Search Results - ((fluid (mechanics OR mechanical)) OR (solid (mechanics OR mechanical))).
Suggested Topics within your search.
Suggested Topics within your search.
- Mechanics, Applied 447
- Solid Mechanics 387
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1
Engineering Fluid Mechanics
Published 2018Table of Contents: “…Introduction -- Fluid statics -- Fluid Dynamics -- Head Loss of Incompressible Viscous Flow -- Pipe Network and Orifice, Nozzle Flow -- Fundamentals of Fluid Mechanics Through Porous Media -- Fluid Machinery -- Similitude and Dimensional Analysis -- CO2 Storage in Saline Aquifer With Vertical Heterogeneity.…”
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Linear and Non-linear Mechanical Behavior of Solid Materials
Published 2018Table of Contents: “…Introduction: elementary concepts -- Thermodynamics framework for modeling solid materials -- Linear elastic behavior, thermo-elasticity -- Yield elasticity criteria -- Multiaxial plasticity -- Visco-elasticity -- Viscoplasticity -- The shape memory alloys -- Behavior of magnetic shape memory alloys -- Mechanical elements of fracture and damage.…”
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3
Mathematical Modelling in Solid Mechanics
Published 2017Subjects: Full-text access
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4
Cosserat Continuum Mechanics With Applications to Granular Media /
Published 2019Table of Contents: “…Introduction -- Rigid-body mechanics and motors -- Cosserat continuum kinematics -- Cosserat continuum statics -- Cosserat continuum dynamics -- Cosserat continuum energetics -- Cosserat-elastic bodies -- Cosserat fluids -- Mechanics of discrete granular media.…”
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Advances in Mechanical Engineering Selected Contributions from the Conference "Modern Engineering: Science and Education", Saint Petersburg, Russia, June 2016 /
Published 2017Table of Contents: “…The Combined Cold Axial Rotary Forging of Thick Hollow Flanges -- Bench Tests of Vibroacoustic Effects -- Stability of Walking Algorithms -- Deleting Objects Algorithm for the Optimization of Orthogonal Packing Problems -- Computational Technique of Plotting Campbell Diagrams for Turbine Blades -- Computer Simulation of Mechanisms -- Principle of Compatibility of Heterogeneous Additives in Triboactive Metalworking Fluids for Edge Cutting of Metals -- Some Ways of Stable Counterbalancing in Respect to Moving Masses on Centrifuges -- Self-Oscillations of Machines and Mechanisms -- Analysis of Machine Tool Installation on the Base -- About the Nature Of Dissipative Processes in Cutting Treatments of Titanium vanes -- The Model of the Elastic-Plastic Deformation of a Structural Member -- Parametric Vibrations Excitation in Cyclic Mechanisms -- Theoretical and Practical Conditions of Fully-Reversible Rotation in Bennett Mechanisms -- Dislocation-phonon Mechanism and Interpolation Dependence of Fatigue-Damaged Structural Steel -- Calculation of Shells of Revolution with Arbitrary Meridian Oscillations.…”
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6
Computational Methods for Solids and Fluids Multiscale Analysis, Probability Aspects and Model Reduction /
Published 2016Table of Contents: “…. -- Heterogeneous materials models, coupled mechanics-probability problems and energetically optimal model reduction, by Rainer Niekamp et al. -- Modelling of fluid-structure interaction for internal fluid flow in cracks by using embedded strong discontinuities, by Mijo Nikolic et al. -- Reliability calculus on crack propagation problem with a Markov renewal process, by Chrysanthi Papamichail et al. -- Multi-scale simulation of Newtonian and non-Newtonian multi-phase flows, by Juan Luis Prieto -- Numerical modeling of flow-driven piezoelectricenergy harvesting devices, by Ravi Srivathsan and Andreas Zilian -- Comparison of numerical approaches to Bayesian updating, by Rosic Bojana et al. -- Two models for hydraulic cylinders in flexible multibody simulations, by Antti Ylinen et al. .…”
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7
Smoothed Particle Hydrodynamics Fundamentals and Basic Applications in Continuum Mechanics /
Published 2019Table of Contents: “…Introduction -- Physical-Mathematical Modelling -- Smoothed Particle Hydrodynamics Method -- Applications in Continuum Fluid Mechanics and Continuum Transport Phenomena.…”
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Unified Lagrangian Formulation for Fluid and Solid Mechanics, Fluid-Structure Interaction and Coupled Thermal Problems Using the PFEM
Published 2017Table of Contents: “…1 Introduction -- 1.1 Objectives -- 1.2 State of the art -- 1.2.1 Eulerian and Lagrangian approaches for free surface flow analysis -- 1.2.2 Stabilization techniques -- 1.2.3 Algorithms for FSI problems -- 1.3 Numerical model -- 1.3.1 Reasons -- 1.3.2 Essential features -- 1.3.3 Outline -- 1.4 Publications -- 2 Velocity-based formulations for compressible materials -- 2.1 Velocity formulation -- 2.1.1 From the local form to the spatial semi-discretization -- 2.1.2 Time integration -- 2.1.3 Linearization -- 2.1.4 Incremental solution scheme -- 2.2 Mixed velocity-pressure formulation -- 2.2.1 Quasi-incompressible form of the continuity equation -- 2.2.2 Solution method -- 2.3 Hypoelasticity -- 2.3.1 Velocity formulation for hypoelastic solids -- 2.3.2 Mixed Velocity-Pressure formulation for hypoelastic solids -- 2.3.3 Theory of plasticity -- 2.3.3.1 Hypoelastic-plastic materials -- 2.3.4 Validation examples -- 2.4 Summary and conclusions -- 3 Unified stabilized formulation for quasi-incompressible materials -- 3.1Stabilized FIC form