Advanced Turbulent Combustion Physics And Applications

Advanced Turbulent Combustion Physics And Applications Book in PDF, ePub and Kindle version is available to download in english. Read online anytime anywhere directly from your device. Click on the download button below to get a free pdf file of Advanced Turbulent Combustion Physics And Applications book. This book definitely worth reading, it is an incredibly well-written.

Advanced Turbulent Combustion Physics and Applications

Author : N. Swaminathan,X.-S. Bai,N. E. L. Haugen,C. Fureby,G. Brethouwer
Publisher : Cambridge University Press
Page : 485 pages
File Size : 42,5 Mb
Release : 2022-01-06
Category : Science
ISBN : 9781108497961

Get Book

Advanced Turbulent Combustion Physics and Applications by N. Swaminathan,X.-S. Bai,N. E. L. Haugen,C. Fureby,G. Brethouwer Pdf

Explore a thorough overview of the current knowledge, developments and outstanding challenges in turbulent combustion and application.

Advanced Turbulent Combustion Physics and Applications

Author : N. Swaminathan,X.-S. Bai,N. E. L. Haugen,C. Fureby,G. Brethouwer
Publisher : Cambridge University Press
Page : 128 pages
File Size : 54,7 Mb
Release : 2022-01-06
Category : Technology & Engineering
ISBN : 9781108572750

Get Book

Advanced Turbulent Combustion Physics and Applications by N. Swaminathan,X.-S. Bai,N. E. L. Haugen,C. Fureby,G. Brethouwer Pdf

Explore a thorough and up to date overview of the current knowledge, developments and outstanding challenges in turbulent combustion and application. The balance among various renewable and combustion technologies are surveyed, and numerical and experimental tools are discussed along with recent advances. Covers combustion of gaseous, liquid and solid fuels and subsonic and supersonic flows. This detailed insight into the turbulence-combustion coupling with turbulence and other physical aspects, shared by a number of the world leading experts in the field, makes this an excellent reference for graduate students, researchers and practitioners in the field.

Turbulent Combustion Modeling

Author : Tarek Echekki,Epaminondas Mastorakos
Publisher : Springer Science & Business Media
Page : 490 pages
File Size : 52,8 Mb
Release : 2010-12-25
Category : Technology & Engineering
ISBN : 9789400704121

Get Book

Turbulent Combustion Modeling by Tarek Echekki,Epaminondas Mastorakos Pdf

Turbulent combustion sits at the interface of two important nonlinear, multiscale phenomena: chemistry and turbulence. Its study is extremely timely in view of the need to develop new combustion technologies in order to address challenges associated with climate change, energy source uncertainty, and air pollution. Despite the fact that modeling of turbulent combustion is a subject that has been researched for a number of years, its complexity implies that key issues are still eluding, and a theoretical description that is accurate enough to make turbulent combustion models rigorous and quantitative for industrial use is still lacking. In this book, prominent experts review most of the available approaches in modeling turbulent combustion, with particular focus on the exploding increase in computational resources that has allowed the simulation of increasingly detailed phenomena. The relevant algorithms are presented, the theoretical methods are explained, and various application examples are given. The book is intended for a relatively broad audience, including seasoned researchers and graduate students in engineering, applied mathematics and computational science, engine designers and computational fluid dynamics (CFD) practitioners, scientists at funding agencies, and anyone wishing to understand the state-of-the-art and the future directions of this scientifically challenging and practically important field.

Advanced Turbulent Combustion Modeling for Gas Turbine Application

Author : Andrea Donini
Publisher : Andrea Donini
Page : 128 pages
File Size : 47,9 Mb
Release : 2024-05-23
Category : Electronic
ISBN : 9789038636191

Get Book

Advanced Turbulent Combustion Modeling for Gas Turbine Application by Andrea Donini Pdf

