Aero/Hydrodynamics and Symmetry

This book presents collective works published in the recent Special Issue (SI) entitled "Aero/Hydrodynamics and Symmetry". These works address the existence of symmetry and its breakdown in aero-/hydro-dynamics and their related applications. The presented problems are complex nonlinear, non-Newtoni...

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Format: Online
Język:angielski
Wydane: MDPI - Multidisciplinary Digital Publishing Institute 2021
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MHD
Dostęp online:ONIX_20210501_9783039368921_722
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collection Directory of Open Access Books
description This book presents collective works published in the recent Special Issue (SI) entitled "Aero/Hydrodynamics and Symmetry". These works address the existence of symmetry and its breakdown in aero-/hydro-dynamics and their related applications. The presented problems are complex nonlinear, non-Newtonian fluid flow problems that are (in some cases) coupled with heat transfer, phase change, nanofluidic, and magnetohydrodynamics phenomena. The applications vary and range from polymer chain transfer in micro-channel to the evaluation of vertical axis wind turbines, as well as autonomous underwater hovering vehicles. Recent advances in numerical, theoretical, and experimental methodologies, as well as finding new physics, new methodological developments, and their limitations are presented within the scope of the current book. Among others, in the presented works, special attention is paid to validation and improving the accuracy of the presented methodologies. This book brings together a collection of inter-/multi-disciplinary works applied to many engineering applications in a coherent manner.
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language eng
publishDate 2021
publishDateRange 2021
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publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
record_format ojs
spelling doab-20.500.12854ir-689762024-04-11T15:11:33Z Aero/Hydrodynamics and Symmetry Shadloo, Mostafa Safdari Savonius vertical axis wind turbine horizontal overlap ratio vertical overlap ratio torque coefficient power coefficient Advection–diffusion fractional derivative concentrated source integral transform Burgers’ fluid velocity field shear stress Laplace transform modified Bessel function Stehfest’s algorithm MATHCAD electroosmotic flow power law fluid nanoparticles MHD entropy generation convergence analysis residual error autonomous underwater vehicle (AUV) airborne-launched AUV autonomous underwater hovering vehicle (AUH) water entry impact force computational fluid dynamics (CFD) two-phase flow Autonomous Underwater Vehicle (AUV) Autonomous Underwater Hovering Vehicle (AUH) hydrodynamic interaction response amplitude operator (RAO) wave effects symmetric flying wing plasma flow control energy stall dimensionless frequency particle image velocimetry SA–NaAlg fluid porosity fractional model Atangana–Baleanu derivative large eddy simulation subgrid scale model diffuser dynamic one equation model Vreman model separation heat conduction non-fourier solution structure theorems superposition approach Buongiorno model unsteady flow nanoliquid special third-grade liquid non-linear thermal radiation magneto hydro-dynamics (MHD) dissipative particle dynamics (DPD) Hartmann number (Ha-value) harmony bond coefficient or spring constant (K) thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology This book presents collective works published in the recent Special Issue (SI) entitled "Aero/Hydrodynamics and Symmetry". These works address the existence of symmetry and its breakdown in aero-/hydro-dynamics and their related applications. The presented problems are complex nonlinear, non-Newtonian fluid flow problems that are (in some cases) coupled with heat transfer, phase change, nanofluidic, and magnetohydrodynamics phenomena. The applications vary and range from polymer chain transfer in micro-channel to the evaluation of vertical axis wind turbines, as well as autonomous underwater hovering vehicles. Recent advances in numerical, theoretical, and experimental methodologies, as well as finding new physics, new methodological developments, and their limitations are presented within the scope of the current book. Among others, in the presented works, special attention is paid to validation and improving the accuracy of the presented methodologies. This book brings together a collection of inter-/multi-disciplinary works applied to many engineering applications in a coherent manner. 2021-05-01T15:34:35Z 2021-05-01T15:34:35Z 2020 book ONIX_20210501_9783039368921_722 9783039368921 9783039368938 https://directory.doabooks.org/handle/20.500.12854/68976 eng application/octet-stream Attribution 4.0 International https://mdpi.com/books/pdfview/book/2744 https://mdpi.com/books/pdfview/book/2744 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03936-893-8 10.3390/books978-3-03936-893-8 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783039368921 9783039368938 216 Basel, Switzerland open access