of the mass balance equation -- 3.1.1 Governing equations -- 3.1.2 FIC mass balance equation in space and in time -- 3.1.3 FIC stabilized local form of the mass balance equation -- 3.1.4 Variational form -- 3.1.5 FEM discretization and matrix form -- 3.2 Solution scheme for quasi-incompressible Newtonian fluids -- 3.2.1 Governing equations -- 3.2.2 Solution scheme -- 3.3 Solution scheme for quasi-incompressible hypoelastic solids -- 3.4 Free surface flow analysis -- 3.4.1 The Partiele Finite Element Method -- 3.4.1.1 Remeshing -- 3.4.1.2 Basic steps -- 3.4.1.3 Advantages and disadvantages -- 3.4.2 Mass conservation analysis -- 3.4.2.1 Numerical examples -- 3.4.3 Analysis of the conditioning of the solution scheme -- 3.4.3.1 Drawbacks associated to the real bulk modulus -- 3.4.3.2 Optimum value for the pseudo bulk modulus -- 3.4.3.3 Numerical examples -- 3.5 Validation examples -- 3.5.1 Validation of the Unified formulation for Newtonian fluids -- 3.5.2 Validation of the Unified formulation for quasi-incompressible hypoelastic solids -- 3.6 Summary and conclusions -- 4 Unified formulation for F SI problems -- 4.1 Introduction -- 4.2 FSI algorithm -- 4.3 Coupling with the Velocity formulation for the solid -- 4.4 Coupling with the mixed Velocity-Pressure formulation for the solid -- 4.5 Numerical examples -- 4.6 Summary and conclusions -- 5 Coupled thermal-mechanical formulation -- 5.1 Introduction -- 5.2 Heat problem -- 5.2.1 FEM discretization and solution for a time step -- 5.3 Thermal coupling -- 5.3.1 Numerical examples -- 5.4 Phase change -- 5.4.1 Numerical example: melting of an ice block -- 5.5 Summary and conclusions -- 6 Industrial application: PFEM Analysis Model of NPP Severe Accident -- 6.1 Introduction -- 6.1.1 Assumptions allowed by the specification -- 6.2 Numerical method -- 6.3 Basic Model -- 6.3.1 Problem data -- 6.3.2 Preliminary study -- 6.3.3 Numerical results -- 6.4 Detailed model -- 6.4.1 Problem data -- 6.4.2 Preliminary study -- 6.4.3 Numerical results -- 6.5 Summary and conclusions -- 7 Conclusions and future lines of research -- 7.1 Contributions -- 7.2 Lines for future work.…”
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9
Applications of Fluid Dynamics Proceedings of ICAFD 2016 /
Published 2018Subjects: “…Fluid mechanics.…”
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10
Advances in Fluid-Structure Interaction Updated contributions reflecting new findings presented at the ERCOFTAC Symposium on Unsteady Separation in Fluid-Structure Interaction, 17-...
Published 2016Subjects: “…Fluid mechanics.…”
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11
Hydrostatics and Stability of Marine Vehicles Theory and Practice /
Published 2019Subjects: Full-text access
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Dynamic Stability and Bifurcation in Nonconservative Mechanics
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Introduction to Mechanical Engineering
Published 2018Table of Contents: “…Studying mechanical engineering -- Materials and manufacturing processes -- Machining and machine tools -- Tribology and surface engineering -- Solid mechanics -- Applied and computational mechanics -- Mechanical design -- Mechatronics and robotics -- Fluid mechanics and heat transfer -- Renewable energies -- Biomechanics -- Nanoengineering and nanomechanics.…”
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14
Modern Mathematics and Mechanics Fundamentals, Problems and Challenges /
Published 2019Table of Contents: “…From the content: Part I Differential Geometry -- Three-dimensional Manifolds of Constant Energy and Invariants of Integrable Hamiltonian Systems -- Convergence Almost Everywhere of Orthorecursive Expansions in Systems of Translates and Dilates -- Topological entropy on non compact sets -- Global Attractors of Multi-valued Impulsive Dynamical Systems: Existence, Invariance and Robustness -- Part II Solid Mechanics -- Procedure of the Galerkin Representation in Transversely Isotropic Elasticity -- Multicomponent Shallow Water System and Two-dimensional ShockWaves -- Asymptotic Behavior of State Functions for Budyko Model with Nonlinear Principal Part on Manifold without Boundary -- Modification Hydrodynamic and Acoustic Fields Generated by a Cavity with Fluid Suction -- Numerical Modeling the Wing Aerodynamics at Angle-of-attack at Low Reynolds Numbers -- Part III Dynamics of Differential and Difference Equations and Applications.…”
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Basic Naval Architecture Ship Stability /
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The Role of Mechanics in the Study of Lipid Bilayers
Published 2018Table of Contents: “…Mechanics and Physics of Lipid Bilayers -- The Role of Mechanics in the Study of Lipid Bilayers: Elasticity and Hereditariness -- Lipid Membranes: From Self-Assembly to Elasticity -- The Geometry of Fluid Membranes: Variational Principles, Symmetries and Conservation Laws -- On the Computational Modeling of Lipid Bilayers Using Thin-Shell Theory -- Onsager's Variational Principle in Soft Matter: Introduction and Application to the Dynamics of Adsorption of Proteins onto Fluid Membranes.…”
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Challenges in Mechanics of Time Dependent Materials, Volume 2 Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics /
Published 2018Table of Contents: “…Material Creep Behavior with Prediction of Tertiary Creep Failure by a Spherical Micro-Indentation Method -- Chap9. Mechanical and Biodegradable Behavior of AZ31 Magnesium Alloy Immersed in Simulated Body Fluid -- Chap10. …”
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