Narrow your search

Library

ULiège (7)

FARO (2)

KU Leuven (2)

LUCA School of Arts (2)

Odisee (2)

Thomas More Kempen (2)

Thomas More Mechelen (2)

UCLL (2)

ULB (2)

VIVES (2)

More...

Resource type

book (9)


Language

English (9)


Year
From To Submit

2023 (1)

2020 (3)

2015 (1)

2013 (1)

2011 (1)

More...
Listing 1 - 9 of 9
Sort by

Book
Fundamental study of a single point lean direct injector part I : effect of air swirler angle and injector tip location on spray characteristics
Authors: --- ---
Year: 2015 Publisher: Cleveland, Ohio : National Aeronautics and Space Administration, Glenn Research Center,

Loading...
Export citation

Choose an application

Bookmark

Abstract


Book
Numerical simulations of two-phase reacting flow in a single-element lean direct injection (LDI) combustor using NCC
Authors: --- --- --- ---
Year: 2011 Publisher: Cleveland, Ohio : National Aeronautics and Space Administration, Glenn Research Center,

Loading...
Export citation

Choose an application

Bookmark

Abstract


Book
Time-filtered Navier-Stokes approach and emulation of turbulence-chemistry interaction
Authors: --- --- --- ---
Year: 2013 Publisher: Cleveland, Ohio : National Aeronautics and Space Administration, Glenn Research Center,

Loading...
Export citation

Choose an application

Bookmark

Abstract


Book
Numerical study of stratified charge combustion in wave rotors
Authors: ---
Year: 1997 Publisher: Cleveland, Ohio : National Aeronautics and Space Administration, Lewis Research Center,

Loading...
Export citation

Choose an application

Bookmark

Abstract


Book
Improved modeling of finite-rate turbulent combustion processes in research combustors
Authors: ---
Year: 1998 Publisher: Cleveland, Ohio : National Aeronautics and Space Administration, Lewis Research Center,


Book
Machine Learning and Its Application to Reacting Flows : ML and Combustion
Authors: ---
ISBN: 303116248X 3031162471 Year: 2023 Publisher: Cham : Springer International Publishing : Imprint: Springer,

Loading...
Export citation

Choose an application

Bookmark

Abstract

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. .

Listing 1 - 9 of 9
Sort by