In spite of the increasing presence of renewable energy sources, fossil fuels will remain the primary supply of the world's energy needs for the upcoming future. Modern gas-turbine based systems represent one of the most efficient large-scale power generation technology currently available. Alongside this, gas-turbine power plants operate with very low emissions, have flexible operational characteristics and are able to utilize a broad range of fuels. It is expected that gas-turbine based plants will play an important role as an effective means of converting combustion energy in the future as well, because of the vast potential energy savings. The numerical approach to the design of complex systems such as gas-turbines has gained a continuous growth of interest in the last few decades. This because simulations are foreseen to provide a tremendous increase in the combustor efficiency, fuel-flexibility and quality over the next future. In this dissertation, an advanced turbulent combustion technique is implemented and progressively developed for the simulation of all the features that are typically observed in stationary gas-turbine combustion, including hydrogen as a fuel. The developed turbulent combustion model retains most of the accuracy of a detailed simulation while drastically reducing its computational time. As a result of this work, the advancement of power generation plants can be accelerated, paving the way for future developments of alternative fuel usage in a cleaner and more efficient combustion.

Modeling and Simulation of Turbulent Combustion

Author : Santanu De,Avinash Kumar Agarwal,Swetaprovo Chaudhuri,Swarnendu Sen
Publisher : Springer
Page : 661 pages
File Size : 49,5 Mb
Release : 2017-12-12
Category : Science
ISBN : 9789811074103

Get Book

Modeling and Simulation of Turbulent Combustion by Santanu De,Avinash Kumar Agarwal,Swetaprovo Chaudhuri,Swarnendu Sen Pdf

This book presents a comprehensive review of state-of-the-art models for turbulent combustion, with special emphasis on the theory, development and applications of combustion models in practical combustion systems. It simplifies the complex multi-scale and nonlinear interaction between chemistry and turbulence to allow a broader audience to understand the modeling and numerical simulations of turbulent combustion, which remains at the forefront of research due to its industrial relevance. Further, the book provides a holistic view by covering a diverse range of basic and advanced topics—from the fundamentals of turbulence–chemistry interactions, role of high-performance computing in combustion simulations, and optimization and reduction techniques for chemical kinetics, to state-of-the-art modeling strategies for turbulent premixed and nonpremixed combustion and their applications in engineering contexts.

Fundamentals of Turbulent and Multiphase Combustion

Author : Kenneth Kuan-yun Kuo,Ragini Acharya
Publisher : John Wiley & Sons
Page : 914 pages
File Size : 41,7 Mb
Release : 2012-07-03
Category : Science
ISBN : 9781118099292

Get Book

Fundamentals of Turbulent and Multiphase Combustion by Kenneth Kuan-yun Kuo,Ragini Acharya Pdf

Detailed coverage of advanced combustion topics from the author of Principles of combustion, Second Edition Turbulence, turbulent combustion, and multiphase reacting flows have become major research topics in recent decades due to their application across diverse fields, including energy, environment, propulsion, transportation, industrial safety, and nanotechnology. Most of the knowledge accumulated from this research has never been published in book form—until now. Fundamentals of Turbulent and Multiphase Combustion presents up-to-date, integrated coverage of the fundamentals of turbulence, combustion, and multiphase phenomena along with useful experimental techniques, including non-intrusive, laser-based measurement techniques, providing a firm background in both contemporary and classical approaches. Beginning with two full chapters on laminar premixed and non-premixed flames, this book takes a multiphase approach, beginning with more common topics and moving on to higher-level applications. In addition, Fundamentals of Turbulent and Multiphase Combustion: Addresses seven basic topical areas in combustion and multiphase flows, including laminar premixed and non-premixed flames, theory of turbulence, turbulent premixed and non-premixed flames, and multiphase flows Covers spray atomization and combustion, solid-propellant combustion, homogeneous propellants, nitramines, reacting boundary-layer flows, single energetic particle combustion, and granular bed combustion Provides experimental setups and results whenever appropriate Supported with a large number of examples and problems as well as a solutions manual, Fundamentals of Turbulent and Multiphase Combustion is an important resource for professional engineers and researchers as well as graduate students in mechanical, chemical, and aerospace engineering.

