Oliver C W, Radcliffe D E, Risse L M, Habteselassie M, Mukundan R, Jeong J, Hoghooghi N
J Environ Qual. 2014 Mar;43(2):539-48. doi: 10.2134/jeq2013.05.0195.
In the southeastern United States, on-site wastewater treatment systems (OWTSs) are widely used for domestic wastewater treatment. The degree to which OWTSs represent consumptive water use has been questioned in Georgia. The goal of this study was to estimate the effect of OWTSs on streamflow in a gauged watershed in Gwinnett County, Georgia using the Soil and Water Assessment Tool (SWAT) watershed-scale model, which includes a new OWTS algorithm. Streamflow was modeled with and without the presence of OWTSs. The model was calibrated using data from 1 Jan. 2003 to 31 Dec. 2006 and validated from 1 Jan. 2007 to 31 Dec. 2010 using the auto-calibration tool SWAT-CUP 4. The daily and monthly streamflow Nash-Sutcliffe coefficients were 0.49 and 0.71, respectively, for the calibration period and 0.37 and 0.68, respectively, for the validation period, indicating a satisfactory fit. Analysis of water balance output variables between simulations showed a 3.1% increase in total water yield at the watershed scale and a 5.9% increase at the subbasin scale for a high-density OWTS area. The percent change in water yield between simulations was the greatest in dry years, implying that the influence of OWTSs on the water yield is greatest under drought conditions. Mean OWTS water use was approximately 5.7% consumptive, contrary to common assumptions by water planning agencies in Georgia. Results from this study may be used by OWTS users and by watershed planners to understand the influence of OWTSs on water quantity within watersheds in this region.
在美国东南部,现场污水处理系统(OWTSs)被广泛用于生活污水处理。在佐治亚州,OWTSs是否构成耗水型用水受到了质疑。本研究的目的是使用土壤和水资源评估工具(SWAT)流域尺度模型(其中包括一种新的OWTS算法),估算佐治亚州格温内特县一个有测量数据的流域中OWTSs对河流水量的影响。在有和没有OWTSs的情况下对河流水量进行建模。该模型使用2003年1月1日至2006年12月31日的数据进行校准,并使用自动校准工具SWAT-CUP 4在2007年1月1日至2010年12月31日进行验证。校准期的日和月河流水量纳什-萨特克利夫系数分别为0.49和0.71,验证期分别为0.37和0.68,表明拟合效果令人满意。对模拟之间的水平衡输出变量分析表明,对于高密度OWTS区域,流域尺度的总产水量增加了3.1%,子流域尺度增加了5.9%。模拟之间产水量的百分比变化在干旱年份最大,这意味着OWTSs对产水量的影响在干旱条件下最大。OWTS的平均用水量约有5.7%为消耗性用水,这与佐治亚州水资源规划机构的普遍假设相反。本研究结果可供OWTS用户和流域规划者了解OWTSs对该地区流域内水量的影响。