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Reflecting the importance of wetland hydrologic connectedness: a network perspective

机译:反映湿地水文关联的重要性:网络视角

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Different types of wetlands are hydraulically interconnected and form specific network structures that display systematic characteristics. The sustainable use of wetlands and water resources requires management approaches that incorporate Wetlands are not isolated spaces but complex habitats, in which many biotic and abiotic connections all around. The sustainable use of wetlands and water resources requires management approaches that incorporate explicitly the spatial and temporal interconnections among different hydrological units around a wetland. However, lateral, vertical and longitudinal hydrological connections have been destroyed heavily due to the impacts of anthropogenic activities. Wetlands tend to be managed in fragmented worldview behind non-sustainable growth. To highlight the importance of maintenance the integrity of interconnected wetlands, we developed a framework to use ecological network analysis in holistic assessment on the Okefenokee wetland system (WS) in USA. Two methods, ascendency analysis and network environ analysis, in ecological network method were used to explore the systematic attributes and components' independencies of the wetland system. Results indicate the hydrological connections are extremely important for maintaining a wetland system. It is concluded that the proposed methods can provide effective ways to examine the hydrologic organization and components' interdependencies in a wetland system and contributes to the basin-wide wetlands protection and water resources management.
机译:不同类型的湿地是液压互连的,形成显示系统特性的特定网络结构。湿地和水资源的可持续利用需要管理方法,该方法将湿地没有孤立的空间但复杂的栖息地,其中许多生物和非生物联系。湿地和水资源的可持续利用需要管理方法,该方法将在湿地周围的不同水文单元之间明确地纳入空间和时间互连。然而,由于人为活动的影响,横向,垂直和纵向水文连接被批量破坏了。湿地倾向于在不可持续增长背后的碎片世界观中管理。为了突出维护互联湿地完整性的重要性,我们开发了一种在美国Okefenokee湿地系统(WS)的整体评估中使用生态网络分析的框架。生态网络方法中的两种方法,上升性分析和网络环境分析用于探讨湿地系统的系统属性和组件的独立性。结果表明水文连接对于维持湿地系统非常重要。得出结论,该方法可以提供有效的方法来检查湿地系统中的水文组织和组件的相互依赖性,并有助于盆地湿地保护和水资源管理。

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