4.5 Article

Groundwater parameter estimation using the ensemble Kalman filter with localization

期刊

HYDROGEOLOGY JOURNAL
卷 19, 期 3, 页码 547-561

出版社

SPRINGER
DOI: 10.1007/s10040-010-0679-9

关键词

Groundwater flow; Inverse modeling; Ensemble Kalman filter; Localization; Distance-dependent function

资金

  1. National Natural Science Fund of China [40725010, 40672160]

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The ensemble Kalman filter (EnKF), an efficient data assimilation method showing advantages in many numerical experiments, is deficient when used in approximating covariance from an ensemble of small size. Implicit localization is used to add distance-related weight to covariance and filter spurious correlations which weaken the EnKF's capability to estimate uncertainty correctly. The effect of this kind of localization is studied in two-dimensional (2D) and three-dimensional (3D) synthetic cases. It is found that EnKF with localization can capture reliably both the mean and variance of the hydraulic conductivity field with higher efficiency; it can also greatly stabilize the assimilation process as a small-size ensemble is used. Sensitivity experiments are conducted to explore the effect of localization function format and filter lengths. It is suggested that too long or too short filter lengths will prevent implicit localization from modifying the covariance appropriately. Steep localization functions will greatly disturb local dynamics like the 0-1 function even if the function is continuous; four relatively gentle localization functions succeed in avoiding obvious disturbance to the system and improve estimation. As the degree of localization of the L function increases, the parameter sensitivity becomes weak, making parameter selection easier, but more information may be lost in the assimilation process.

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