Computational Fluid Structure Interaction for Nuclear Reactor Applications

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  • Publisher : Woodhead Publishing
  • Release : 15 June 2022
  • ISBN : 0128228091
  • Page : 300 pages
  • Rating : 4.5/5 from 103 voters

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Computational Fluid-Structure Interaction for Nuclear Reactor Applications presents the latest knowledge on the use of Computational Fluid Dynamics (CFD) and Computational Structural Dynamic (CSM) tools to solve Fluid-Structure Interaction (FSI) problems in a nuclear setting. Editor Dr Afaque Shams and his team of expert contributors from around the globe provide a detailed background on the topic as well as a comprehensive picture of recent developments of computational FSI in a variety of nuclear reactors. Mechanical damages which threaten the integrity and safety of nuclear plants need to be mitigated at the design stage, and this book provides a clear understanding of FSI issues such as vibration, noise, wear and fatigue which will work to reduce accident vulnerabilities in the long run. Numerical algorithms, modelling and applications, validation and verification approaches are included to equip nuclear professionals, plant designers and analysists, and researchers with a solid understanding of the state-of-the-art approaches for FSI and its advanced applications and modern approaches. Includes numerical methods, modelling, validation and verification of all approaches presented Provides best practice guidelines to perform FSI simulations for various nuclear reactor applications Reviews the present status of tools to perform FSI computations and provides future perspectives for further research opportunities

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Computational Fluid-Structure Interaction for Nuclear Reactor Applications

Computational Fluid-Structure Interaction for Nuclear Reactor Applications
  • Author : Afaque Shams
  • Publisher : Woodhead Publishing
  • Release Date : 2022-06-15
  • ISBN : 0128228091
GET THIS BOOKComputational Fluid-Structure Interaction for Nuclear Reactor Applications

Computational Fluid-Structure Interaction for Nuclear Reactor Applications presents the latest knowledge on the use of Computational Fluid Dynamics (CFD) and Computational Structural Dynamic (CSM) tools to solve Fluid-Structure Interaction (FSI) problems in a nuclear setting. Editor Dr Afaque Shams and his team of expert contributors from around the globe provide a detailed background on the topic as well as a comprehensive picture of recent developments of computational FSI in a variety of nuclear reactors. Mechanical damages which threaten the integrity

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment
  • Author : Jyeshtharaj Joshi,Arun K Nayak
  • Publisher : Woodhead Publishing
  • Release Date : 2019-06-15
  • ISBN : 9780081023372
GET THIS BOOKAdvances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies. It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications for Sodium and Molten Salt Reactor Designs. Editors Joshi and Nayak have an invaluable wealth of experience that enables them to comment on the development of CFD models, the technologies currently in

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment
  • Author : Jyeshtharaj Joshi,Arun K. Nayak
  • Publisher : Woodhead Publishing
  • Release Date : 2019-06-09
  • ISBN : 9780081023389
GET THIS BOOKAdvances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies. It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications for Sodium and Molten Salt Reactor Designs. Editors Joshi and Nayak have an invaluable wealth of experience that enables them to comment on the development of CFD models, the technologies currently in

Fluid-Structure Interaction

Fluid-Structure Interaction
  • Author : Jean-François Sigrist
  • Publisher : John Wiley & Sons
  • Release Date : 2015-10-12
  • ISBN : 9781119952275
GET THIS BOOKFluid-Structure Interaction

Fluid-Structure Interaction: An Introduction to Finite Element Coupling fulfils the need for an introductive approach to the general concepts of Finite and Boundary Element Methods for FSI, from the mathematical formulation to the physical interpretation of numerical simulations. Based on the author’s experience in developing numerical codes for industrial applications in shipbuilding and in teaching FSI to both practicing engineers and within academia, it provides a comprehensive and self–contained guide that is geared toward both students and practitioners

Computational Overview of Fluid Structure Interaction

Computational Overview of Fluid Structure Interaction
  • Author : Khaled Ghaedi,Ahmed Alhusseny,Adel Nasser,Nabeel Al-Zurfi
  • Publisher : BoD – Books on Demand
  • Release Date : 2021-07-28
  • ISBN : 9781839691751
GET THIS BOOKComputational Overview of Fluid Structure Interaction

