首页> 外文期刊>Journal of great lakes research >Coastal geomorphic response to seasonal water-level rise in the Laurentian Great Lakes: An example from Illinois Beach State Park, USA
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Coastal geomorphic response to seasonal water-level rise in the Laurentian Great Lakes: An example from Illinois Beach State Park, USA

机译:Laurentian大湖对季节性水位上升的海岸地貌响应:以美国伊利诺伊州海滩州立公园为例

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摘要

Hydrodynamic processes, such as fluctuating water levels, waves, and currents, shape coastlines across timescales ranging from minutes to millennia. In large lacustrine systems, such as the Laurentian Great Lakes, the role of water level in driving long-term (centuries to millennia) coastal evolution is well understood. However, additional research is needed to explore short-term (weeks to months) beach geomorphic response to fluctuating water level. Developing a process-focused understanding of how water level fluctuations shape coastal response across these shorter time scales is imperative for coastal management. Here, we present measurements of geomorphic response along a lacustrine beach ridge plain to seasonal water level fluctuations during a decadal high-stand in Lake Michigan water level. Frequent topographic change measurements revealed high spatial and temporal variability in geomorphic response to rising lake level. Sites immediately downdrift of shore protection began to erode immediately as lake level increased. The co-occurrence of peak seasonal lake levels and a modest increase in wave energy resulted in erosion and overwash at sites that resisted erosion during the initial seasonal rise in lake level. None of the sites in this study returned to their initial morphology following seasonal lake level rise. Given that peak water levels were nearly identical in 2017 and 2018, yet the majority of erosion at our sites occurred in 2017, we postulate that erosion associated with seasonal lake level rise is primarily a function of the change in annual maximum water level from year to year, rather than solely the elevation of the water level. (C) 2019 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.
机译:诸如水位,波浪和水流的波动等流体动力学过程会在从几分钟到几千年的整个时间范围内塑造海岸线。在大型湖泊系统中,例如Laurentian大湖区,水位在推动长期(几百年到几千年)沿海演变中的作用已广为人知。但是,还需要其他研究来探索短期(数周至数月)海滩地貌对水位波动的响应。对于沿海管理来说,必须以过程为重点的理解如何在较短的时间范围内水位波动如何影响沿海响应。在这里,我们介绍了密歇根湖水位年代际高位期间沿湖滩脊平原对季节性水位波动的地貌响应的测量结果。频繁的地形变化测量表明,地貌对湖泊水位上升的响应具有很高的时空变异性。随着湖泊水位的升高,沿岸保护立即下降的场所开始立即受到侵蚀。季节性湖面峰值的同时出现和波浪能的适度增加导致了在湖面最初的季节性上升期间抵抗侵蚀的地点的侵蚀和过度冲洗。季节性湖水位上升后,本研究中没有一个站点恢复到其初始形态。鉴于2017年和2018年的最高水位几乎相同,但是我们站点的大部分侵蚀发生在2017年,因此我们假设与季节性湖水位上升相关的侵蚀主要是每年最高水位变化的函数。年,而不仅仅是水位的升高。 (C)2019国际大湖研究协会。由Elsevier B.V.发布。保留所有权利。

著录项

  • 来源
    《Journal of great lakes research》 |2019年第6期|1055-1068|共14页
  • 作者

  • 作者单位

    Michigan State Univ Dept Geog Environm & Spatial Sci E Lansing MI 48824 USA|Univ Illinois Illinois State Geol Survey Prairie Res Inst Champaign IL USA;

    Univ Illinois Illinois State Geol Survey Prairie Res Inst Champaign IL USA;

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

    Erosion; Lake Michigan; Overwash; Beach; Great lakes; Coastal management;

    机译:侵蚀;密歇根湖;过度冲洗;海滩;五大湖;沿海管理;

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