首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Salt marsh connectivity and freshwater versus saltwater inflow: multiple methods including tidal gauges, water isotopes, and LIDAR elevation models.
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Salt marsh connectivity and freshwater versus saltwater inflow: multiple methods including tidal gauges, water isotopes, and LIDAR elevation models.

机译:盐沼的连通性以及淡水与盐水的流入:多种方法,包括潮汐仪,水同位素和LIDAR高程模型。

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摘要

The hydrologic connectivity between different components of a coastal marsh is a key wetland structural element and is essential in determining habitat value. Salt marshes are often thought of as being hydrologically connected via tidal creeks, though water bodies within a salt marsh may also be semipermanently disconnected. At a salt marsh in Matagorda, Texas, USA, there are many "isolated" ponds, located at varying elevations. Our objective was to quantify the hydrologic connectivity of spatially isolated ponds at this site. We sampled water for salinity and stable isotopes ( delta 2H, delta 18O) to determine the relative contribution of tidal water and rainfall within each pond. We also quantified the water level at which each pond floods its banks and connects to other ponds, using a light detection and ranging (LIDAR)-based elevation model. We found that pond connectivity was driven by multiple factors, of which wind and rainfall were the most important. Salinity and isotopic values between any two sampled ponds were correlated with the water level elevation at which the ponds connected. We conclude that the connectivity of the network, and the similarity of water samples within it, profoundly changes when specific water level thresholds are exceeded by both fresh water and salt water.
机译:沿海沼泽不同组成部分之间的水文连通性是关键的湿地结构要素,对于确定生境价值至关重要。人们通常认为盐沼通过潮汐小溪在水文上相连,尽管盐沼内的水体也可能是半永久性断开的。在美国德克萨斯州马塔哥达的盐沼中,有许多“隔离的”池塘,它们处在不同的高度。我们的目标是量化此站点上空间隔离的池塘的水文连通性。我们对水进行了盐度和稳定同位素(delta 2 H,delta 18 O)采样,以确定每个池塘中潮汐水和降雨的相对贡献。我们还使用基于光检测和测距(LIDAR)的海拔模型量化了每个池塘淹没河岸并连接到其他池塘的水位。我们发现池塘的连通性受多种因素驱动,其中风和降雨最为重要。任何两个采样池之间的盐度和同位素值都与池相连的水位升高相关。我们得出的结论是,当淡水和盐水都超过特定水位阈值时,网络的连通性以及其中的水样的相似性将发生深刻变化。

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