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Transfer of substance in vortex and ...
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Chaplina, Tatiana.
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Transfer of substance in vortex and wave flows in one-component and multi-component environment
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Transfer of substance in vortex and wave flows in one-component and multi-component environment/ by Tatiana Chaplina.
作者:
Chaplina, Tatiana.
出版者:
Cham :Springer Nature Switzerland : : 2023.,
面頁冊數:
1 online resource (xiv, 145 p.) :ill. (some col.), digital ;24 cm.
內容註:
Vortex flow in a homogeneous fluid -- Solute admixture transport from a compact source in a composite vortex -- Transfer of immiscible admixture in a vortex flow -- Motion of solid markers in a vortex flow -- Modelling hydrocarbon spillage on the surface of water.
Contained By:
Springer Nature eBook
標題:
Vortex-motion. -
電子資源:
https://doi.org/10.1007/978-3-031-31856-6
ISBN:
9783031318566
Transfer of substance in vortex and wave flows in one-component and multi-component environment
Chaplina, Tatiana.
Transfer of substance in vortex and wave flows in one-component and multi-component environment
[electronic resource] /by Tatiana Chaplina. - Cham :Springer Nature Switzerland :2023. - 1 online resource (xiv, 145 p.) :ill. (some col.), digital ;24 cm. - Earth and environmental sciences library,2730-6682. - Earth and environmental sciences library..
Vortex flow in a homogeneous fluid -- Solute admixture transport from a compact source in a composite vortex -- Transfer of immiscible admixture in a vortex flow -- Motion of solid markers in a vortex flow -- Modelling hydrocarbon spillage on the surface of water.
The study of vortex and wave flows is one of the traditional problems of fluid mechanics, the practical importance of which has grown significantly in recent years. Consideration of the processes of substance transfer in such complex systems as natural water bodies is fraught with many difficulties of a methodological and fundamental nature: the extreme complexity of conducting a full-scale experiment, the complexity and variability of hydrophysical fields of the ocean and hydrometeorological conditions during research, and also, in some cases, the complexity and the variability of the properties of the transferred substance. In this connection, it is of particular interest to study the transfer of markers in stationary vortex and wave flows, which can form in laboratory facilities with constant external conditions. In this case, it is possible to avoid problems associated with the spatial and temporal variability of natural sources of vortex formations and directly trace the dependence of the characteristic flow parameters or the characteristics of the movement of solid or other objects placed during. This book presents the results of experimental and theoretical studies of the dynamics and structure of multiphase vortex flows and the nature of the transfer of three types of markers: solid-state (ice, plastic), immiscible with water (oil, oil, diesel) and soluble (aniline dyes, uranyl) The results will be important, first of all, for a better understanding of the behavior of various impurities in the circulation flows and more accurate prediction of their distribution in natural conditions (in a stratified hydrosphere and atmosphere)
ISBN: 9783031318566
Standard No.: 10.1007/978-3-031-31856-6doiSubjects--Topical Terms:
658448
Vortex-motion.
LC Class. No.: QA925
Dewey Class. No.: 532.595
Transfer of substance in vortex and wave flows in one-component and multi-component environment
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The study of vortex and wave flows is one of the traditional problems of fluid mechanics, the practical importance of which has grown significantly in recent years. Consideration of the processes of substance transfer in such complex systems as natural water bodies is fraught with many difficulties of a methodological and fundamental nature: the extreme complexity of conducting a full-scale experiment, the complexity and variability of hydrophysical fields of the ocean and hydrometeorological conditions during research, and also, in some cases, the complexity and the variability of the properties of the transferred substance. In this connection, it is of particular interest to study the transfer of markers in stationary vortex and wave flows, which can form in laboratory facilities with constant external conditions. In this case, it is possible to avoid problems associated with the spatial and temporal variability of natural sources of vortex formations and directly trace the dependence of the characteristic flow parameters or the characteristics of the movement of solid or other objects placed during. This book presents the results of experimental and theoretical studies of the dynamics and structure of multiphase vortex flows and the nature of the transfer of three types of markers: solid-state (ice, plastic), immiscible with water (oil, oil, diesel) and soluble (aniline dyes, uranyl) The results will be important, first of all, for a better understanding of the behavior of various impurities in the circulation flows and more accurate prediction of their distribution in natural conditions (in a stratified hydrosphere and atmosphere)
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