Nonlocal stochastic moment equations have been used successfully to analyze steady state and transient flow in randomly heterogeneous media conditional on measured values of medium properties. We present a nonlinear geostatistical inverse algorithm for steady state flow that makes it possible to further condition such analyses on measured values of state variables. Our approach accounts for all scales of spatial variability resolvable by the computational grid. It is based on recursive finite element approximations of exact nonlocal first and second conditional moment equations. Hydraulic conductivity is parameterized geostatistically on the basis of measured values at discrete locations and unknown values at discrete “pilot points”. Prior ...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
A geostatistical inverse method of estimating hydraulic parameters of a heterogeneous porous medium ...
Nonlocal moment equations allow one to render optimum predictions of flow in randomly heterogeneous ...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
A geostatistical inverse method of estimating hydraulic parameters of a heterogeneous porous medium ...
Nonlocal moment equations allow one to render optimum predictions of flow in randomly heterogeneous ...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
Nonlocal stochastic moment equations have been used successfully to analyze steady state and transie...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
We present a nonlinear stochastic inverse algorithm that allows conditioning estimates of transient ...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
Nonlocal moment equations allow one to render deterministically optimum predictions of flow in rando...
A geostatistical inverse method of estimating hydraulic parameters of a heterogeneous porous medium ...
Nonlocal moment equations allow one to render optimum predictions of flow in randomly heterogeneous ...