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Modeling anthropogenic boron in groundwater flow and discharge at Volusia Blue Spring (Florida, USA)

机译:在地下水流量下建模人为硼(VoluSia Blue Spring(佛罗里达州)

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Volusia Blue Spring (VBS) is the largest spring along the St. Johns River in Florida (USA) and the spring pool is refuge for hundreds of manatees during winter months. However, the water quality of the spring flow has been degraded due to urbanization in the past few decades. A three-dimensional contaminant fate and transport model, utilizing MODFLOW-2000 and MT3DMS, was developed to simulate boron transport in the Upper Florida Aquifer, which sustains the VBS spring discharge. The VBS model relied on information and data related to natural water features, rainfall, land use, water use, treated wastewater discharge, septic tank effluent flows, and fertilizers as inputs to simulate boron transport. The model was calibrated against field-observed water levels, spring discharge, and analysis of boron in water samples. The calibrated VBS model yielded a root-mean-square-error value of 1.8 m for the head and 17.7 mu g/L for boron concentrations within the springshed. Model results show that anthropogenic boron from surrounding urbanized areas contributes to the boron found at Volusia Blue Spring.
机译:Volusia Blue Spring(VBS)是佛罗里达州圣约翰河(美国)的最大春天,春季池是冬季数百个海牛的避难所。然而,由于过去几十年来,由于城市化,弹簧流量的水质已经降低。开发了一种三维污染物命运和运输模型,利用Modflow-2000和MT3DMS来模拟上部佛罗里达州含水层的硼输送,从而维持VBS弹簧放电。 VBS模型依赖于与天然水特征,降雨,土地使用,用水,处理的废水排放,化粪池流出流和肥料作为模拟硼运输的输入相关的信息和数据。该模型针对现场观测的水平,弹簧放电和水样中的分析校准。校准的VBS模型在弹簧内的头部和17.7μg/ l的硼浓度下产生1.8m的根平均误差值。模型结果表明,来自周围的城市化区域的人类学硼有助于伏柳蓝春天发现的硼。

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