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Spatial simulation of evapotranspiration of semi-arid Inner Mongolian grassland based on MODIS and eddy covariance data

机译:基于MODIS和涡度协方差数据的内蒙古半干旱草原蒸散量空间模拟

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摘要

In semi-arid regions of Central Asia, water shortage results from low annual precipitation (P) with high interannual variability. Evapotranspiration (ET) dominates water balance losses entirely. Previous studies showed large differences between individual grassland sites in the partitioning of ET into evaporation and transpiration, but only little difference in the evaporative ratio ET/P. The hydrological model BROOK90 was applied to the Xilin river catchment in Inner Mongolia (China) in combination with data from moderate resolution imaging spectroradiometer (MODIS) and ET measurements. The ET part of the model was parameterised using several years of eddy covariance (EC) measurements over grasslands differing in grazing intensity and leaf area index (LAI). Using a relatively well-established relationship of LAI and P as well as LAI and temperature derived from MODIS, the water balance components of a 16 km2 sample area in the catchment were modelled with a 1 km2 resolution for the vegetation period of 2006. All pixels were modelled assuming a similar ET control as at the EC sites. Spatial variation in ET as well as in the partitioning of ET between transpiration and evaporation could be identified. The results indicate the potential of using MODIS data and BROOK90 to upscale ET of semi-arid grasslands from site to larger grass dominated catchments.
机译:在中亚半干旱地区,缺水是由于年降水量低且年际变化较大。蒸散量(ET)完全控制着水平衡损失。先前的研究表明,在将ET分为蒸发和蒸腾作用的过程中,各个草地站点之间存在很大差异,但是蒸发比ET / P仅有很小的差异。水文模型BROOK90结合中分辨率成像光谱仪(MODIS)和ET测量的数据应用于内蒙古锡林河流域。使用几年在不同放牧强度和叶面积指数(LAI)上的草地上的涡旋协方差(EC)测量来对模型的ET部分进行参数化。使用相对完善的LAI和P关系以及LAI和MODIS得出的温度,以2006年植被期为1 km2的分辨率对流域16 km2样本区域的水平衡分量进行了建模。所有像素假设与EC站点的ET控件相似,对模型进行建模。可以确定ET的空间变化以及蒸腾和蒸发之间的ET分配。结果表明,利用MODIS数据和BROOK90可以将半干旱草原的ET从场地扩展到以草为主的集水区。

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