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This book contains select invited chapters on the latest research
in numerical fluid dynamics and applications. The book aims at
discussing the state-of-the-art developments and improvements in
numerical fluid dynamics. All the chapters are presented for
approximating and simulating how these methods and computations
interact with different topics such as shock waves, non-equilibrium
single and two-phase flows, elastic human-airway, and global
climate. In addition to the fundamental research involving novel
types of mathematical sciences, the book presents theoretical and
numerical developments in fluid dynamics. The contributions by
well-established global experts in fluid dynamics have brought
different features of numerical fluid dynamics in a single book.
The book serves as a useful resource for high-impact advances
involving computational fluid dynamics, including recent
developments in mathematical modelling, numerical methods such as
finite volume, finite difference and finite element, symbolic
computations, and open numerical programs such as OpenFOAM
software. The book addresses interdisciplinary topics in industrial
mathematics that lie at the forefront of research into new types of
mathematical sciences, including theory and applications. This book
will be beneficial to industrial and academic researchers, as well
as graduate students, working in the fields of natural and
engineering sciences. The book will provide the reader highly
successful materials and necessary research in the field of fluid
dynamics.
This edited book provides invited and reviewed contributions in
mathematical, physical and experimental modelling and simulations
in all fluid mechanics branches. Contributions explore the emerging
and state-of-the-art tools in the field authored by
well-established researchers to derive improved performance of
modelling and simulations. Serving the multidisciplinary fluid
mechanics community, this book aims to publish new research work
that enhances the prediction and understanding of fluid mechanics
and balances from academic theory to practical applications through
modelling, numerical studies, algorithms and simulation. The book
offers researchers, students and practitioners significant insights
on modelling and simulations in fluid mechanics. It offers readers
a range of academic contributions on fluid mechanics by researchers
that have become leaders in their field. The research work
presented in this book will add values to the existing literature
in terms of what needs to be done better to direct modelling and
simulations towards a growing and rapidly developing field.
This edited book provides invited and reviewed contributions in
mathematical, physical and experimental modelling and simulations
in all fluid mechanics branches. Contributions explore the emerging
and state-of-the-art tools in the field authored by
well-established researchers to derive improved performance of
modelling and simulations. Serving the multidisciplinary fluid
mechanics community, this book aims to publish new research work
that enhances the prediction and understanding of fluid mechanics
and balances from academic theory to practical applications through
modelling, numerical studies, algorithms and simulation. The book
offers researchers, students and practitioners significant insights
on modelling and simulations in fluid mechanics. It offers readers
a range of academic contributions on fluid mechanics by researchers
that have become leaders in their field. The research work
presented in this book will add values to the existing literature
in terms of what needs to be done better to direct modelling and
simulations towards a growing and rapidly developing field.
This book contains select invited chapters on the latest research
in numerical fluid dynamics and applications. The book aims at
discussing the state-of-the-art developments and improvements in
numerical fluid dynamics. All the chapters are presented for
approximating and simulating how these methods and computations
interact with different topics such as shock waves, non-equilibrium
single and two-phase flows, elastic human-airway, and global
climate. In addition to the fundamental research involving novel
types of mathematical sciences, the book presents theoretical and
numerical developments in fluid dynamics. The contributions by
well-established global experts in fluid dynamics have brought
different features of numerical fluid dynamics in a single book.
The book serves as a useful resource for high-impact advances
involving computational fluid dynamics, including recent
developments in mathematical modelling, numerical methods such as
finite volume, finite difference and finite element, symbolic
computations, and open numerical programs such as OpenFOAM
software. The book addresses interdisciplinary topics in industrial
mathematics that lie at the forefront of research into new types of
mathematical sciences, including theory and applications. This book
will be beneficial to industrial and academic researchers, as well
as graduate students, working in the fields of natural and
engineering sciences. The book will provide the reader highly
successful materials and necessary research in the field of fluid
dynamics.
This book collects select papers presented at the 7th International
Arab Conference on Mathematics and Computations (IACMC 2022), held
from 11–13 May 2022, at Zarqa University, Zarqa, Jordan. These
papers discuss a new direction for mathematical sciences.
Researchers, professionals and educators will be exposed to
research results contributed by worldwide scholars in fundamental
and advanced interdisciplinary mathematical research such as
differential equations, dynamical systems, matrix analysis,
numerical methods and mathematical modelling. The vision of this
book is to establish prototypes in completed, current and future
mathematical and applied sciences research from advanced and
developing countries. The book is intended to make an intellectual
contribution to the theory and practice of mathematics. This
proceedings would connect scientists in this part of the world to
the international level.
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