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WATER RESOURCES RESEARCH,
VOL. 27, NO. 3,
PAGES 341–350,
1991
A Stochastic Model of Reactive Solute Transport With Time-Varying Velocity in a Heterogeneous Aquifer
Z. J. Kabala
Department of Soil Science, University of California, Berkeley
Garrison Sposito
Department of Soil Science, University of California, Berkeley
Abstract
The cumulant expansion method, used previously by Sposito and Barry (1987) to derive an ensemble average transport equation
for a tracer moving in a heterogeneous aquifer, is generalized to the case of a reactive solute that can adsorb linearly and
undergo first-order decay. In the process we also generalize the Van Kampen (1987) result for the cumulant expansion of a
multiplicative stochastic differential equation containing a time-dependent sure matrix. The resulting partial differential
equation exhibits terms with field-scale coefficients that are analogous to those in the corresponding nonstochastic local-scale
transport equation. There are also new terms in the third- and fourth-order spatial derivatives of the ensemble average concentration.
It is demonstrated that the effective solute velocity for the aqueous concentration, not that for the total concentration
(aqueous plus sorbed), is relevant for a field-scale description of solute transport. The field-scale effective solute velocity,
dispersion coefficient, retardation factor, and first-order decay parameters, unlike their local-scale counterparts, are time-dependent
because of autocorrelations and cross correlations among the random local solute velocity, retardation factor, and first-order
decay constant. It is shown also that negative cross correlations between the random tracer solute velocity and the inverse
of the local retardation factor may produce both enhanced dispersion and a temporal growth in the field-scale retardation
factor. These effects are possible in any heterogeneous aquifer for which a stochastic description of aquifer spatial variability
is appropriate.
Received 9
November
1989;
accepted 22
August
1990.
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Citation: Kabala, Z. J., and G. Sposito
(1991),
A Stochastic Model of Reactive Solute Transport With Time-Varying Velocity in a Heterogeneous Aquifer,
Water Resour. Res.,
27(3),
341–350.
Copyright 1991 by the American Geophysical Union.
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