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New Advances in Fluid Structure Interaction



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Autore: Chen Wenli Visualizza persona
Titolo: New Advances in Fluid Structure Interaction Visualizza cluster
Pubblicazione: Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica: 1 electronic resource (308 p.)
Soggetto topico: Technology: general issues
History of engineering & technology
Soggetto non controllato: aerodynamic forces
pressure distribution
turbulence intensity
twin-box girder
trailing-edge reattachment
trailing edge
trailing-edge-changeable streamlined section mode
limit cycle flutter
hard flutter
flutter stability
wind engineering
wind tunnel test
wind-train-bridge system
flow visualization
flapping fringe
CFD simulation
vortex attenuation
aerodynamics enhancement
unsteady aerodynamic force
single box girder
Strouhal number
linear stability analysis
high-speed train
enclosed housing for sound emission alleviation
pressure wave
unsteady aerodynamic pressure
load patterns
wake control
drag reduction
MSBC
square cylinder
numerical simulation
wind characteristics
wind tunnel testing
complex terrain
model truncation
transition section
deep learning
prediction
aerostatic performance
shape
convolutional neural networks
long-span bridge
buffeting response
sectional model
aerodynamic admittance
integrated transfer function
flow control
traveling wave wall
circular cylinder
CFD
wind turbines
aerodynamic characteristics
vortex shedding
time domain method
frequency domain method
background and resonance coupled components
wind induced dynamic responses
equivalent static wind load
aerodynamic shape optimization
surrogate model
wind energy harvester
galloping
passive jet control
tower wake characteristics
cobra probe
Persona (resp. second.): YangZifeng
HuGang
JingHaiquan
WangJunlei
ChenWenli
Sommario/riassunto: Fluid–structure interactions (FSIs) play a crucial role in the design, construction, service and maintenance of many engineering applications, e.g., aircraft, towers, pipes, offshore platforms and long-span bridges. The old Tacoma Narrows Bridge (1940) is probably one of the most infamous examples of serious accidents due to the action of FSIs. Aircraft wings and wind-turbine blades can be broken because of FSI-induced oscillations. To alleviate or eliminate these unfavorable effects, FSIs must be dealt with in ocean, coastal, offshore and marine engineering to design safe and sustainable engineering structures. In addition, the wind effects on plants and the resultant wind-induced motions are examples of FSIs in nature. To meet the objectives of progress and innovation in FSIs in various scenarios of engineering applications and control schemes, this book includes 15 research studies and collects the most recent and cutting-edge developments on these relevant issues. The topics cover different areas associated with FSIs, including wind loads, flow control, energy harvesting, buffeting and flutter, complex flow characteristics, train–bridge interactions and the application of neural networks in related fields. In summary, these complementary contributions in this publication provide a volume of recent knowledge in the growing field of FSIs.
Titolo autorizzato: New Advances in Fluid Structure Interaction  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910585936603321
Lo trovi qui: Univ. Federico II
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