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Aeolian sand preserved in Silver Lake: a new signal of Holocene high stands of Lake Michigan

机译:银湖保存的风沙:密歇根湖全新世高耸的树立新信号

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Aeolian sand within lake sediment from Silver Lake, Michigan can be used as a proxy for the timing of high lake levels of Lake Michigan. We demonstrate that the sand record from Silver Lake plotted as percent weight is in-phase with the elevation curve of Lake Michigan since the mid-Holocene Nipissing Phase. Because fluctuations in Lake Michigan's lake level are recorded in beach ridges, and are a response to climate change, the aeolian sand record within Silver Lake is also a proxy for climate change. It appears that increases in dune activity and lake sand are controlled by similar climatic shifts that drive fluctuations in lake level of Lake Michigan. High lake levels destabilize coastal bluffs that drive dune sand instability, and along with greater wintertime storminess, increase niveo-aeolian transport of sand across lake ice. The sand is introduced into the lake each spring as the ice cover melts.
机译:来自密歇根州银湖的湖泊沉积物中的风沙可以用来替代密歇根湖高水位的时间。我们证明,自中全新世Nipissing相以来,以银百分数表示的银湖沙记录与密歇根湖的高程曲线是同相的。由于密歇根湖的湖面涨落被记录在海滩的山脊中,并且是对气候变化的反应,因此,银湖内的风沙记录也是气候变化的代表。沙丘活动和湖沙的增加似乎是由类似的气候变化控制的,该气候变化驱动了密歇根湖湖面的波动。较高的湖泊水位使沿海沙丘不稳定,从而加剧了沙丘沙地的不稳定性,再加上冬季暴风雨,增加了沙丘在湖冰上的风沙运输。每年春天,随着冰盖融化,沙子被引入湖中。

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