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Determining hydrological flow paths to enhance restoration in impaired mangrove wetlands

机译:确定水文流动路径,以增强损伤的红树林湿地恢复

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The restoration of mangroves has gained prominence in recent decades. Hydrological rehabilitation has been undertaken to connect impaired mangroves with the sea, lagoons or estuaries. Because mangrove hydrodynamics occurs on the surface and interstitial spaces in the sediment, we propose to determine the hydrological flow paths to restore the hydrological regimes of the impaired mangroves. The hydrological flow paths were determined through a micro basin analysis based on microtopographic data to generate a digital elevation model. Applying this methodological approach, the hydrology of an impaired area on a barrier island in the Gulf of Mexico was restored by excavating, desilting or clearing the channels on the identified hydrological flow paths. This area was compared to one in which impaired mangroves were reconnected to the marine lagoon but disregarding the flow paths. Data collected in both areas were evaluated by flood level analysis, using two methods: (i) a simple linear regression model (SLRM) and (ii) spectral analysis (SA), also known as dominant frequency analysis. The results suggest that restoration based on the hydrological flow paths was more effective than the direct opening to the nearest main water body without accounting for the microtopography. In both areas, soil salinity and sulfides decreased after hydrological reconnection. However, a greater efficiency in the investment of time and human resources was achieved when preferential flow paths were identified and taken into account. The methodological procedures described in this study are of universal application to other mangrove restoration programs.
机译:近几十年来,红树林的恢复已突出。已经开展了水文康复,以与海洋,泻湖或河口连接障碍的红树林。由于红树林流动动力学发生在沉积物中的表面和间隙空间上,因此建议确定水文流动路径以恢复受损红树林的水文制度。通过基于微拷贝数据的微盆地分析来确定水文流动路径,以产生数字高度模型。应用这种方法方法,通过在所识别的水文流动路径上挖掘,脱落或清除通道来恢复墨西哥湾的屏障岛的受损区域的水文。将该地区与其中重新连接到海洋泻湖但忽视流动路径的一个区域。通过洪水级别分析评估在两个区域中收集的数据,使用两种方法:(i)简单的线性回归模型(SLRM)和(ii)谱分析(SA),也称为主要频率分析。结果表明,基于水文流动路径的恢复比最近的主水体的直接开口更有效,而不会计对微拷作。在水文重新连接后,在两个区域,土壤盐度和硫化物降低。然而,当鉴定并考虑优先流动路径时,实现了更高的时间和人力资源的效率。本研究中描述的方法学程序是对其他红树林恢复程序的普遍应用。

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