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Three distinct global estimates of historical land-cover change and land-use conversions for over 200 years

机译:对200多年来历史土地覆盖变化和土地利用转化的三个不同的全球估计

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Earth’s land cover has been extensively transformed over time due to both human activities and natural causes. Previous global studies have focused on developing spatial and temporal patterns of dominant human land-use activities (e.g., cropland, pastureland, urban land, wood harvest). Process-based modeling studies adopt different strategies to estimate the changes in land cover by using these land-use data sets in combination with a potential vegetation map, and subsequently use this information for impact assessments. However, due to unaccounted changes in land cover (resulting from both indirect anthropogenic and natural causes), heterogeneity in land-use/cover (LUC) conversions among grid cells, even for the same land use activity, and uncertainty associated with potential vegetation mapping and historical estimates of human land use result in land cover estimates that are substantially different compared to results acquired from remote sensing observations. Here, we present a method to implicitly account for the differences arising from these uncertainties in order to provide historical estimates of land cover that are consistent with satellite estimates for recent years. Due to uncertainty in historical agricultural land use, we use three widely accepted global estimates of cropland and pastureland in combination with common wood harvest and urban land data sets to generate three distinct estimates of historical land-cover change and underlying LUC conversions. Hence, these distinct historical reconstructions offer a wide range of plausible regional estimates of uncertainty and the extent to which different ecosystems have undergone changes. The annual land cover maps and LUC conversion maps are reported at 0.5°×0.5° resolution and describe the area of 28 landcover types and respective underlying land-use transitions. The reconstructed data sets are relevant for studies addressing the impact of land-cover change on biogeophysics, biogeochemistry, water cycle, and global climate.
机译:由于人类活动和自然原因,随着时间的推移,地球的土地覆盖已发生了广泛的变化。先前的全球研究集中于发展人类主要土地利用活动(例如农田,牧场,城市土地,木材采伐)的时空格局。基于过程的建模研究采用不同的策略,通过将这些土地利用数据集与潜在的植被图结合使用来估算土地覆盖的变化,然后将该信息用于影响评估。但是,由于土地覆被的未知变化(源于间接的人为和自然原因),网格单元之间的土地利用/覆盖(LUC)转换的异质性,即使对于相同的土地使用活动,以及与潜在的植被图相关的不确定性与人类土地利用的历史估算相比,土地覆盖估算与从遥感观测获得的结果相比有很大不同。在这里,我们提出一种隐式解释这些不确定性引起的差异的方法,以便提供与近年来的卫星估计值一致的历史土地覆盖率估计值。由于历史农业用地的不确定性,我们结合普遍的木材采伐和城市土地数据集,使用了三个广为接受的全球耕地和牧场估计,结合了三个历史土地覆盖率变化和基本LUC转换的估计值。因此,这些独特的历史重建为不确定性以及不同生态系统变化的程度提供了范围广泛的合理区域估计。年度土地覆盖图和LUC转换图以0.5°×0.5°的分辨率报告,描述了28种土地覆被类型的面积以及相应的潜在土地利用过渡。重建的数据集与研究土地覆盖变化对生物地球物理,生物地球化学,水循环和全球气候的影响有关。

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