Influence of Chemical Reactions on the Nonlinear Dynamics of Dissipative Flows
A.R. Karimov, A.M. Korshunov, V.V. Beklemishev

TL;DR
This paper investigates how chemical reactions affect the nonlinear behavior and singularity development in resistive fluid flows using a Lagrangian framework.
Contribution
It introduces a Lagrangian approach to analyze the impact of chemical reactions on nonlinear resistive flow dynamics and singularity formation.
Findings
Chemical reactions alter the development of fluid singularities.
The Lagrangian description provides new insights into flow behavior.
Chemical reactions influence the stability of resistive flows.
Abstract
The nonlinear dynamics of resistive flow with a chemical reaction is studied. Proceeding from the Lagrangian description, the influence of a chemical reaction on the development of fluid singularities is considered.
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