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首页> 外文期刊>Global change biology >Evaluating drought effect on MODIS Gross Primary Production (GPP) with an eco-hydrological model in the mountainous forest, East Asia
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Evaluating drought effect on MODIS Gross Primary Production (GPP) with an eco-hydrological model in the mountainous forest, East Asia

机译:利用生态水文模型评估干旱对东亚山区森林MODIS总初级生产力(GPP)的影响

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摘要

Surface soil moisture dynamics is a key link between climate fluctuation and vegetation dynamics in space and time. In East Asia, precipitation is concentrated in the short monsoon season, which reduces plants water availability in the dry season. Furthermore, most forests are located in mountainous areas because of high demand for agricultural land, which results in increased lateral water flux and uneven distribution of plant available water. These climatic and topographic features of the forests make them more vulnerable to drought conditions. In this study, the eco-hydrological model (Regional Hydro-Ecological Simulation System) is validated with various water and carbon flux measurements in a small catchment in Korea. The model is then extended to the regional scale with fine-resolution remote sensing data to evaluate the Moderate Resolution Imaging Radiometer (MODIS) leaf area index and gross primary productivity (GPP) products. Long-term model runs simulated severe drought effect in 2001 well, which is clearly shown in the ring increment data. However, MODIS GPP does not capture this drought effect in 2001, which might be from a simplified treatment of water stress in the MODIS GPP algorithm. This study shows that the MODIS GPP products can potentially overestimate carbon uptake specifically during drought conditions driven by soil water stress.
机译:地表土壤水分动力学是气候波动与时空植被动力学之间的关键联系。在东亚,降水集中在短季风季节,这减少了干旱季节植物的水供应。此外,由于对农业用地的大量需求,大多数森林都位于山区,这导致横向水通量增加和植物可用水分配不均。森林的这些气候和地形特征使其更容易受到干旱的影响。在这项研究中,生态水文模型(区域水生态模拟系统)在韩国的一个小流域通过各种水和碳通量测量得到了验证。然后,使用精细分辨率的遥感数据将模型扩展到区域范围,以评估中等分辨率成像辐射计(MODIS)叶面积指数和总初级生产力(GPP)产品。长期模型对2001年的严重干旱影响进行了模拟,环增量数据清楚地表明了这一点。但是,MODIS GPP在2001年并未捕获到这种干旱影响,这可能是由于MODIS GPP算法中对水分胁迫的简化处理。这项研究表明,MODIS GPP产品可能潜在地高估了碳吸收,特别是在土壤水分胁迫驱动的干旱条件下。

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