏季该地区的Landsat 5遥感图像反演了ET和能量通量。估计中高覆盖度草地的瞬时蒸散量最高南部地区为0.31。平均水平为mm / h,在北部地区的裸露土壤中最低,为0.13。平均水平的毫米/小时。计算并举例说明了SEBAL模型中的关键变量,包括归一化差异植被指数,地表反照率,地表辐射温度,净辐射和显热通量,以查看其在该区域的模式。最后,基于关键变量之间的相关性分析,我们进行了一个因果循环的概念框架,其中涉及了ET过程中的主要因素。在该框架下,我们描述了源区水热的典型情况。

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