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Functionality Evaluation of the Wave Suppressor and Sediment Collection (WSSC) System: Wave Reduction, Sediment Collection, Mathematical Model, and Preliminary Field Evaluation.

机译:抑波器和沉积物收集(WSSC)系统的功能评估:减波,沉积物收集,数学模型和初步田间评估。

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摘要

Erosion along shorelines in open water bodies and waterways is a major cause in conversion of wetlands and uplands to an open water environment. Conventional shoreline protective structures are expensive to construct in these environments, and they may impede environmental exchanges that are essential for connectivity and functionality. The Wave Suppression and Sediment Collection (WSSC) System (Wave Robber(TM)) could become an alternative Device in shoreline protection. The primary goals of this study are to evaluate its performance in both wave reductions and sediment collection in the lab, and to optimize the design and to compare the efficiency of the Device in different conditions. This study showed that the WSSC can collect and retain sediment while reducing about 84 to 90% wave height. A new mass balance model was developed to evaluate its performance in sediment collection. A variable &agr;, ranging from 0 to 1, represents the sediment collection efficiency of the Devices, was introduced into this model. The sediment data fitted the model reasonably well, yielding the correlation coefficients of about 0.87. Modeling results show that the sediment collection efficiency of WSSC for silt-clay soil was about 14%. The model used could become useful for not only evaluating this Device, but even using it to evaluate existing Devices. The sensitivity study showed that the wave height and the initial concentration were the most important factors effecting sediment collection. Water depth also plays an important role in that it reduces the sediment collection as the water depth increases. The preliminary field study showed some elevation changes behind the WSSC due to sediment accumulation.
机译:开放水域和水道沿海岸线的侵蚀是将湿地和高地转变为开放水域环境的主要原因。在这些环境中,传统的海岸线保护结构的建造成本很高,并且它们可能会阻碍对连通性和功能至关重要的环境交换。波浪抑制和沉积物收集(WSSC)系统(Wave Robber™)可能会成为海岸线保护中的替代设备。这项研究的主要目标是评估实验室在减波和沉积物收集方面的性能,优化设计并比较设备在不同条件下的效率。这项研究表明,WSSC可以收集和保留沉积物,同时降低约84%至90%的波高。开发了一种新的质量平衡模型,以评估其在泥沙收集中的性能。将范围从0到1的变量&agr;表示设备的沉积物收集效率,引入该模型。沉积物数据很好地拟合了模型,相关系数约为0.87。模拟结果表明,WSSC对粉质黏土的沉积效率约为14%。所使用的模型不仅可以用于评估此设备,甚至可以用于评估现有设备。敏感性研究表明,波高和初始浓度是影响沉积物收集的最重要因素。水深还起着重要作用,因为随着水深的增加,它会减少沉积物的收集。初步的现场研究表明,由于沉积物的堆积,WSSC后面的一些海拔变化。

著录项

  • 作者

    McCoy, Nicholas.;

  • 作者单位

    University of Louisiana at Lafayette.;

  • 授予单位 University of Louisiana at Lafayette.;
  • 学科 Civil engineering.;Design.;Environmental engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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