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Parameter estimation in nonlinear environmental problems

机译:非线性环境问题中的参数估计

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Popular parameter estimation methods, including least squares, maximum likelihood, and maximum a posteriori (MAP), solve an optimization problem to obtain a central value (or best estimate) followed by an approximate evaluation of the spread (or covariance matrix). A different approach is the Monte Carlo (MC) method, and particularly Markov chain Monte Carlo (MCMC) methods, which allow sampling from the posterior distribution of the parameters. Though available for years, MC methods have only recently drawn wide attention as practical ways for solving challenging high-dimensional parameter estimation problems. They have a broader scope of applications than conventional methods and can be used to derive the full posterior pdf but can be computationally very intensive. This paper compares a number of different methods and presents improvements using as case study a nonlinear DNAPL source dissolution and solute transport model. This depth-integrated semi-analytical model approximates dissolution from the DNAPL source zone using nonlinear empirical equations with partially known parameters. It then calculates the DNAPL plume concentration in the aquifer by solving the advection-dispersion equation with a flux boundary. The comparison is among the classical MAP and some versions of computer-intensive Monte Carlo methods, including the Metropolis-Hastings (MH) method and the adaptive direction sampling (ADS) method.
机译:流行的参数估计方法,包括最小二乘,最大似然和最大后验(MAP),解决了一个优化问题,以获得中心值(或最佳估计值),然后进行了价差(或协方差矩阵)的近似评估。另一种方法是蒙特卡洛(MC)方法,尤其是马尔可夫链蒙特卡洛(MCMC)方法,该方法允许从参数的后验分布中进行采样。尽管可以使用多年,但MC方法直到最近才作为解决具有挑战性的高维参数估计问题的实用方法受到广泛关注。与常规方法相比,它们的应用范围更广,可以用于派生完整的后pdf,但计算量很大。本文比较了许多不同的方法,并以非线性DNAPL源溶解和溶质迁移模型为例,提出了改进方法。使用具有部分已知参数的非线性经验方程,该深度集成的半分析模型近似地估算了DNAPL源区的溶出度。然后,通过求解具有通量边界的对流扩散方程,计算含水层中DNAPL羽流的浓度。比较是在经典MAP和计算机密集型Monte Carlo方法的某些版本之间进行的,包括Metropolis-Hastings(MH)方法和自适应方向采样(ADS)方法。

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