Turbulent Combustion Modeling

Author : Tarek Echekki,Epaminondas Mastorakos
Publisher : Springer
Page : 490 pages
File Size : 45,7 Mb
Release : 2011-04-09
Category : Technology & Engineering
ISBN : 9400704135

Get Book

Turbulent Combustion Modeling by Tarek Echekki,Epaminondas Mastorakos Pdf

Turbulent combustion sits at the interface of two important nonlinear, multiscale phenomena: chemistry and turbulence. Its study is extremely timely in view of the need to develop new combustion technologies in order to address challenges associated with climate change, energy source uncertainty, and air pollution. Despite the fact that modeling of turbulent combustion is a subject that has been researched for a number of years, its complexity implies that key issues are still eluding, and a theoretical description that is accurate enough to make turbulent combustion models rigorous and quantitative for industrial use is still lacking. In this book, prominent experts review most of the available approaches in modeling turbulent combustion, with particular focus on the exploding increase in computational resources that has allowed the simulation of increasingly detailed phenomena. The relevant algorithms are presented, the theoretical methods are explained, and various application examples are given. The book is intended for a relatively broad audience, including seasoned researchers and graduate students in engineering, applied mathematics and computational science, engine designers and computational fluid dynamics (CFD) practitioners, scientists at funding agencies, and anyone wishing to understand the state-of-the-art and the future directions of this scientifically challenging and practically important field.

Machine Learning and Its Application to Reacting Flows

Author : Nedunchezhian Swaminathan,Alessandro Parente
Publisher : Springer Nature
Page : 353 pages
File Size : 42,6 Mb
Release : 2023-01-01
Category : Technology & Engineering
ISBN : 9783031162480

Get Book

Machine Learning and Its Application to Reacting Flows by Nedunchezhian Swaminathan,Alessandro Parente Pdf

This open access book introduces and explains machine learning (ML) algorithms and techniques developed for statistical inferences on a complex process or system and their applications to simulations of chemically reacting turbulent flows. These two fields, ML and turbulent combustion, have large body of work and knowledge on their own, and this book brings them together and explain the complexities and challenges involved in applying ML techniques to simulate and study reacting flows. This is important as to the world’s total primary energy supply (TPES), since more than 90% of this supply is through combustion technologies and the non-negligible effects of combustion on environment. Although alternative technologies based on renewable energies are coming up, their shares for the TPES is are less than 5% currently and one needs a complete paradigm shift to replace combustion sources. Whether this is practical or not is entirely a different question, and an answer to this question depends on the respondent. However, a pragmatic analysis suggests that the combustion share to TPES is likely to be more than 70% even by 2070. Hence, it will be prudent to take advantage of ML techniques to improve combustion sciences and technologies so that efficient and “greener” combustion systems that are friendlier to the environment can be designed. The book covers the current state of the art in these two topics and outlines the challenges involved, merits and drawbacks of using ML for turbulent combustion simulations including avenues which can be explored to overcome the challenges. The required mathematical equations and backgrounds are discussed with ample references for readers to find further detail if they wish. This book is unique since there is not any book with similar coverage of topics, ranging from big data analysis and machine learning algorithm to their applications for combustion science and system design for energy generation.

Applications of Turbulent and Multiphase Combustion

Author : Kenneth Kuan-yun Kuo,Ragini Acharya
Publisher : John Wiley & Sons
Page : 602 pages
File Size : 48,5 Mb
Release : 2012-07-26
Category : Science
ISBN : 9781118130704

Get Book

Applications of Turbulent and Multiphase Combustion by Kenneth Kuan-yun Kuo,Ragini Acharya Pdf

