Numerical Study of Interactions of Hydrodynamics, Kinetics and Radiation in Flames

Numerical Study of Interactions of Hydrodynamics, Kinetics and Radiation in Flames
Title Numerical Study of Interactions of Hydrodynamics, Kinetics and Radiation in Flames PDF eBook
Author Rohit J. Nagarkar
Publisher
Pages 58
Release 2012
Genre
ISBN

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The purpose of this thesis is to simulate flame spread in zero gravity and identify different factors that can impact the flame spread rate. This was possible using the CFD code written in FORTRAN developed by Bhattacharjee. The fuel studied in this thesis is Poly (methyl methacrylate) (PMMA). A mathematical model that shows how spread rate is being calculated is explained. The importance of grids used in CFD was shown by choosing appropriate number of grids for a given domain and a rule for choosing the domain was established. Impact of boundary layer or flow development distance was deeply understood and a formula for flame tip velocity or equivalent velocity was developed. Computational spread rate was then non-dimensionalized by dividing it with spread rate obtained from de- Ris formulae and plotted against Damkohler number which was calculated based on opposed flow velocity and equivalent velocity. A large variation of opposed flow for different fuel thicknesses was plotted against spread rate to show how fuel-half thickness affects the spread rate and the impact of radiation was understood. A critical fuel-thickness up to which flame existed in a quiescent microgravity was computed using this flame code. The impact of oxygen level was also studied in detail for a given fuel thickness. Pressure was varied in the microgravity regime to see its impact on flame spread rate.

Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion

Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion
Title Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion PDF eBook
Author D. Brian Spalding
Publisher Elsevier
Pages 445
Release 2015-07-14
Genre Technology & Engineering
ISBN 1483160661

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Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion: Selected Works of Professor D. Brian Spalding focuses on the many contributions of Professor Spalding on thermodynamics. This compilation of his works is done to honor the professor on the occasion of his 60th birthday. Relatively, the works contained in this book are selected to highlight the genius of Professor Spalding in this field of interest. The book presents various research on combustion, heat transfer, turbulence, and flows. His thinking on separated flows paved the way for the multi-dimensional modeling of turbulence. Arguments on the universality of the models of turbulence and the problems that are associated with combustion engineering are clarified. The text notes the importance of combustion science as well as the problems associated with it. Mathematical computations are also presented in determining turbulent flows in different environments, including on curved pipes, curved ducts, and rotating ducts. These calculations are presented to further strengthen the claims of Professor Spalding in this discipline. The book is a great find for those who are interested in studying thermodynamics.

Flows and Chemical Reactions in Heterogeneous Mixtures

Flows and Chemical Reactions in Heterogeneous Mixtures
Title Flows and Chemical Reactions in Heterogeneous Mixtures PDF eBook
Author Roger Prud'homme
Publisher John Wiley & Sons
Pages 204
Release 2014-12-03
Genre Science
ISBN 1848217854

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This book - a sequel of previous publications 'Flows and Chemical Reactions' and 'Chemical Reactions in Flows and Homogeneous Mixtures' - is devoted to flows with chemical reactions in heterogeneous environments. Heterogeneous media in this volume include interfaces and lines. They may be the site of radiation. Each type of flow is the subject of a chapter in this volume. We consider first, in Chapter 1, the question of the generation of environments biphasic individuals: dusty gas, mist, bubble flow. Chapter 2 is devoted to the study at the mesoscopic scale: particle-fluid exchange of momentum and heat with determination of the respective exchange coefficients. In Chapter 3, we establish simplified equations of macroscopic balance for mass, for the momentum and energy, in the case of particles of one size (monodisperse suspension). Radiative phenomena are presented in Chapter 5.

Numerical Investigation of Radiation and Turbulence Interactions in Supersonically Expanded Hydrogen-air Diffusion Flames

Numerical Investigation of Radiation and Turbulence Interactions in Supersonically Expanded Hydrogen-air Diffusion Flames
Title Numerical Investigation of Radiation and Turbulence Interactions in Supersonically Expanded Hydrogen-air Diffusion Flames PDF eBook
Author T. O. Mohieldin
Publisher
Pages
Release 1995
Genre
ISBN

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Reduced Kinetic Mechanisms for Applications in Combustion Systems

Reduced Kinetic Mechanisms for Applications in Combustion Systems
Title Reduced Kinetic Mechanisms for Applications in Combustion Systems PDF eBook
Author Norbert Peters
Publisher Springer Science & Business Media
Pages 364
Release 2008-09-11
Genre Science
ISBN 3540475435

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In general, combustion is a spatially three-dimensional, highly complex physi co-chemical process oftransient nature. Models are therefore needed that sim to such a degree that it becomes amenable plify a given combustion problem to theoretical or numerical analysis but that are not so restrictive as to distort the underlying physics or chemistry. In particular, in view of worldwide efforts to conserve energy and to control pollutant formation, models of combustion chemistry are needed that are sufficiently accurate to allow confident predic tions of flame structures. Reduced kinetic mechanisms, which are the topic of the present book, represent such combustion-chemistry models. Historically combustion chemistry was first described as a global one-step reaction in which fuel and oxidizer react to form a single product. Even when detailed mechanisms ofelementary reactions became available, empirical one step kinetic approximations were needed in order to make problems amenable to theoretical analysis. This situation began to change inthe early 1970s when computing facilities became more powerful and more widely available, thereby facilitating numerical analysis of relatively simple combustion problems, typi cally steady one-dimensional flames, with moderately detailed mechanisms of elementary reactions. However, even on the fastest and most powerful com puters available today, numerical simulations of, say, laminar, steady, three dimensional reacting flows with reasonably detailed and hence realistic ki netic mechanisms of elementary reactions are not possible.

Fluid Mechanics Aspects of Fire and Smoke Dynamics in Enclosures

Fluid Mechanics Aspects of Fire and Smoke Dynamics in Enclosures
Title Fluid Mechanics Aspects of Fire and Smoke Dynamics in Enclosures PDF eBook
Author Bart Merci
Publisher CRC Press
Pages 355
Release 2022-10-24
Genre Technology & Engineering
ISBN 1000755967

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- written by world leading experts in the field - contains many worked-out examples, taken from daily life fire related practical problems - covers the entire range from basics up to state-of-the-art computer simulations of fire and smoke related fluid mechanics aspects, including the effect of water - provides extensive treatment of the interaction of water sprays with a fire-driven flow - contains a chapter on CFD (Computational Fluid Dynamics), the increasingly popular calculation method in the field of fire safety science

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 702
Release 1995
Genre Aeronautics
ISBN

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