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Investigating Whether or Not Constructed Stormwater Wetlands Need Maintenance to Sustain Performance and The Effect of Vegetation Occupancy in the Designed Storage Volume

机译:调查人工维护的雨水湿地是否需要维护以维持性能,以及植被占用量对设计存储量的影响

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Stormwater wetlands (CSWs) have become one of the more popular SCMs, offering a hybrid between larger detention technologies such as wet ponds and newer green infrastructure technologies. A well-functioning stormwater wetland will be a resilient, diverse ecosystem that includes many plant and animal species. This research looks to investigate whether or not wetlands need regular maintenance to sustain their treatment capacity. The research site is located in River Bend, NC. Flow-weighted samples, rainfall, and hydrologic data are being collected at both the inlet and outlet from April 2012 - April 2013, aiming a minimum of 15 storms space throughout the year. Monitoring of phosphorus deposition consists of taking soil samples and analyzing for Soil Test Phosphorous. These monitoring results will be compared to the results of a study that was conducted at the same site for a one-year period immediately following construction completion. This will allow researchers to see the effects of no maintenance plan (or activity) and time on wetland performance in removing phosphorus and achieving other wetland performance goals. Vegetation in a CSW is essential for nutrient removal and thermal pollution reduction. However, a portion of the storage volume designed to retain the water quality event is occupied by vegetation, which may result in the CSW being undersized from a hydrologic perspective - especially in unmaintained, mature systems. The fraction of the volume associated with vegetation mass was unknown and designers have been unsure as to (1) how they should account for volume occupied by vegetation and (2) whether this was a significant design issue. Twelve stormwater wetlands and one hybrid wet pond in North Carolina were sampled to assess their percent vegetative occupancy by volume. A conservative recommended factor of safety is 1.025. Species-specific factors of safety (FOS) were also calculated; at the 30 cm temporary pool elevation, the Iris (Iris spp.) FOS was highest at 1.020 and the mixed vegetation FOS was lowest at 1.005. When designing a wetland, a more specific FOS may be calculated using a weighted average of the FOS for each species in the planting plan. The outcomes of this research allow designers to account for the volume taken up by emergent wetland vegetation; however, the uncertainty in other factors such as discrepancies between designed and as-built bathymetry probably have a greater impact on the design volume loss when compared to vegetation occupancy (<2%).
机译:雨水湿地(CSW)已成为最受欢迎的SCM之一,它在较大的拘留技术(如湿塘)和较新的绿色基础设施技术之间提供了一种混合体。一个运转良好的雨水湿地将是一个具有弹性的,多样化的生态系统,其中包括许多动植物。这项研究旨在调查湿地是否需要定期维护以维持其处理能力。研究地点位于北卡罗来纳州本德河。从2012年4月至2013年4月,在入口和出口都收集流量加权的样本,降雨量和水文数据,目标是全年至少要有15个暴风雨空间。磷沉积的监测包括取样土壤样品和分析土壤中的磷含量。这些监测结果将与建设完成后立即在同一地点进行的为期一年的研究结果进行比较。这将使研究人员能够看到无维护计划(或活动)和时间对湿地性能的影响,以去除磷并实现其他湿地性能目标。 CSW中的植被对于去除营养物和减少热污染至关重要。但是,为保留水质事件而设计的一部分存储量被植被占据,从水文角度看,这可能导致CSW尺寸过小-尤其是在未维护的成熟系统中。与植被质量相关的体积比例是未知的,设计师一直不确定(1)他们应如何考虑植被占据的体积,以及(2)这是否是一个重要的设计问题。对北卡罗来纳州的12个雨水湿地和1个混合湿地池塘进行了采样,以评估它们按体积计的植物占有率。保守的建议安全系数为1.025。还计算了特定于物种的安全系数(FOS);在临时池高程30厘米处,鸢尾(Fris)的FOS最高为1.020,而混合植被的FOS最低为1.005。在设计湿地时,可以使用种植计划中每个物种的FOS加权平均值来计算更具体的FOS。这项研究的结果使设计人员能够考虑到新兴湿地植被所占的体积。但是,与植被占用相比,其他因素(如设计的和实际的测深仪之间的差异)的不确定性可能对设计的体积损失有更大的影响(<2%)。

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