A hands-on, integrated approach to solving combustion problems in diverse areas An understanding of turbulence, combustion, and multiphase reacting flows is essential for engineers and scientists in many industries, including power genera-tion, jet and rocket propulsion, pollution control, fire prevention and safety, and material processing. This book offers a highly practical discussion of burning behavior and chemical processes occurring in diverse materials, arming readers with the tools they need to solve the most complex combustion problems facing the scientific community today. The second of a two-volume work, Applications of Turbulent and Multiphase Combustion expands on topics involving laminar flames from Professor Kuo's bestselling book Principles of Combustion, Second Edition, then builds upon the theory discussed in the companion volume Fundamentals of Turbulent and Multiphase Combustion to address in detail cutting-edge experimental techniques and applications not covered anywhere else. Special features of this book include: Coverage of advanced applications such as solid propellants, burning behavior, and chemical boundary layer flows A multiphase systems approach discussing basic concepts before moving to higher-level applications A large number of practical examples gleaned from the authors' experience along with problems and a solutions manual Engineers and researchers in chemical and mechanical engineering and materials science will find Applications of Turbulent and Multiphase Combustion an indispensable guide for upgrading their skills and keeping up with this rapidly evolving area. It is also an excellent resource for students and professionals in mechanical, chemical, and aerospace engineering.

Fundamentals of Premixed Turbulent Combustion

Author : Andrei Lipatnikov
Publisher : CRC Press
Page : 551 pages
File Size : 45,9 Mb
Release : 2012-10-24
Category : Science
ISBN : 9781466510241

Get Book

Fundamentals of Premixed Turbulent Combustion by Andrei Lipatnikov Pdf

Lean burning of premixed gases is considered to be a promising combustion technology for future clean and highly efficient gas turbine combustors. Yet researchers face several challenges in dealing with premixed turbulent combustion, from its nonlinear multiscale nature and the impact of local phenomena to the multitude of competing models. Filling a gap in the literature, Fundamentals of Premixed Turbulent Combustion introduces the state of the art of premixed turbulent combustion in an accessible manner for newcomers and experienced researchers alike. To more deeply consider current research issues, the book focuses on the physical mechanisms and phenomenology of premixed flames, with a brief discussion of recent advances in partially premixed turbulent combustion. It begins with a summary of the relevant knowledge needed from disciplines such as thermodynamics, chemical kinetics, molecular transport processes, and fluid dynamics. The book then presents experimental data on the general appearance of premixed turbulent flames and details the physical mechanisms that could affect the flame behavior. It also examines the physical and numerical models for predicting the key features of premixed turbulent combustion. Emphasizing critical analysis, the book compares competing concepts and viewpoints with one another and with the available experimental data, outlining the advantages and disadvantages of each approach. In addition, it discusses recent advances and highlights unresolved issues. Written by a leading expert in the field, this book provides a valuable overview of the physics of premixed turbulent combustion. Combining simplicity and topicality, it helps researchers orient themselves in the contemporary literature and guides them in selecting the best research tools for their work.

Radiative Heat Transfer in Turbulent Combustion Systems

Author : Michael F. Modest,Daniel C. Haworth
Publisher : Springer
Page : 151 pages
File Size : 48,8 Mb
Release : 2016-01-06
Category : Science
ISBN : 9783319272917

Get Book

Radiative Heat Transfer in Turbulent Combustion Systems by Michael F. Modest,Daniel C. Haworth Pdf

This introduction reviews why combustion and radiation are important, as well as the technical challenges posed by radiation. Emphasis is on interactions among turbulence, chemistry and radiation (turbulence-chemistry-radiation interactions – TCRI) in Reynolds-averaged and large-eddy simulations. Subsequent chapters cover: chemically reacting turbulent flows; radiation properties, Reynolds transport equation (RTE) solution methods, and TCRI; radiation effects in laminar flames; TCRI in turbulent flames; and high-pressure combustion systems. This Brief presents integrated approach that includes radiation at the outset, rather than as an afterthought. It stands as the most recent developments in physical modeling, numerical algorithms, and applications collected in one monograph.

