МАТЕМАТИЧЕСКОЕ МОДЕЛИРОВАНИЕ ПРОЦЕССОВ ФОТОИНДУЦИРОВАННЫХ НЕУСТОЙЧИВОСТЕЙ В РАСТВОРАХ АНТРАХИНОНА

Resultado de pesquisa: Articlerevisão de pares

Resumo

Aim. The paper is devoted to the study and mathematical modeling of experimentally observed processes in oxygen saturated and deaerated anthraquinone alcohol solutions affected by nitrogen laser ultraviolet irradiation. The work’s method and technique. Both the system’s behavior represented by a large number of nonlinearly interacting particles and its properties are not inherent in the constituent elements. Besides, the specific processes of molecular interaction and energy transfer are determined by the characteristic features of the spatial inhomogenity of disordered molecular systems. Computer modeling of the system’s cooperative behavior thus determined by the local behavior of its constituent elements contributes to taking into consideration the specific features of heterogeneous systems as well as finding out the critical parameters in order to manage their properties. Results. The mathematical model is obtained that is to demonstrate the final stage of the reaction of oxygen dissolution in the reaction zone and predict the moment of the system’s critical state. The results are compared with the experimental data. Field of application. The model is suitable for prognostic evaluation as well as analysis of experimental data in mac-roscopic approximation. Due to defining the critical parameters of the structures and the identifying their correlation with the physical characteristics of the systems it is possible to propose some hypotheses and suggestions for the processes and technology of creating functional materials with needed properties.
Título traduzido da contribuiçãoCONSTRUCTING MATHEMATICAL MODEL OF PHOTO-INDUCED INSTABILITIES IN ANTHRAQUINONE SOLUTIONS
Idioma originalRussian
Páginas (de-até)141-154
Número de páginas14
RevistaВ мире научных открытий
Número de emissão2-1(38)
Estado da publicaçãoPublished - 2013

GRNTI

  • 27.00.00 MATHEMATICS

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  • VAK List

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