Modeling the spatial-temporal dynamics of net primary production in Yangtze River Basin using IBIS model

Zhen Zhang, Hong Jiang, Jinxun Liu, Qiu'an Zhu, Xiaohua Wei, Zi-shan Jiang, Guomo Zhou, Xiuying Zhang, Juejing Han
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Abstract

The climate change has significantly affected the carbon cycling in Yangtze River Basin. To better understand the alternation pattern for the relationship between carbon cycling and climate change, the net primary production (NPP) were simulated in the study area from 1956 to 2006 by using the Integrated Biosphere Simulator (IBIS). The results showed that the average annual NPP per square meter was about 0.518 kg C in Yangtze River Basin. The high NPP levels were mainly distributed in the southeast area of Sichuan, and the highest value reached 1.05 kg C/m2. The NPP increased based on the simulated temporal trends. The spatiotemporal variability of the NPP in the vegetation types was obvious, and it was depended on the climate and soil condition. We found the drought climate was one of critical factor that impacts the alterations of the NPP in the area by the simulation.
基于IBIS模型的长江流域净初级生产时空动态模拟
气候变化有显著影响长江流域的碳循环。为了更好地了解碳循环与气候变化关系的变化模式,利用综合生物圈模拟器(IBIS)对1956 ~ 2006年研究区净初级生产量(NPP)进行了模拟。结果表明,平均年NPP每平方米约0.518千克C在长江流域。高NPP水平主要分布在川东南地区,最高可达1.05 kg C/m2。NPP在模拟的时间趋势上有所增加。植被类型NPP的时空变异性明显,且受气候和土壤条件的影响。通过模拟发现,干旱气候是影响该地区NPP变化的关键因素之一。
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