Yager Richard M, Heywood Charles E
U.S. Geological Survey, Ridgway, CO, 81432.
Ground Water. 2014 Sep;52 Suppl 1(Suppl 1):40-52. doi: 10.1111/gwat.12150. Epub 2014 Jan 10.
Public-supply wells with long screens in alluvial aquifers can produce waters of differing quality from different depths. Seasonal changes in quality are linked to seasonal changes in pumping rates that influence the distribution of flow into the well screens under pumping conditions and the magnitude and direction of intraborehole flow within the wells under ambient conditions. Groundwater flow and transport simulations with MODFLOW and MT3DMS were developed to quantify the effects of changes in average seasonal pumping rates on intraborehole flow and water quality at two long-screened, public-supply wells, in Albuquerque, New Mexico and Modesto, California, where widespread pumping has altered groundwater flow patterns. Simulation results indicate that both wells produce water requiring additional treatment to maintain potable quality in winter when groundwater withdrawals are reduced because less water is derived from parts of the aquifer that contain water requiring less treatment. Simulation results indicate that the water quality at both wells could be improved by increasing average winter-pumping rates to induce more lateral flow from parts of the aquifer that contain better quality water. Arsenic-bearing water produced by the Albuquerque well could be reduced from 55% to 45% by doubling average winter-pumping rate, while nitrate- and uranium-bearing water produced by the Modesto well could be reduced from 95% to 65% by nearly tripling the average winter-pumping rate. Higher average winter-pumping rates would also reduce the volume of intraborehole flow within both wells and prevent the exchange of poor quality water between shallow and deep parts of both aquifers.
在冲积含水层中设有长滤水管的公共供水井,从不同深度抽取的水质可能不同。水质的季节性变化与抽水速率的季节性变化有关,抽水速率会影响抽水条件下流入井滤水管的水流分布,以及在环境条件下井内钻孔内水流的大小和方向。利用MODFLOW和MT3DMS进行了地下水流动和运移模拟,以量化平均季节性抽水速率变化对新墨西哥州阿尔伯克基市和加利福尼亚州莫德斯托市两口设有长滤水管的公共供水井钻孔内水流和水质的影响,在这两个地方,广泛的抽水已经改变了地下水流动模式。模拟结果表明,在冬季,由于从含水层中需要较少处理的部分获取的水量减少,地下水抽取量降低,两口井产出的水都需要额外处理以保持饮用水质量。模拟结果表明,通过提高冬季平均抽水速率,诱导含水层中水质较好区域的更多侧向水流,可以改善两口井的水质。将阿尔伯克基市那口井的冬季平均抽水速率提高一倍,可使含砷水的比例从55%降至45%,而将莫德斯托市那口井的冬季平均抽水速率提高近两倍,可使含硝酸盐和铀的水的比例从95%降至65%。较高的冬季平均抽水速率还将减少两口井内钻孔内水流的体积,并防止两个含水层浅部和深部之间劣质水的交换。