spellingShingle Savonius vertical axis wind turbine
horizontal overlap ratio
vertical overlap ratio
torque coefficient
power coefficient
Advection–diffusion
fractional derivative
concentrated source
integral transform
Burgers’ fluid
velocity field
shear stress
Laplace transform
modified Bessel function
Stehfest’s algorithm
MATHCAD
electroosmotic flow
power law fluid
nanoparticles
MHD
entropy generation
convergence analysis
residual error
autonomous underwater vehicle (AUV)
airborne-launched AUV
autonomous underwater hovering vehicle (AUH)
water entry impact force
computational fluid dynamics (CFD)
two-phase flow
Autonomous Underwater Vehicle (AUV)
Autonomous Underwater Hovering Vehicle (AUH)
hydrodynamic interaction
response amplitude operator (RAO)
wave effects
symmetric flying wing
plasma flow control
energy
stall
dimensionless frequency
particle image velocimetry
SA–NaAlg fluid
porosity
fractional model
Atangana–Baleanu derivative
large eddy simulation
subgrid scale model
diffuser
dynamic one equation model
Vreman model
separation
heat conduction
non-fourier
solution structure theorems
superposition approach
Buongiorno model
unsteady flow
nanoliquid
special third-grade liquid
non-linear thermal radiation
magneto hydro-dynamics (MHD)
dissipative particle dynamics (DPD)
Hartmann number (Ha-value)
harmony bond coefficient or spring constant (K)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
Aero/Hydrodynamics and Symmetry
title Aero/Hydrodynamics and Symmetry
title_full Aero/Hydrodynamics and Symmetry
title_fullStr Aero/Hydrodynamics and Symmetry
title_full_unstemmed Aero/Hydrodynamics and Symmetry
title_short Aero/Hydrodynamics and Symmetry
title_sort aero hydrodynamics and symmetry
topic Savonius vertical axis wind turbine
horizontal overlap ratio
vertical overlap ratio
torque coefficient
power coefficient
Advection–diffusion
fractional derivative
concentrated source
integral transform
Burgers’ fluid
velocity field
shear stress
Laplace transform
modified Bessel function
Stehfest’s algorithm
MATHCAD
electroosmotic flow
power law fluid
nanoparticles
MHD
entropy generation
convergence analysis
residual error
autonomous underwater vehicle (AUV)
airborne-launched AUV
autonomous underwater hovering vehicle (AUH)
water entry impact force
computational fluid dynamics (CFD)
two-phase flow
Autonomous Underwater Vehicle (AUV)
Autonomous Underwater Hovering Vehicle (AUH)
hydrodynamic interaction
response amplitude operator (RAO)
wave effects
symmetric flying wing
plasma flow control
energy
stall
dimensionless frequency
particle image velocimetry
SA–NaAlg fluid
porosity
fractional model
Atangana–Baleanu derivative
large eddy simulation
subgrid scale model
diffuser
dynamic one equation model
Vreman model
separation
heat conduction
non-fourier
solution structure theorems
superposition approach
Buongiorno model
unsteady flow
nanoliquid
special third-grade liquid
non-linear thermal radiation
magneto hydro-dynamics (MHD)
dissipative particle dynamics (DPD)
Hartmann number (Ha-value)
harmony bond coefficient or spring constant (K)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
topic_facet Savonius vertical axis wind turbine
horizontal overlap ratio
vertical overlap ratio
torque coefficient
power coefficient
Advection–diffusion
fractional derivative
concentrated source
integral transform
Burgers’ fluid
velocity field
shear stress
Laplace transform
modified Bessel function
Stehfest’s algorithm
MATHCAD
electroosmotic flow
power law fluid
nanoparticles
MHD
entropy generation
convergence analysis
residual error
autonomous underwater vehicle (AUV)
airborne-launched AUV
autonomous underwater hovering vehicle (AUH)
water entry impact force
computational fluid dynamics (CFD)
two-phase flow
Autonomous Underwater Vehicle (AUV)
Autonomous Underwater Hovering Vehicle (AUH)
hydrodynamic interaction
response amplitude operator (RAO)
wave effects
symmetric flying wing
plasma flow control
energy
stall
dimensionless frequency
particle image velocimetry
SA–NaAlg fluid
porosity
fractional model
Atangana–Baleanu derivative
large eddy simulation
subgrid scale model
diffuser
dynamic one equation model
Vreman model
separation
heat conduction
non-fourier
solution structure theorems
superposition approach
Buongiorno model
unsteady flow
nanoliquid
special third-grade liquid
non-linear thermal radiation
magneto hydro-dynamics (MHD)
dissipative particle dynamics (DPD)
Hartmann number (Ha-value)
harmony bond coefficient or spring constant (K)
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
url ONIX_20210501_9783039368921_722