与时俱进:从农业潜力到过去土地利用的空间明确重建

Patrick T Willett, W Christopher Carleton, Nils Broothaerts, Ralf Vandam
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引用次数: 0

摘要

过去的土地利用重建是研究长期人类生态动力学和解决人类世起源与进化动态等迫切问题的重要工具。特别是,农业用地覆盖重建对于理解人类-环境的长期动态变化至关重要。然而,大多数过去的农业用地模型都严重依赖于建模假设,对已知考古遗址位置的利用有限,无法为其估算提供依据,而且往往仅限于对花粉捕集湖周围集水区内植物类型所占百分比的一般估算。由于缺乏集水区以外的信息,而且即使在集水区内,空间分辨率也很低,这些都限制了这些模型的实用性。为了解决这个问题,我们提出了一种新方法,将考古预测建模与基于花粉的农业土地覆盖物重建相结合,以得出更准确、空间更清晰的过去土地覆盖物估计值。在此,我们介绍了一项案例研究的结果,该研究利用新方法绘制了土耳其西南部西陶鲁斯山脉地区的改进型过去土地覆盖图。研究区域环绕萨加拉索斯,这是一个古代城市中心,该地区的定居历史长达九千年。我们采用 "考古潜力局部适应模型"(LAMAP)方法,为研究区域制作了五个考古预测模型,时间跨度从希腊化时期到奥斯曼帝国晚期。然后,我们将这些预测表面与 "大型遗址植被丰度区域估算"(REVEALS)花粉土地覆盖重建相结合,该重建基于从研究区域内三个集水区提取的沉积岩芯中的花粉。最后,我们利用未用于预测的数据,将得出的混合土地覆盖模型与考古记录进行了比较。我们发现,混合土地覆盖模型与研究区域已知的农业用地范围非常吻合。这些结果表明,所提出的方法是将基于花粉的土地覆盖模型与考古数据相结合的可行方法,并能产生更准确的、基于经验的土地覆盖重建,反映过去真实的人类活动。
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Changing with the times: From agricultural potential to spatially explicit reconstructions of past land use
Past land-use reconstructions are a key tool for studying long-term human ecodynamics and addressing pressing questions about the origins and evolutionary dynamics of the Anthropocene. In particular, agricultural landcover reconstructions are vital for understanding long-term human-environment dynamics. Most past agricultural land-use models, however, rely heavily on modelling assumptions, make limited use of known archaeological site locations to constrain or inform their estimates and tend to be limited to general estimates of percentages of plant types within catchments around pollen trapping lakes. The lack of information outside catchment areas and low spatial resolution even within catchments constrain the utility of these models. To address this problem, we propose a new approach that combines archaeological predictive modelling with pollen-based agricultural landcover reconstructions to produce more accurate, spatially explicit past landcover estimates. Here, we present the results of a case study deploying the new approach to produce improved past landcover maps for a region in the Western Taurus Mountains, southwestern Turkey. The study area surrounds Sagalassos, an antique urban centre with a regional settlement history encompassing nine millennia. We produced five archaeological predictive models for the study region using the ‘Locally Adaptive Models of Archaeological Potential’ (LAMAP) method spanning the Hellenistic through Late Ottoman period. We then combined those predictive surfaces with ‘Regional Estimates of VEgetation Abundance from Large Sites’ (REVEALS) pollen landcover reconstructions for the same periods based on pollen from sediment cores extracted from three catchments within the study area. Lastly, we compared the resulting hybrid landcover models to the archaeological record using data not used to make the predictions. We found that the hybrid landcover model aligned very well with the known extents of agricultural land-use from the study area. These results indicate that the proposed approach is a viable way to combine pollen-based landcover models with archaeological data and produce more accurate, empirically-based landcover reconstructions reflecting real human activity in the past.
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