Neto Dagmar C, Chang Hung K, van Genuchten Martinus Th
Department of Applied Geology, São Paulo State University, UNESP, Rio Claro, SP 13506-900, Brazil.
Ground Water. 2016 Jan;54(1):82-91. doi: 10.1111/gwat.12329. Epub 2015 Mar 27.
Detailed monitoring of the groundwater table can provide important data about both short- and long-term aquifer processes, including information useful for estimating recharge and facilitating groundwater modeling and remediation efforts. In this paper, we presents results of 4 years (2002 to 2005) of monitoring groundwater water levels in the Rio Claro Aquifer using observation wells drilled at the Rio Claro campus of São Paulo State University in Brazil. The data were used to follow natural periodic fluctuations in the water table, specifically those resulting from earth tides and seasonal recharge cycles. Statistical analyses included methods of time-series analysis using Fourier analysis, cross-correlation, and R/S analysis. Relationships could be established between rainfall and well recovery, as well as the persistence and degree of autocorrelation of the water table variations. We further used numerical solutions of the Richards equation to obtain estimates of the recharge rate and seasonable groundwater fluctuations. Seasonable soil moisture transit times through the vadose zone obtained with the numerical solution were very close to those obtained with the cross-correlation analysis. We also employed a little-used deep drainage boundary condition to obtain estimates of seasonable water table fluctuations, which were found to be consistent with observed transient groundwater levels during the period of study.
对地下水位进行详细监测可以提供有关含水层短期和长期过程的重要数据,包括有助于估算补给量以及推动地下水建模和修复工作的信息。在本文中,我们展示了对巴西圣保罗州立大学里奥克拉罗校区钻设的观测井监测里奥克拉罗含水层地下水位4年(2002年至2005年)的结果。这些数据用于跟踪地下水位的自然周期性波动,特别是由地球潮汐和季节性补给周期引起的波动。统计分析包括使用傅里叶分析、互相关分析和R/S分析的时间序列分析方法。可以建立降雨与井水位恢复之间的关系,以及地下水位变化的持续性和自相关程度。我们还使用理查兹方程的数值解来获得补给率和季节性地下水波动的估计值。通过数值解得到的季节性土壤水分通过非饱和带的传输时间与通过互相关分析得到的结果非常接近。我们还采用了一种较少使用的深层排水边界条件来获得季节性地下水位波动的估计值,结果发现这些估计值与研究期间观测到的瞬态地下水位一致。