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首页> 外文期刊>Journal of Paleolimnology >Lake levels in the Erie Basin of the Laurentian Great Lakes
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Lake levels in the Erie Basin of the Laurentian Great Lakes

机译:劳伦大湖伊利盆地的湖面

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摘要

Water levels in the Lake Erie basin are inferred from glacial lake times to present. An era of early to middle Holocene lowstands is defined below outlets by a submerged paleo-beach, and truncated reflectors in glaciolacustrine sediment beneath a mud-covered wave-cut terrace. Also, the glacial clay surface above the paleo-shore level has elevated shear strength because of porewater drainage during subaerial exposure. Below the paleo-shore where exposure did not occur, clay strength remained normal. Sedimentation rates were reduced during the lowstands. The distortion of once-level shore zone indicators by differential glacial rebound was removed by computing original elevations of the indicators using an empirical model of rebound based on observations of upwarped former lake shorelines. Erie water-level history was inferred from a plot of the original elevations of lake-level constraints and outlets versus age. The lake history was validated by reference to ~83 water-level indicators, not used as constraints. During the deglaciation, lake-crossing moraines were likely eroded by fluvial drainage into low-level Lake Ypsilanti and a subsequent unnamed low lake to produce the Lorain Valley and Pennsylvania Channel. Once inflow from the upper Great Lakes basins was directed to Ottawa Valley about 10,400 (12,270 cal BP), Erie water levels descended in a dry, evaporative climate to a closed lowstand during which ostracode δ18O increased ~2‰ above present values. Lake level began to rise 6,000 to 7,000 (6,830 to 7,860 cal) BP in response to increased atmospheric moisture and later, to northern inflow as the Nipissing Transgression returned upper Great Lakes drainage to Lake Erie by about 5,200 (6,000 cal) BP. At that time, the lake overflowed the uplifted Lyell–Johnson Sill north (downstream) of the present Niagara Falls at higher-than-present levels. After recession of the Falls breached this sill about ~3,500 (~3,770 cal) BP, Lake Erie fell 3–4 m to its present Fort Erie–Buffalo Sill. The extended low-water phase with its isolated sub-basins could have restricted migration of aquatic fauna. The early to middle Holocene closed-basin response highlights the sensitivity of Lake Erie to climatic reductions in its water budget.
机译:伊利湖流域的水位是从冰川湖时期推算出来的。出口下方的淹没的古海滩和在淤泥覆盖的波状台下的冰川湖沉积物中截断的反射体定义了全新世低层早期到中期的时代。同样,由于暴露于地下的孔隙水会流失,古海岸以上的冰川粘土表面具有较高的剪切强度。在没有发生暴露的古海岸以下,粘土强度保持正常。在低潮期,沉积速率降低。通过使用基于反弹前湖岸线观测的反弹经验模型,通过计算指标的原始高程,消除了由不同的冰川回弹所引起的曾经水平的海岸带指标的扭曲。伊利(Erie)的水位历史是根据原始湖泊水位限制和出水口与年龄的关系绘制的。参照约83个水位指标验证了湖泊的历史,但未将其用作限制条件。在冰消作用期间,河流冲刷的河谷可能被河流排水冲蚀到低层的伊普西兰蒂湖和随后未命名的低湖中,从而产生了洛兰河谷和宾夕法尼亚海峡。一旦从大湖流域上游流入约10,400(12,270 cal BP)的渥太华河谷,伊利水位在干燥,蒸发的气候中下降到封闭的低水位,在此期间ostracodeδ18 O比现在增加了〜2‰。价值观。随着大气湿度的增加,湖面水位开始上升6,000至7,000(6,830至7,860 cal)BP,随后,由于Nipissing海侵海平面上升了约5,200(6,000 cal),北大流入了伊利湖,导致北部流入。当时,该湖溢流了目前尼亚加拉大瀑布北部(下游)隆起的Lyell-Johnson Sill,高于当前水平。在瀑布的衰退破坏了约3500 BP(约3770卡)的门槛之后,伊利湖落下了3–4 m到目前的伊利堡-布法罗西尔堡。扩展的低水相及其孤立的流域可能限制了水生动物的迁徙。全新世早期到中期的封闭盆地响应突显了伊利湖对气候减少其水预算的敏感性。

著录项

  • 来源
    《Journal of Paleolimnology 》 |2012年第3期| p.493-511| 共19页
  • 作者单位

    Geological Survey of Canada Atlantic, Natural Resources Canada, Bedford Institute of Oceanography, Box 1006, Dartmouth, NS, B2Y 4A2, Canada;

    Geological Survey of Canada Atlantic, Natural Resources Canada, Bedford Institute of Oceanography, Box 1006, Dartmouth, NS, B2Y 4A2, Canada;

    Geological Survey of Canada, Natural Resources Canada, 601 Booth Street, Ottawa, ON, K1A 0E8, Canada;

    Graduate School of Oceanography, University of Rhode Island, Narragansett, RI, 02882, USA;

    GeoInformatics Services, 28 Crichton Park Road, Dartmouth, NS, B3A 2N8, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Large lakes; Holocene; Closed basin hydrology; Glacial rebound; Eastern North America;

    机译:大湖;全新世;封闭盆地水文学;冰川回弹;北美东部;

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