首页> 外文期刊>Shore and beach >Evaluating direct and strategic placement of dredged material for marsh restoration through model simulations
【24h】

Evaluating direct and strategic placement of dredged material for marsh restoration through model simulations

机译:通过模拟模拟评估落下材料的直接和战略安置沼泽恢复

获取原文
获取原文并翻译 | 示例
       

摘要

Dredged material can be used for marsh restoration by depositing it on the marsh surface (thin-layer placement), by releasing it at the mouth of channels and allowing tidal currents to transport it onto the marsh platform (channel seeding), or by creating new marshes over shallow areas of open water. We investigate the efficacy of these different methods using a comprehensive 2D marsh evolution model that simulates tidal dynamics, vegetation processes, bank and wave erosion, and ponding. Total marsh area is assessed over 50 years in an idealized microtidal marsh under different relative sea level rise (RSLR) scenarios. For a given volume of total sediment added, the frequency of deposition is relatively unimportant in maximizing total marsh area, but the spatial allocation of the dredged material is crucial. For a given volume of sediment, thin-layer deposition is most effective at preserving total marsh area, especially at high rates of RSLR. Channel seeding is less efficient, but it could still provide benefits if larger amounts of sediment are deposited every 1-2 years. Marsh creation is also beneficial, because it not only increases the marsh area, but additionally slows the erosion of the existing marsh. The 2D model is highly computationally efficient and thus suited to explore many scenarios when evaluating a restoration project. Coupling the model with a cost assessment of the different restoration techniques would provide a tool to optimize marsh restoration.
机译:通过将其放在沼泽表面(薄层放置)上,通过在通道口释放并允许潮流将其运输到沼泽平台(通道播种)或通过创造新的电流来进行沼泽恢复在浅水区的浅水区沼泽。我们使用全面的2D Marsh演化模型来调查这些不同方法的功效,这些模型模拟潮汐动力学,植被流程,银行和波浪侵蚀和池塘。在不同相对海平面上升(RSLR)情景下,在理想化的微型沼泽中评估总沼泽地区超过50年。对于添加的总沉积物的给定体积,沉积频率在最大化总沼泽地区时相对不重要,但是疏浚材料的空间分配至关重要。对于给定体积的沉积物,薄层沉积在保持总沼泽地区最有效,特别是在RSLR的高速率下。渠道播种效率较低,但如果每1-2岁沉积大量沉积物,它仍然可以提供益处。沼泽创作也是有益的,因为它不仅增加了沼泽地区,而且还减缓了现有沼泽的侵蚀。 2D模型具有高度计算上高效,因此适合在评估恢复项目时探讨许多情况。通过对不同恢复技术的成本评估耦合模型将提供优化Marsh Restoration的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号