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Scale criticality in estimating ecosystem carbon dynamics

机译:估计生态系统碳动态的规模临界

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摘要

Scaling is central to ecology and Earth system sciences. However, the importance of scale (i.e. resolution and extent) for understanding carbon dynamics across scales is poorly understood and quantified. We simulated carbon dynamics under a wide range of combinations of resolution (nine spatial resolutions of 250 m, 500 m, 1 km, 2 km, 5 km, 10 km, 20 km, 50 km, and 100 km) and extent (57 geospatial extents ranging from 108 to 1 247 034 km(2)) in the southeastern United States to explore the existence of scale dependence of the simulated regional carbon balance. Results clearly show the existence of a critical threshold resolution for estimating carbon sequestration within a given extent and an error limit. Furthermore, an invariant power law scaling relationship was found between the critical resolution and the spatial extent as the critical resolution is proportional to A(n) (n is a constant, and A is the extent). Scale criticality and the power law relationship might be driven by the power law probability distributions of land surface and ecological quantities including disturbances at landscape to regional scales. The current overwhelming practices without considering scale criticality might have largely contributed to difficulties in balancing carbon budgets at regional and global scales
机译:缩放对于生态学和地球系统科学至关重要。但是,人们对规模(即分辨率和程度)对于了解跨规模碳动态的重要性的了解和量化程度不高。我们在分辨率(250 m,500 m,1 km,2 km,5 km,10 km,20 km,50 km和100 km的九种空间分辨率)和范围(57个地理空间)的广泛组合下模拟了碳动力学在美国东南部范围从108到1 247 034 km(2)的范围内进行探索,以探讨模拟区域碳平衡的规模依存性。结果清楚地表明,存在一个临界阈值分辨率,用于估算给定范围内的碳固存和误差极限。此外,由于临界分辨率与A(n)成正比,因此在临界分辨率和空间范围之间发现了不变的幂律定标关系(n为常数,A为范围)。尺度临界性和幂律关系可能受到地表和生态量的幂律概率分布(包括景观对区域尺度的干扰)的驱动。当前不考虑规模关键性的压倒性做法可能在很大程度上造成了在区域和全球范围内平衡碳预算的困难

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