Cox Marisa H, Su Grace W, Constantz Jim
U.S. Geological Survey, 345 Middlefield Road, Menlo Park, CA 94025, USA.
Ground Water. 2007 Mar-Apr;45(2):187-95. doi: 10.1111/j.1745-6584.2006.00276.x.
Commonly measured water quality parameters were compared to heat as tracers of stream water exchange with ground water. Temperature, specific conductance, and chloride were sampled at various frequencies in the stream and adjacent wells over a 2-year period. Strong seasonal variations in stream water were observed for temperature and specific conductance. In observation wells where the temperature response correlated to stream water, chloride and specific conductance values were similar to stream water values as well, indicating significant stream water exchange with ground water. At sites where ground water temperature fluctuations were negligible, chloride and/or specific conductance values did not correlate to stream water values, indicating that ground water was not significantly influenced by exchange with stream water. Best-fit simulation modeling was performed at two sites to derive temperature-based estimates of hydraulic conductivities of the alluvial sediments between the stream and wells. These estimates were used in solute transport simulations for a comparison of measured and simulated values for chloride and specific conductance. Simulation results showed that hydraulic conductivities vary seasonally and annually. This variability was a result of seasonal changes in temperature-dependent hydraulic conductivity and scouring or clogging of the streambed. Specific conductance fits were good, while chloride data were difficult to fit due to the infrequent (quarterly) stream water chloride measurements during the study period. Combined analyses of temperature, chloride, and specific conductance led to improved quantification of the spatial and temporal variability of stream water exchange with shallow ground water in an alluvial system.
将常用的水质参数与热量进行比较,作为河水与地下水交换的示踪剂。在两年时间内,对河流及相邻水井中的温度、电导率和氯化物进行了不同频率的采样。观察到河流水温及电导率存在强烈的季节性变化。在温度响应与河水相关的观测井中,氯化物和电导率值也与河水值相似,这表明河水与地下水有显著的交换。在地下水温度波动可忽略不计的地点,氯化物和/或电导率值与河水值不相关,这表明地下水未受到与河水交换的显著影响。在两个地点进行了最佳拟合模拟建模,以得出基于温度的河流与水井之间冲积沉积物水力传导率的估计值。这些估计值用于溶质运移模拟,以比较氯化物和电导率的测量值与模拟值。模拟结果表明,水力传导率随季节和年份变化。这种变化是温度依赖性水力传导率的季节性变化以及河床冲刷或堵塞的结果。电导率拟合效果良好,而由于研究期间河流水氯化物测量频率较低(每季度一次),氯化物数据难以拟合。对温度、氯化物和电导率的综合分析有助于更好地量化冲积系统中河水与浅层地下水交换的时空变异性。