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Winter climate signal in boreal clastic-biogenic varves: a comprehensive analysis of three varved records from 1890 to 1990 AD with meteorological and hydrological data from Eastern Finland

机译:Boreal Cliast-Biogenic的冬季气候信号传真:从1890年到1990年的三种变种记录综合分析,来自芬兰东部的气象和水文数据

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Clastic-biogenic varves are widely used for reconstructing past climate: in boreal environments, the accumulation of minerogenic clasts on the lake floor is generally considered a proxy for past variations in spring floods reflecting previous winter conditions. However, the physical mechanisms behind this winter climate sensitivity and the influence of catchment type on the varve formation are not fully investigated. Here, we present a winter climate record inferred from the clastic laminae of three lakes located on the region of fine-grained tills in Eastern Finland spanning from AD 1890 to 1990. The minerogenic varve data are compared with instrumental meteorological and hydrological time series in order to investigate the physical link between winter and spring climate and minerogenic matter accumulation. Our analyses reveal that the climate-catchment mechanisms operating in the region of fine-grained tills differ crucially from previously described climate catchment interactions on sand moraine-dominated catchments in Finland, where the maximum river discharge in spring controls the clastic lamina formation. However, in contrast to earlier boreal varve records from Central Finland, the clastic lamina formation in the studied region correlates negatively with spring temperatures and winter precipitation. This could be an artefact of varying catchment dynamics but also related to the regional climate. The lakes surrounded by catchments characterized by fine-grained tills are more sensitive to cold and dry winters. The differences in the sensitivity of varve characteristics to climate, highlights the importance of understanding the catchment dynamics in detail in order to better understand climatic forcing.
机译:碎片 - 生物元素变化广泛用于重建过去的气候:在北方环境中,湖泊地板上的微生物泥浆的积累通常被认为是过去春天洪水的过去变化的代理,反映了以前的冬季条件。然而,这种冬季气候敏感性背后的物理机制和集水型对变形形成的影响尚未完全研究。在这里,我们展示了一个冬季气候记录从位于从1890年至1990年的东部芬兰的细粒度耕种地区的三个湖区的碎片薄荷型记录推断出来。将微生物变化数据与仪器气象和水文时间序列进行比较探讨冬季和春季气候和微生物物质积累之间的物理联系。我们的分析表明,在芬兰的砂碛主导集水区的最高描述的气候集水区相互作用中,气候集水区机制在芬兰的砂碛主导集水区中的差异很大。然而,与来自芬兰中部的早期北方变形记录相比,所研究区域中的碎屑薄层形成与春天温度和冬季沉淀负相关。这可能是不同集水动态的人工制品,但也与区域气候有关。由细粒粒细胞的集水区包围的湖泊对寒冷和干燥的冬季更敏感。变化特征对气候的敏感性的差异突出了详细了解集水动力学的重要性,以便更好地了解气候迫使。

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