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首页> 外文期刊>Journal of Hydrology >Modeling the hydrologic response of groundwater dominated wetlands to transient boundary conditions: Implications for wetland restoration
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Modeling the hydrologic response of groundwater dominated wetlands to transient boundary conditions: Implications for wetland restoration

机译:模拟地下水为主的湿地对瞬态边界条件的水文响应:对湿地恢复的意义

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A variably-saturated groundwater model, based on that of Freeze [Freeze, R.A., 1971. Three-dimensional, transient, saturated-unsaturated flow in a groundwater basin. Water Resources Research 7, 347-366.], was used to analyze the details of surface-groundwater interaction and resulting hydroperiods of a site undergoing wetland restoration (the Lake Station Wetland Restoration Site in Northwest Indiana, USA). The three-dimensional groundwater flow model couples the saturated and unsaturated zones through the use of van Genuchten's [van Genuchten, M.T., 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Science Society of America Journal 44, 892-898.] characteristic equations. Initial estimates of hydraulic parameters were refined through a calibration exercise aimed at minimizing the discrepancy between simulated and measured water levels in seven wells within the study. Numerical simulations using the calibrated model, and driven by annual time series of rainfall and potential evaporation, were used to generate hydroperiod maps of surface saturation and root-zone saturation over a three-year period of study. This allowed identification of regularly saturated areas that would support hydric plants, as well as more rarely saturated areas that would require more dry tolerant species or additional hydrological remediation. The simulations also revealed the critical roles that topography, rainfall history, and antecedent conditions play in the hydrology of degraded wetlands that have been targeted for restoration. (c) 2006 Elsevier B.V. All rights reserved.
机译:基于“冻结”模型的可变饱和地下水模型[Freeze,R.A.,1971。地下水盆地中的三维瞬态饱和饱和流。 《水资源研究》第7卷,第347-366页]用于分析地表-地下水相互作用以及由此产生的湿地恢复期(美国西北印第安纳州的湖站湿地恢复区)的水文周期的细节。三维地下水流模型通过使用van Genuchten [van Genuchten,M.T.,1980。这是一个用于预测非饱和土壤水力传导率的封闭形式方程式,将饱和和非饱和区耦合在一起。美国土壤科学学会期刊44,892-898。]特征方程。通过校准练习对水力参数的初始估计值进行了优化,旨在最大程度地减少研究中7口井的模拟水位与测量水位之间的差异。在三年的研究期内,使用校准模型的数值模拟,并由年度降雨和潜在蒸发的时间序列驱动,生成了表面饱和度和根区饱和度的水文周期图。这样就可以确定支持水生植物的规则饱和区域,以及需要更多耐旱物种或进行额外水文修复的极少数饱和区域。模拟还揭示了地形,降雨历史和先决条件在退化湿地的水文学中所起的关键作用,这些湿地已被定为恢复目标。 (c)2006 Elsevier B.V.保留所有权利。

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