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Restoration of estuarine wetlands using thin cover placement: A pilot application in Brunswick, Georgia

机译:使用薄封面安置河口湿地恢复:在格鲁兰尼克布伦瑞克的试点应用

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This paper presents the design concepts and basis for using a thin layer cover (TLC) of sand to restore historically impacted wetlands in Georgia's Brunswick estuary. The project site is a mix of tidal creeks, marshes, brackish estuary, and an adjacent upland area that has been affected by historical industrial operations. A pilot project to test cover placement methodology and performance in advance of future full-scale TLC implementation was completed in 2018. It involved placing 6-9 inches of material in a 2/3-acre marsh area. Two material types - sand and higher organic content fines - were tested. The contractor, Sevenson Environmental Services, identified the appropriate equipment, means, and methods to hydraulically convey and place the TLC material within the pilot area in accordance with stated performance objectives. A mat-based access road was installed to enable equipment to move the pipeline and spray nozzle for fine placement control within the pilot marsh area. The thin cover placed in the field ranged from 6-12 inches thick (versus the design thickness of 6-9 inches) to meet the minimum required thickness and account for over placement. A 30- to 45-degree spray yielded the best distribution of materials for the equipment used. Placement of sandy material was faster and more uniform than fines due to the material s enhanced settling characteristics and ease of distribution. A modified topsoil-fines mix with a baffle plate eventually permitted optimal placement of fines within the study area while maintaining the target organic content. Turbidity in the water discharged from the pilot area was minimized by environmental controls (e.g. perimeter hay bales) installed by the contractor. The mat-based access road initially experienced some settlement due to loading on the soft sediments and marsh root mat; the road required restoration following project completion. Physical and vegetative monitoring conducted in six-month increments over a two-year period indicated strong natural recolonization of vegetation and the re-establishment of benthic species including fiddler crab. This paper presents lessons learned, design implications, and best management practices for future thin cover placement projects in estuarine settings.
机译:本文介绍了使用沙子的薄层盖(TLC)的设计概念和基础,以恢复乔治亚州的不伦瑞克河口的历史上受影响的湿地。该项目现场是潮汐小溪,沼泽,咸水河口和受历史工业业务影响的邻近高地地区的混合。在2018年完成了一个试验封面局部TLC实施前的封面展示率方法和表演的试点项目。它涉及在2/3英亩的沼泽地区置于6-9英寸的材料。测试了两种材料 - 沙子和更高的有机含量粉末。承包商,Sevenson环境服务,确定了液压输送的适当设备,手段和方法,并按照陈述的性能目标将TLC材料放置在试验区内。安装了一种基于垫的通道道路,以使设备能够在导频沼泽地区内移动管道和喷雾喷嘴,以便进行精细放置控制。放置在该领域的薄盖等于6-12英寸厚(与6-9英寸的设计厚度),以满足最小所需的厚度和放置的帐户。 30至45度的喷雾产生了用于所用设备的材料的最佳分配。由于材料的增强沉降特性和易于分布,砂质材料的放置比罚款更快,更均匀。一种改性的表土 - 罚款与挡板混合,最终允许在研究区域内最佳地放置罚面内的尺寸,同时保持目标有机含量。通过承包商安装的环境控制(例如周边果包)排出的水中排出的水中浊度。由于在软沉积物和沼泽根垫上装载,垫基通路的通道道最初经历了一些沉降;项目完成后的道路要求恢复。在为期两年的时间内以六个月的增量进行的身体和植物营养监测表明植被的强烈自然重新调整,并重新建立了包括小斗士的底栖物种。本文提出了培训,设计意义,以及在河口环境中未来的薄封面放置项目的最佳管理实践。

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