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  4. Groundwater age, life expectancy and transit time distributions in advective-dispersive systems: 1. Generalized reservoir theory
 
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Groundwater age, life expectancy and transit time distributions in advective-dispersive systems: 1. Generalized reservoir theory

Auteur(s)
Cornaton, Fabien 
Centre d'hydrogéologie et de géothermie 
Perrochet, Pierre 
Centre d'hydrogéologie et de géothermie 
Date de parution
2006
In
Advances in Water Resources
Vol.
9
No
29
De la page
1267
A la page
1291
Mots-clés
  • age

  • life expectancy

  • transit time

  • reservoir theory

  • dispersion

  • laplace transforms

  • finite elements

  • VOLUME-AVERAGED CONCE...

  • NONSYMMETRIC LINEAR-S...

  • SOLUTE

  • TRANSPORT

  • POROUS-MEDIA

  • CHLOROFLUOROCARBONS C...

  • ENVIRONMENTAL

  • TRACERS

  • NUMERICAL INVERSION

  • STOCHASTIC-ANALYSIS

  • HYDROLOGIC TRACERS

  • LAPLACE TRANSFORMS

Résumé
We present a methodology for determining reservoir groundwater age and transit time probability distributions in a deterministic manner, considering advective-dispersive transport in steady velocity fields. In a first step, we propose to model the statistical distribution of groundwater age at aquifer scale by means of the classical advection-dispersion. equation for a conservative and non-reactive tracer, associated to proper boundary conditions. The evaluated function corresponds to the density of probability of the random variable age, age being defined as the time elapsed since the water particles entered the aquifer. An adjoint backward model is introduced to characterize the life expectancy distribution, life expectancy being the time remaining before leaving the aquifer. By convolution of these two distributions, groundwater transit time distributions, from inlet to outlet, are fully defined for the entire aquifer domain. In a second step, an accurate and efficient method is introduced to simulate the transit time distribution at discharge zones. By applying the reservoir theory to advective-dispersive aquifer systems, we demonstrate that the discharge zone transit time distribution can be evaluated if the internal age probability distribution is known. The reservoir theory also applies to internal life expectancy probabilities yielding the recharge zone life expectancy distribution. Internal groundwater volumes are finally identified with respect to age and transit time. One- and two-dimensional theoretical examples are presented to illustrate the proposed mathematical models, and make inferences on the effect of aquifer structure and macro-dispersion on the distributions of age, life expectancy and transit time. (c) 2005 Elsevier Ltd. All rights reserved.
URI
https://libra.unine.ch/handle/123456789/12012
Autre version
://000240178400002
Type de publication
Resource Types::text::journal::journal article
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