Thermal Protection Modeling - Softcover

Yakimov

 
9780323911634: Thermal Protection Modeling

Inhaltsangabe

Thermal Protection Modeling presents the fundamental knowledge, applications, and methods of heat transfer augmentation techniques for current and future thermal protection systems. This book covers common challenges and their most appropriate solutions, presenting boundary conditions for the simulations of heat transfer and design of combined and active thermal protection. Important application aspects of heat transfer augmentation techniques in a single-phase system are compared in a practical way with a strong modeling approach. This book will provide a strong understanding of the current and future state of thermal protection systems and assist the reader in their own problem solving and modeling approaches.

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Über die Autorin bzw. den Autor

AS. Yakimov (the Department of Physical and Computational Mechanics, Tomsk State University, Tomsk, Russia). Anatoly Stepanovich Yakimov is a Senior Fellow and Professor of the Department of Physical and Computational Mechanics of Tomsk State University, Russia. He is the author of text-books, monographs and 70 scientific publications devoted to the mathematical modeling of the thermal protection and the development of mathematical technology solution of mathematical physics equations.

Von der hinteren Coverseite

Thermal Protection Modeling presents the fundamental knowledge, applications and methods of heat transfer augmentation techniques for the current and the future of thermal protection systems. This book is mathematically and practically balanced to give the reader a complete picture of common challenges and their most appropriate solutions. It presents boundary conditions for the simulations of heat transfer and the design of combined and active thermal protection. Important application aspects of heat transfer augmentation techniques in a single-phase system are compared in a practical way with a strong modelling approach. Developed mathematical models for active and combined thermal protection systems are considered alongside various complicated factors, such as the mass entrainment from the surface, phase transformations of liquid in a porous material, rotational and vibrational motion of a body around the longitudinal axis and the effect of small periodic disturbances.

This book will provide a strong understanding of the current and future state of thermal protection systems and assist the reader in their own problem solving and modelling approaches.

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