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Effects of topography on simulated net primary productivity at landscape scale

机译:地形对景观尺度模拟净初级生产力的影响

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摘要

Local topography significantly affects spatial variations of climatic variables and soil water movement in complex terrain. Therefore, the distribution and productivity of ecosystems are closely linked to topography. Using a coupled terrestrial carbon and hydrological model (BEPS-TerrainLab model), the topographic effects on the net primary productivity (NPP) are analyzed through four modelling experiments for a 5700 km area in Baohe River basin, Shaanxi Province, northwest of China. The model was able to capture 81% of the variability in NPP estimated from tree rings, with a mean relative error of 3.1%. The average NPP in 2003 for the study area was 741 gCm~(-2) yr~(-1) from a model run including topographic effects on the distributions of climate variables and lateral flow of ground water. Topography has considerable effect on NPP, which peaks near 1350 m above the sea level. An elevation increase of 100 m above this level reduces the average annual NPP by about 25 g C m~(-2). The terrain aspect gives rise to a NPP change of 5% for forests located below 1900 m as a result of its influence on incident solar radiation. For the whole study area, a simulation totally excluding topographic effects on the distributions of climatic variables and ground water movement overestimated the average NPP by 5%.
机译:局部地形对复杂地形中气候变量的空间变化和土壤水分运动有很大影响。因此,生态系统的分布和生产力与地形密切相关。利用地面碳水文耦合模型(BEPS-TerrainLab模型),通过四个模拟实验,分析了陕西省宝河流域5700 km区域的地形对净初级生产力(NPP)的影响。该模型能够捕获从树年轮估计的NPP的81%变异性,平均相对误差为3.1%。根据包括地形变化对气候变量分布和地下水侧向影响的模型运行,该研究区域2003年的平均NPP为741 gCm〜(-2)yr〜(-1)。地形对NPP有很大影响,NPP在海拔1350 m附近达到峰值。在此高度以上增加100 m,可使年平均NPP降低约25 g C m〜(-2)。地形方面,由于其对入射太阳辐射的影响,导致1900 m以下森林的NPP变化为5%。对于整个研究区域,完全排除地形对气候变量和地下水运动分布的影响的模拟将平均NPP高估了5%。

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