Fundamentals of Premixed Turbulent Combustion

Author : Andrei Lipatnikov
Publisher : CRC Press
Page : 548 pages
File Size : 51,8 Mb
Release : 2012-10-24
Category : Science
ISBN : 9781466510258

Get Book

Fundamentals of Premixed Turbulent Combustion by Andrei Lipatnikov Pdf

Lean burning of premixed gases is considered to be a promising combustion technology for future clean and highly efficient gas turbine combustors. Yet researchers face several challenges in dealing with premixed turbulent combustion, from its nonlinear multiscale nature and the impact of local phenomena to the multitude of competing models. Filling

New Tools in Turbulence Modelling

Author : Olivier Metais,Joel H. Ferziger
Publisher : Springer Science & Business Media
Page : 312 pages
File Size : 48,5 Mb
Release : 2013-06-29
Category : Science
ISBN : 9783662089750

Get Book

New Tools in Turbulence Modelling by Olivier Metais,Joel H. Ferziger Pdf

Numerical large-eddy simulation techniques are booming at present and will have a decisive impact on industrial modeling and flow control. The book represents the general framework in physical and spectral space. It also gives the recent subgrid-scale models. Topics treated include compressible turbulence research, turbulent combustion, acoustic predictions, vortex dynamics in non-trivial geometries, flows in nuclear reactors and problems in atmospheric and geophysical sciences. The book addresses numerical analysts, physicists, and engineers.

IUTAM Symposium on Turbulent Mixing and Combustion

Author : Andrew Pollard,Sebastien Candel
Publisher : Springer Science & Business Media
Page : 454 pages
File Size : 44,6 Mb
Release : 2013-03-14
Category : Science
ISBN : 9789401719988

Get Book

IUTAM Symposium on Turbulent Mixing and Combustion by Andrew Pollard,Sebastien Candel Pdf

The goals of the Symposium were to draw together researchers in turbulence and combustion so as to highlight advances and challenge the boundaries to our understanding of turbulent mixing and combus tion from both experimental and simulation perspectives; to facilitate cross-fertilization between leaders in these two fields. These goals were noted to be important given that turbulence itself is viewed as the last great problem in classical physics and the addition of chemical reaction amplifies the difficulties enormously. The papers that have been included here reflect the richness of our subject. Turbulence is rich and complex in its own right. And, its inner structure, hidden in the morass of scales, large and small, can dominate transport. Earlier IUTAM Symposia have considered this field, Eddy Structure Identification in Free Turbulent Flows, Bonnet and Glauser (eds) 1992 and Simulation and Identification of Organized Structures in Flows, Sorensen, Hopfinger and Aubry (eds) 1997. The combustion community is well served by its specialized events, most notable is the bi annual International Combustion Symposium, held under the auspices of the Combustion Institute. Mixing is often considered somewhere in between these two. This broad landscape was addressed in this Sym posium in a somewhat temporal linear fashion of increasing complexity. The lectures considered the many challenges posed by adding one ele ment to the base formed by others: turbulence and turbulent mixing in the absence of combustion through to turbulent mixing dominated by chemistry and combustion.

Turbulent Reactive Flows

Author : R. Borghi,S.N.B. Murthy
Publisher : Springer Science & Business Media
Page : 958 pages
File Size : 46,8 Mb
Release : 2013-03-08
Category : Science
ISBN : 9781461396314

Get Book

Turbulent Reactive Flows by R. Borghi,S.N.B. Murthy Pdf

Turbulent reactive flows are of common occurrance in combustion engineering, chemical reactor technology and various types of engines producing power and thrust utilizing chemical and nuclear fuels. Pollutant formation and dispersion in the atmospheric environment and in rivers, lakes and ocean also involve interactions between turbulence, chemical reactivity and heat and mass transfer processes. Considerable advances have occurred over the past twenty years in the understanding, analysis, measurement, prediction and control of turbulent reactive flows. Two main contributors to such advances are improvements in instrumentation and spectacular growth in computation: hardware, sciences and skills and data processing software, each leading to developments in others. Turbulence presents several features that are situation-specific. Both for that reason and a number of others, it is yet difficult to visualize a so-called solution of the turbulence problem or even a generalized approach to the problem. It appears that recognition of patterns and structures in turbulent flow and their study based on considerations of stability, interactions, chaos and fractal character may be opening up an avenue of research that may be leading to a generalized approach to classification and analysis and, possibly, prediction of specific processes in the flowfield. Predictions for engineering use, on the other hand, can be foreseen for sometime to come to depend upon modeling of selected features of turbulence at various levels of sophistication dictated by perceived need and available capability.