Stauffer Fritz
Institute of Hydromechanics and Water Resources Management, Zurich, Switzerland.
Ground Water. 2005 Nov-Dec;43(6):843-9. doi: 10.1111/j.1745-6584.2005.00054.x.
A method is proposed to estimate the uncertainty of the location of pathlines in two-dimensional, steady-state confined or unconfined flow in aquifers due to the uncertainty of the spatially variable unconditional hydraulic conductivity or transmissivity field. The method is based on concepts of the semianalytical first-order theory given in Stauffer et al. (2002, 2004), which allows estimates of the lateral second moment (variance) of the location of a moving particle. However, this method is reformulated in order to account for nonuniform recharge and nonuniform aquifer thickness. One prominent application is the uncertainty estimation of the catchment of a pumping well by considering the boundary pathlines starting at a stagnation point. In this method, the advective transport of particles is considered, based on the velocity field. In the case of a well catchment, backtracking is applied by using the reversed velocity field. Spatial variability of hydraulic conductivity or transmissivity is considered by taking into account an isotropic exponential covariance function of log-transformed values with parameters describing the variance and correlation length. The method allows postprocessing of results from ground water models with respect to uncertainty estimation. The code PPPath, which was developed for this purpose, provides a postprocessing of pathline computations under PMWIN, which is based on MODFLOW. In order to test the methodology, it was applied to results from Monte Carlo simulations for catchments of pumping wells. The results correspond well. Practical applications illustrate the use of the method in aquifers.
本文提出了一种方法,用于估算由于空间可变的无条件水力传导率或 transmissivity 场的不确定性,在二维、稳态承压或非承压含水层水流中流线位置的不确定性。该方法基于 Stauffer 等人(2002 年、2004 年)给出的半解析一阶理论概念,该理论允许估算移动粒子位置的横向二阶矩(方差)。然而,为了考虑不均匀补给和不均匀含水层厚度,对该方法进行了重新表述。一个突出的应用是通过考虑从停滞点开始的边界流线,估算抽水井集水区的不确定性。在这种方法中,基于速度场考虑粒子的平流输运。在井集水区的情况下,通过使用反向速度场进行回溯。通过考虑对数变换值的各向同性指数协方差函数以及描述方差和相关长度的参数,来考虑水力传导率或 transmissivity 的空间变异性。该方法允许对地下水模型结果进行不确定性估计的后处理。为此开发的代码 PPPath 提供了基于 MODFLOW 的 PMWIN 下流线计算的后处理。为了测试该方法学,将其应用于抽水井集水区的蒙特卡罗模拟结果。结果吻合良好。实际应用说明了该方法在含水层中的使用情况。