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Modeling Unsaturated Zone Water Movement in the Floodplain Wetlands of the Volta Basin

机译:在Volta盆地的洪泛区湿地中建模不饱和区水运动

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The unsaturated zone of floodplain wetlands in the White Volta River basin provides an inextricable link between basin hydrology and the sustenance of plant growth. The HYDRUS-1D model was used to derive water budgets and to estimate fluxes to understand the hydrological complexities of these wetland systems. The model result indicates Spatio-temporal variation in the volume of vertical fluxes. In 2005, the estimate for average simulated flux was 0.29 cm/month in June and 1.23 cm/month in July. Consequently, the hydraulic head increased from 138.94 m to 139.30 m for the period from June to July 2005. For all sample sites, the increase in hydraulic head occurs within July and October, coinciding with high surface water fluxes. From the calculated water balance, the average monthly estimate of bottom flux was 0.01 cm/month for 2004 and 1.1 cm/month for 2005. The flow through the unsaturated zone and discharging into the subsurface water system has a high dependency on both the soil structure and the volume of water infiltrating through the surface; the highest discharge is within the period of highest water input.
机译:白色Volta河流域洪泛区湿地的不饱和区提供了盆地水文与植物生长的寄托之间存在的含有含糊的联系。 Hydrus-1D模型用于推导水预算并估计助熔剂以了解这些湿地系统的水文复杂性。模型结果表示垂直通量体积的时空变化。 2005年,6月平均模拟助焊剂的估计为0.29厘米/月,7月份1.23厘米/月。因此,液压头于2005年6月至2005年7月的时间从138.94米增加到139.30米。对于所有样本场所,液压头的增加在7月和10月内发生,与高表面水通量相结合。从计算出的水平衡,2004年底部通量的平均月度估计为0.01厘米/月,2005年/月/月。通过不饱和区的流量和排放到地下水系统中的流量具有高依赖性的土壤结构并且通过表面渗透的水量;排气最高在最高水输入的时期内。

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