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A 450 year record of spring-summer flood layers in annually laminated sediments from Lake Ammersee (southern Germany)

机译:来自德国南部阿默湖(Ammersee)的年积层沉积物中的春夏季洪水层的450年记录

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摘要

A 450 year spring-summer flood layer time series at seasonal resolution has been established from the varved sediment record of Lake Ammersee (southern Germany), applying a novel methodological approach. The main results are (1) the attainment of a precise chronology by microscopic varve counting, (2) the identification of detrital layers representing flood-triggered fluxes of catchment material into the lake, and (3) the recognition of the seasonally of these flood layers from their microstratigraphic position within a varve. Tracing flood layers in a proximal and a distal core and correlating them by application of the precise chronology provided information on the depositional processes. Comparing the seasonal flood layer record with daily runoff data of the inflowing River Ammer for the period from 1926 to 1999 allowed the definition of an approximate threshold in flood magnitude above which the formation of flood layers becomes very likely. Moreover, it was possible for the first time to estimate the "completeness" of the flood layer time series and to recognize that mainly floods in spring and summer, representing the main flood seasons in this region, are well preserved in the sediment archive. Their frequency distribution over the entire 450 year time series is not stationary but reveals maxima for colder periods of the Little Ice Age when solar activity was reduced. The observed spring-summer flood layer frequency further shows trends similar to those of the occurrence of flood-prone weather regimes since A.D. 1881, probably suggesting a causal link between solar variability and changes in midlatitude atmospheric circulation patterns.
机译:根据一种新颖的方法学方法,从Ammersee湖(德国南部)的破裂沉积记录中建立了一个具有450年季节性分辨率的春夏季洪水层时间序列。主要结果是:(1)通过微观阀门计数获得精确的时间顺序;(2)识别代表洪灾触发的集水材料通向湖泊的通量的碎屑层;(3)识别这些洪灾的季节在瓣膜中从其微地层位置开始沉积。跟踪近端和远端岩心中的洪水层,并通过应用精确的时间顺序将它们关联起来,从而提供了有关沉积过程的信息。将季节性洪水层记录与流入的阿默河(1926年至1999年)的每日径流量数据进行比较,就可以定义一个近似的洪水幅度阈值,超过此阈值很有可能形成洪水层。此外,首次有可能估算洪水层时间序列的“完整性”,并认识到代表该地区主要洪水季节的主要春季和夏季洪水已被很好地保存在沉积物中。它们在整个450年时间序列中的频率分布不是平稳的,但揭示了小冰期较冷时期(太阳活动减少时)的最大值。观测到的春夏季洪水层频率进一步显示出与自公元1881年以来易发洪水天气情况相似的趋势,这可能暗示了太阳变化与中纬度大气环流模式变化之间的因果关系。

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  • 来源
    《Water resources research》 |2010年第11期|p.W11528.1-W11528.16|共16页
  • 作者单位

    Section 5.2: Climate Dynamics and Landscape Evolution, GFZ German Research Centre forGeosciences, Telegrafenberg, D-14473 Potsdam, Germany;

    Section 5.2: Climate Dynamics and Landscape Evolution, GFZ German Research Centre forGeosciences, Telegrafenberg, D-14473 Potsdam, Germany;

    Section 5.2: Climate Dynamics and Landscape Evolution, GFZ German Research Centre forGeosciences, Telegrafenberg, D-14473 Potsdam, Germany;

    Laboratoire des Sciences du Climat et de Fnvironncment, UMR CEA-CNRS, Orme des Mersiers, F-91191 Gif-sur-Yvette, France.;

    Section 4.2: Inorganic and Isotope Geochemistry, GFZGerman Research Centre for Geosciences, Telegrafenberg, D-14473Potsdam, Germany.;

    Section 5.2: Climate Dynamics and Landscape Evolution, GFZ German Research Centre forGeosciences, Telegrafenberg, D-14473 Potsdam, Germany;

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