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Ice Movement and Shoreline Modification, Lake Champlain, Vermont

机译:佛蒙特州尚普兰湖的冰运动和海岸线改造

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摘要

Measurements and observations of ice movements and shoreline modifications were made in 1968 on Lake Champlain, with detailed study on Shelburne Bay, near Burlington, Vermont. These investigations showed that distinctive ice movements on Shelburne Bay were caused by lake level rises, ice and snow ablation, and ice temperature fluctuations during the period of complete ice cover, and by wind action during ice breakup. Measured ice expansion and contraction movements can be approximated by theoretically considering the ice cover as a uniformly heated plate. Exact agreement between the observed and calculated values was not found, however, due to the complicating effects of snowfalls during ice contractions and varying lengths of the period of temperature increases during ice expansions. Shoreline modification, in particular ice rampart formation, is very limited on Lake Champlain due to the continuous snow cover, the development of numerous pressure ridges, the relatively short period of partial open water, and the weakened condition of the ice during ice breakup. Factors controlling ice-sediment interactions on Shelburne Bay are particle size, steepness of bottom slope, and shoreline configuration. Fine particle size, gentle bottom slope, and shoreline embayments together are associated with unrestricted ice movements and only minor ice ramparts. Relatively straight shorelines with intermediate particle size and bottom slope are most favorable for ice ramparts. Shoreline convexities with relatively steep bottom slope and coarse particle size favor pressure ridges.
机译:1968年在尚普兰湖上进行了冰运动和海岸线 修改的测量和观测,并在佛蒙特州伯灵顿附近的谢尔本湾进行了详细的 研究。这些调查 表明,谢尔本湾独特的冰运动是由 ,这是由湖水位上升,冰雪消融和冰温波动引起的。完整的冰盖,以及冰破裂时的 风动作。通过理论上将 冰盖视为均匀加热的板,可以近似估算出冰的膨胀和收缩 运动。找不到 的观测值与计算值之间的精确一致,但是,由于 是由于冰收缩期间降雪的复杂影响 和长度的变化在 冰膨胀期间温度升高的时期。 由于持续降雪,在尚普兰湖上的海岸线变化,特别是冰垒形成, sup> 覆盖,大量压力脊的形成,部分开放水的相对 较短时期以及冰破裂过程中冰的弱化条件 。控制谢尔本湾冰沉积物相互作用的因素包括粒径, 底部坡度的陡度和海岸线构造。细颗粒大小, 温和的底坡和海岸线浮游物一起 与不受限制的冰运动和仅较小的冰垒有关。 相对笔直的海岸线,中间粒径 和底部坡度最适合制冰垒。海岸线 的凸性具有相对陡峭的底部坡度和粗大的 尺寸,有利于压力脊。

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  • 来源
    《GSA Bulletin》 |1970年第1期|117-126|共10页
  • 作者

    W. PHILIP WAGNER;

  • 作者单位

    Department of Geology, University of Vermont, Burlington, Vermont 05401;

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  • 原文格式 PDF
  • 正文语种 eng
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