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Sea-level rise, progradation, and shoreline erosion: A history of Horse Island Marsh, Rehoboth Bay, Delaware.

机译:海平面上升,恶化和海岸线侵蚀:特拉华州里霍博斯湾的马岛沼泽的历史。

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摘要

Stratigraphy, radiocarbon age estimates, and a local relative sea-level curve for Rehoboth Bay establish a three-stage evolutionary sequence for Horse Island marsh, Rehoboth Bay, Delaware. An initial transgressive sequence, accompanied by shoreline erosion, formed the marsh about 2000 ybp. Subsequently, a period of marsh shoreline progradation occurred which expanded the areal extent of the marsh. Over the past 200 years, erosion is once again the dominant shoreline process causing rapid shoreline retreat.;The shoreline of Horse Island marsh is currently eroding even though the marsh surface sedimentation rate is equal to or greater than the rate of local relative sea-level rise. This implies that other factors, such as wave climate and nearshore lagoonal sedimentation rates, play a significant role in shoreline processes. Depending upon the interactions of these variables, a marsh shoreline can either (1) drown, (2) retreat by erosion, or (3) prograde.;The marsh shoreline in western Rehoboth Bay, Delaware, is rapidly eroding due to wave attack. A 30--90 cm vertical scarp characterizes the shoreline and exposes the present-day rootmat and the underlying mud unit. Over a three-year period, average erosion rates ranged from 14 cm/yr to 43 cm/yr. Long-term erosion rates from nine different marsh shorelines were then plotted against the estimated wave power for each site to produce a regression equation that can be used to predict erosion rates for other marsh shorelines.;Three styles of shoreline erosion were observed. (1) Cleft and neck formation---V-shaped notches are cut into an initially "straight" shoreline. Between adjacent clefts, marsh necks, up to three meters in length, occur creating an undulatory shoreline geometry. (2) Neck cut-off---marsh necks can be cut off from the marsh creating a small marsh "stack." (3) Undercutting with rootmat toppling-wave action erodes the lower mud unit faster than the overlying rootmat creating an overhang that eventually topples into the bay.
机译:里霍博斯湾的地层学,放射性碳年龄估计和局部相对海平面曲线为特拉华州里霍博斯湾的马岛沼泽建立了三个阶段的演化序列。最初的海侵序列伴随海岸线侵蚀,形成了约2000 bp的沼泽。随后,发生了一段沼泽海岸线扩展,扩大了沼泽的面积范围。在过去的200年中,侵蚀再次成为导致海岸线快速退缩的主要海岸线过程。;尽管沼泽地表沉积速率等于或大于当地相对海平面速率,马岛沼泽的海岸线目前仍在侵蚀。上升。这意味着其他因素,例如波浪气候和近岸泻湖沉积率,在海岸线过程中起着重要作用。取决于这些变量的相互作用,沼泽海岸线可能(1)被淹死,(2)因侵蚀而退缩,或(3)前进。;特拉华州里霍博斯湾西部的沼泽海岸线由于波浪袭击而迅速侵蚀。一条30--90厘米的垂直陡崖是海岸线的特征,并露出了当今的根垫和下面的泥浆单元。在三年期间,平均侵蚀率在14厘米/年至43厘米/年之间。然后将九个不同沼泽海岸线的长期侵蚀率与每个站点的估计波浪功率作图,以产生可用于预测其他沼泽海岸线侵蚀率的回归方程。观察到三种类型的海岸线侵蚀。 (1)裂口和颈部形成-V形切口切成最初的“笔直”海岸线。在相邻的裂口之间,长达三米的沼泽脖子出现,形成起伏的海岸线几何形状。 (2)脖子割断-沼泽的脖子可以从沼泽割断,形成一个小的沼泽“堆”。 (3)根垫的倾覆波作用比根上的根垫更快地侵蚀了下部的泥浆单元,形成了一个悬垂物,最终将其倾倒入海湾。

著录项

  • 作者

    Schwimmer, Reed Andrew.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Physical Geography.;Geology.;Physical Oceanography.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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