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This book (Vol. II) presents select proceedings of the first Online
International Conference on Recent Advances in Computational and
Experimental Mechanics (ICRACEM 2020) and focuses on theoretical,
computational and experimental aspects of solid and fluid
mechanics. Various topics covered are computational modelling of
extreme events; mechanical modelling of robots; mechanics and
design of cellular materials; mechanics of soft materials;
mechanics of thin-film and multi-layer structures; meshfree and
particle based formulations in continuum mechanics; multi-scale
computations in solid mechanics, and materials; multiscale
mechanics of brittle and ductile materials; topology and shape
optimization techniques; acoustics including aero-acoustics and
wave propagation; aerodynamics; dynamics and control in micro/nano
engineering; dynamic instability and buckling; flow-induced noise
and vibration; inverse problems in mechanics and system
identification; measurement and analysis techniques in nonlinear
dynamic systems; multibody dynamical systems and applications;
nonlinear dynamics and control; stochastic mechanics; structural
dynamics and earthquake engineering; structural health monitoring
and damage assessment; turbomachinery noise; vibrations of
continuous systems, characterization of advanced materials; damage
identification and non-destructive evaluation; experimental fire
mechanics and damage; experimental fluid mechanics; experimental
solid mechanics; measurement in extreme environments; modal testing
and dynamics; experimental hydraulics; mechanism of scour under
steady and unsteady flows; vibration measurement and control;
bio-inspired materials; constitutive modelling of materials;
fracture mechanics; mechanics of adhesion, tribology and wear;
mechanics of composite materials; mechanics of multifunctional
materials; multiscale modelling of materials; phase transformations
in materials; plasticity and creep in materials; fluid mechanics,
computational fluid dynamics; fluid-structure interaction; free
surface, moving boundary and pipe flow; hydrodynamics; multiphase
flows; propulsion; internal flow physics; turbulence modelling;
wave mechanics; flow through porous media; shock-boundary layer
interactions; sediment transport; wave-structure interaction;
reduced-order models; turbo-machinery; experimental hydraulics;
mechanism of scour under steady and unsteady flows; applications of
machine learning and artificial intelligence in mechanics;
transport phenomena and soft computing tools in fluid mechanics.
The contents of these two volumes (Volumes I and II) discusses
various attributes of modern-age mechanics in various disciplines,
such as aerospace, civil, mechanical, ocean engineering and naval
architecture. The book will be a valuable reference for beginners,
researchers, and professionals interested in solid and fluid
mechanics and allied fields.
This book (Vol. - I) presents select proceedings of the first
Online International Conference on Recent Advances in Computational
and Experimental Mechanics (ICRACEM 2020) and focuses on
theoretical, computational and experimental aspects of solid and
fluid mechanics. Various topics covered are computational modelling
of extreme events; mechanical modelling of robots; mechanics and
design of cellular materials; mechanics of soft materials;
mechanics of thin-film and multi-layer structures; meshfree and
particle based formulations in continuum mechanics; multi-scale
computations in solid mechanics, and materials; multiscale
mechanics of brittle and ductile materials; topology and shape
optimization techniques; acoustics including aero-acoustics and
wave propagation; aerodynamics; dynamics and control in micro/nano
engineering; dynamic instability and buckling; flow-induced noise
and vibration; inverse problems in mechanics and system
identification; measurement and analysis techniques in nonlinear
dynamic systems; multibody dynamical systems and applications;
nonlinear dynamics and control; stochastic mechanics; structural
dynamics and earthquake engineering; structural health monitoring
and damage assessment; turbomachinery noise; vibrations of
continuous systems, characterization of advanced materials; damage
identification and non-destructive evaluation; experimental fire
mechanics and damage; experimental fluid mechanics; experimental
solid mechanics; measurement in extreme environments; modal testing
and dynamics; experimental hydraulics; mechanism of scour under
steady and unsteady flows; vibration measurement and control;
bio-inspired materials; constitutive modelling of materials;
fracture mechanics; mechanics of adhesion, tribology and wear;
mechanics of composite materials; mechanics of multifunctional
materials; multiscale modelling of materials; phase transformations
in materials; plasticity and creep in materials; fluid mechanics,
computational fluid dynamics; fluid-structure interaction; free
surface, moving boundary and pipe flow; hydrodynamics; multiphase
flows; propulsion; internal flow physics; turbulence modelling;
wave mechanics; flow through porous media; shock-boundary layer
interactions; sediment transport; wave-structure interaction;
reduced-order models; turbo-machinery; experimental hydraulics;
mechanism of scour under steady and unsteady flows; applications of
machine learning and artificial intelligence in mechanics;
transport phenomena and soft computing tools in fluid mechanics.
The contents of these two volumes (Volumes I and II) discusses
various attributes of modern-age mechanics in various disciplines,
such as aerospace, civil, mechanical, ocean engineering and naval
architecture. The book will be a valuable reference for beginners,
researchers, and professionals interested in solid and fluid
mechanics and allied fields.
This book (Vol. - I) presents select proceedings of the first
Online International Conference on Recent Advances in Computational
and Experimental Mechanics (ICRACEM 2020) and focuses on
theoretical, computational and experimental aspects of solid and
fluid mechanics. Various topics covered are computational modelling
of extreme events; mechanical modelling of robots; mechanics and
design of cellular materials; mechanics of soft materials;
mechanics of thin-film and multi-layer structures; meshfree and
particle based formulations in continuum mechanics; multi-scale
computations in solid mechanics, and materials; multiscale
mechanics of brittle and ductile materials; topology and shape
optimization techniques; acoustics including aero-acoustics and
wave propagation; aerodynamics; dynamics and control in micro/nano
engineering; dynamic instability and buckling; flow-induced noise
and vibration; inverse problems in mechanics and system
identification; measurement and analysis techniques in nonlinear
dynamic systems; multibody dynamical systems and applications;
nonlinear dynamics and control; stochastic mechanics; structural
dynamics and earthquake engineering; structural health monitoring
and damage assessment; turbomachinery noise; vibrations of
continuous systems, characterization of advanced materials; damage
identification and non-destructive evaluation; experimental fire
mechanics and damage; experimental fluid mechanics; experimental
solid mechanics; measurement in extreme environments; modal testing
and dynamics; experimental hydraulics; mechanism of scour under
steady and unsteady flows; vibration measurement and control;
bio-inspired materials; constitutive modelling of materials;
fracture mechanics; mechanics of adhesion, tribology and wear;
mechanics of composite materials; mechanics of multifunctional
materials; multiscale modelling of materials; phase transformations
in materials; plasticity and creep in materials; fluid mechanics,
computational fluid dynamics; fluid-structure interaction; free
surface, moving boundary and pipe flow; hydrodynamics; multiphase
flows; propulsion; internal flow physics; turbulence modelling;
wave mechanics; flow through porous media; shock-boundary layer
interactions; sediment transport; wave-structure interaction;
reduced-order models; turbo-machinery; experimental hydraulics;
mechanism of scour under steady and unsteady flows; applications of
machine learning and artificial intelligence in mechanics;
transport phenomena and soft computing tools in fluid mechanics.
The contents of these two volumes (Volumes I and II) discusses
various attributes of modern-age mechanics in various disciplines,
such as aerospace, civil, mechanical, ocean engineering and naval
architecture. The book will be a valuable reference for beginners,
researchers, and professionals interested in solid and fluid
mechanics and allied fields.
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