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Hydrological connectivity assessment based on solute penetration

机译:基于溶质渗透的水文连通性评估

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Wetlands are sensitive, easily disturbed, and globally important ecosystems which face lots of threats, such as global climate change and local human activities. Those might result in the degradation of wetlands. The relationship between hydrological connectivity and the degradation of wetlands has gained prominence among researchers as a simple way to quickly evaluate the degradation of wetlands. This metric is responsive to preferential flow, which can, to some extent, indicate hydrological connectivity. To quantify hydrological connectivity at soil column scales, we explored the relationships between soil properties and the strength of preferential flow in samples from a degrading wetland in which Chinese tamarisk (Tamarix chinensis Lour.) grow in the Yellow River Delta. We conducted laboratory solute penetration tests through the undisturbed soil sample columns and analyzed the relationship between the solute penetration test results and preferential flow. We then verified the applicability of the dual-permeability model to predict the results of the solute penetration test. Our results revealed that the discharge rate from the soil columns was the highest in samples from 20 to 40 cm soil depth and that the flow of discharge concentration remained stable for a long time before increasing rapidly, which exhibited rich medium porosity and macroporosity. We associated this with some improvement in hydrological connectivity, which was also consistent with our dual-permeability simulation results. In the future experimental operation, we can preliminarily predict the hydrological connectivity and preferential flow intensity of soil column by using the dual-permeability model with the discharge data of solute penetration test, which can help us know quickly to what extent are wetlands degraded.
机译:湿地是敏感的,容易受到干扰,全球重要的生态系统,这些生态系统面临着许多威胁,如全球气候变化和当地人类活动。这些可能导致湿地的退化。水文连接与湿地退化之间的关系在研究人员中突出了快速评估湿地降解的简单方法。该度量响应于优先流量,可以在一定程度上表明水文连接。为了量化土柱尺度的水文连通性,我们探讨了土壤性质之间的关系和来自中国冠军(Tamarix Chinensis Lour。)在黄河三角洲生长的降解湿地的样品中的样品中的良好流动力。我们通过未受干扰的土壤样品柱进行实验室溶质渗透试验,并分析了溶质渗透试验结果与优先流动之间的关系。然后,我们验证了双渗透模型的适用性预测溶质渗透试验的结果。我们的研究结果表明,土壤柱的排放率在20至40厘米的土壤深度中最高,并且在迅速增加之前,放电浓度的流量保持稳定,这表现出富含培养基孔隙率和大孔隙率。我们在水文连通性的一些改善中联系了这一点,这也与我们的双渗透性仿真结果一致。在未来的实验操作中,我们可以通过使用具有溶质渗透试验的排放数据的双渗透性模型预测土柱的水文连接和优先流量强度,这可以帮助我们快速了解湿地降解的程度。

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