Optimisation Approach to Minimize the Effects of Technological Disasters

Author:

Brizitskii R V,Bystrova V S,Savinov P A

Abstract

Abstract It is known that the concentration of the pollutant can be reduced by adding a reagent, which increase the rate of pollutant’s decomposition. In framework of the optimization approach, the problem of decreasing of the pollutant’s concentration is reduced to the multiplicative control problem for a nonlinear model of reaction-diffusion- convection. In the model under consideration, the reaction coefficient rather arbitrarily depends on both the concentration of the pollutant and the spatial variable.

Publisher

IOP Publishing

Subject

General Engineering

Reference23 articles.

1. Estimation of the convection coefficient in elliptic equations;Ito;Inverse Problems,1997

2. On solvability of inverse extremal problems for stationary equations of viscous heat conducting fluid;Alekseev;J. Inv. Ill-Posed Probl.,1998

3. Theoretical analysis of inverse extremal problems of admixture diffusion in viscous fluids;Alekseev;J. Inverse Ill-Posed Probl.,2001

4. Solvability of inverse extremal problems for stationary heat and mass transfer equations;Alekseev;Sib. Math. J.,2001

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