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Adding precision to the spatial factor of vegetation reconstructed from pollen assemblages

机译:通过花粉组合重建植被的空间因子增加精度

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摘要

A pollen diagram from a small lake, Kutulahdenlampi, in northern Finland is interpreted in terms of the development of forest vegetation during the Holocene. The abundance of each of the forest taxa is considered independently by means of pollen accumulation rates (PARs), using as the reference material, long term average pollen deposition values monitored by a network of pollen traps. Particular attention is paid to the arrival of spruce and to the species in the original forests that this newcomerreplaces. A model of pollen dispersal and deposition developed by Sugita is used to estimate the area around the lake that the pollen assemblage is most clearly reflecting. This relevant source area of pollen (RSAP), for the present day situations is c.1,500 m. Pollen loadings calculated for a simulated landscape that mimics (i) that of the present day and (ii) for the situation at 8,000 BP (as deduced from the PARs) are compared with the pollen assemblages from the diagram at those points in time, andare seen to be compatible. The advantages of combining PAR and modelling to look at the spatial scale of vegetation reconstructions are discussed.
机译:从全新世期间森林植被的发展来解释芬兰北部一个小湖Kutulahdenlampi的花粉图。通过使用花粉陷阱网络监测的长期平均花粉沉积值作为参考材料,借助花粉积累速率(PAR)独立地考虑每个森林分类单元的丰度。特别要注意的是云杉的到来以及这种新来者替代的原始森林中的树种。杉田公司开发的花粉扩散和沉积模型用于估算花粉组合最清楚地反映出的湖泊周围区域。在当前情况下,此花粉的相关来源区域(RSAP)为1,500 m。将模拟场景的花粉载荷与(i)今天的场景和(ii)8,000 BP的情况(从PAR推导得出)进行模拟,并与这些时间点的图表中的花粉组合进行比较,看起来是兼容的。讨论了结合PAR和建模以查看植被重建空间尺度的优势。

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