From Kinetic Theory To Turbulence Modeling


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From Kinetic Theory to Turbulence Modeling


From Kinetic Theory to Turbulence Modeling

Author: Paolo Barbante

language: en

Publisher: Springer Nature

Release Date: 2023-04-29


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The book collects relevant contributions presented at a conference, organized in honour of Carlo Cercignani, that took place at Politecnico di Milano on May 24–28, 2021. Different research areas characterizing the scientific work of Carlo Cercignani have been considered with a particular focus on: mathematical and numerical methods for kinetic equations; kinetic modelling of gas mixtures and polyatomic gases; applications of the Boltzmann equation to electron transport, social phenomena and epidemic spread; turbulence modelling; the Einstein Classical Program; Dynamical Systems Theory.

Time Dependent Turbulence Modeling and Analytical Theories of Turbulence


Time Dependent Turbulence Modeling and Analytical Theories of Turbulence

Author: R. Rubinstein

language: en

Publisher:

Release Date: 1993


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Theory and Modeling of Dispersed Multiphase Turbulent Reacting Flows


Theory and Modeling of Dispersed Multiphase Turbulent Reacting Flows

Author: Lixing Zhou

language: en

Publisher: Butterworth-Heinemann

Release Date: 2018-01-25


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Theory and Modeling of Dispersed Multiphase Turbulent Reacting Flows gives a systematic account of the fundamentals of multiphase flows, turbulent flows and combustion theory. It presents the latest advances of models and theories in the field of dispersed multiphase turbulent reacting flow, covering basic equations of multiphase turbulent reacting flows, modeling of turbulent flows, modeling of multiphase turbulent flows, modeling of turbulent combusting flows, and numerical methods for simulation of multiphase turbulent reacting flows, etc. The book is ideal for graduated students, researchers and engineers in many disciplines in power and mechanical engineering. - Provides a combination of multiphase fluid dynamics, turbulence theory and combustion theory - Covers physical phenomena, numerical modeling theory and methods, and their applications - Presents applications in a wide range of engineering facilities, such as utility and industrial furnaces, gas-turbine and rocket engines, internal combustion engines, chemical reactors, and cyclone separators, etc.