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  1. Home
  2. Browse by Author

Browsing by Author "Obeyesekere, Mandri"

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    Numerical Methods for the Simulation of Flow in Root-Soil Systems
    (1991-04) Arbogast, Todd; Obeyesekere, Mandri; Wheeler, Mary F.
    We consider the numerical properties of approximation schemes for a model that simulates water transport in root-soil systems. The model given in this paper is a reformulation of a previously proposed model now defined completely in terms of the water potential. The system of equations consists of a parabolic partial differential equation which contains a nonlinear capacity term coupled to two linear ordinary differential equations. A closed form solution is obtained for one of the latter equations. Finite element and finite difference schemes are defined to approximate the solution of the coupled system, and optimal order error estimates are derived. A postprocessed water mass flux computation is also presented and shown to be superconvergent to the true flux. Computational results which verify the theoretical convergence rates are given.
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    Simulation of Flow in Root-Soil Systems
    (1991-05) Arbogast, Todd; Obeyesekere, Mandri; Wheeler, Mary F.
    In this paper we develop a mathematical model of a root-soil system, and also accurate and efficient finite element and finite difference algorithms for approximating this model. The goal of our work is to develop an understanding of the properties of root systems, which can be modified by using genetic engineering techniques, in order to improve the performance of plants when water availability is limited. The results of some numerical simulations are presented, which demonstrate the effectiveness of genetic and physical changes to the root-soil system.
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