Fluid-Structure Interaction (FSI), also known as engineering fluid mechanics, deals with mutual interaction between fluid and structural components. Fluid flow depending on the structural shape, motion, surface, and structural roughness, acts as mechanical forces on the structure. FSI can be seen everywhere in medicine, engineering, aerospace, the sciences, and even our daily life. This book provides the basic concept of fluid flow behavior in interaction with structures, which is crucial for almost all engineering disciplines. Along with the fundamental principles,

Advances and Trends in Structures and Dynamics

Advances and Trends in Structures and Dynamics
  • Author : Ahmed K. Noor,Robert J. Hayduk
  • Publisher : Elsevier
  • Release Date : 2013-10-22
  • ISBN : 9781483150062
GET THIS BOOKAdvances and Trends in Structures and Dynamics

Advances and Trends in Structures and Dynamics contains papers presented at the symposium on Advances and Trends in Structures and Dynamics held in Washington, D.C., on October 22-25, 1984. Separating 67 papers of the symposium as chapters, this book documents some of the major advances in the structures and dynamics discipline. The chapters are further organized into 13 parts. The first three parts explore the trends and advances in engineering software and hardware; numerical analysis and parallel algorithms; and finite element technology.

Modelling of Mechanical Systems: Fluid-Structure Interaction

Modelling of Mechanical Systems: Fluid-Structure Interaction
  • Author : Francois Axisa,Jose Antunes
  • Publisher : Elsevier
  • Release Date : 2006-12-07
  • ISBN : 008047540X
GET THIS BOOKModelling of Mechanical Systems: Fluid-Structure Interaction

Written by an eminent authority in the field, Modelling of Mechanical Systems: Fluid-Structure Interaction is the third in a series of four self-contained volumes suitable for practitioners, academics and students alike in engineering, physical sciences and applied mechanics. The series skilfully weaves a theoretical and pragmatic approach to modelling mechanical systems and to analysing the responses of these systems. The study of fluid-structure interactions in this third volume covers the coupled dynamics of solids and fluids, restricted to the case

Fluid-Solid Interaction Dynamics

Fluid-Solid Interaction Dynamics
  • Author : Jing Tang Xing
  • Publisher : Academic Press
  • Release Date : 2019-08-30
  • ISBN : 9780128193532
GET THIS BOOKFluid-Solid Interaction Dynamics

Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods and Applications gives a comprehensive accounting of fluid-solid interaction dynamics, including theory, numerical methods and their solutions for various FSI problems in engineering. The title provides the fundamental theories, methodologies and results developed in the application of FSI dynamics. Four numerical approaches that can be used with almost all integrated FSI systems in engineering are presented. Methods are linked with examples to illustrate results. In addition, numerical results are compared with available

Nuclear Safety

Nuclear Safety
  • Author : Anonim
  • Publisher : Unknown
  • Release Date : 1995-07
  • ISBN : UFL:31262084942712
GET THIS BOOKNuclear Safety

Computational Wind Engineering 1

Computational Wind Engineering 1
  • Author : S. Murakami
  • Publisher : Elsevier
  • Release Date : 2014-06-28
  • ISBN : 9780444598615
GET THIS BOOKComputational Wind Engineering 1

The aim of this volume is to explore the challenges posed by the rapid development of Computational Fluid Dynamics (CFD) within the field of engineering. CFD is already essential to research concerned with fluid flow in civil engineering, and its further potential for application in wind engineering is highly promising. State-of-the-art papers from all over the world are contained here, illuminating the present parameters of the field, as well as suggesting fruitful areas for further research. Eleven papers have been

Wind Effects on Structures

Wind Effects on Structures
  • Author : Emil Simiu,DongHun Yeo
  • Publisher : John Wiley & Sons
  • Release Date : 2019-01-10
  • ISBN : 9781119375906
GET THIS BOOKWind Effects on Structures

Provides structural engineers with the knowledge and practical tools needed to perform structural designs for wind that incorporate major technological, conceptual, analytical and computational advances achieved in the last two decades. With clear explanations and documentation of the concepts, methods, algorithms, and software available for accounting for wind loads in structural design, it also describes the wind engineer's contributions in sufficient detail that they can be effectively scrutinized by the structural engineer in charge of the design. Wind Effects on

Energy Research Abstracts

Energy Research Abstracts
  • Author : Anonim
  • Publisher : Unknown
  • Release Date : 1993
  • ISBN : MSU:31293011519018
GET THIS BOOKEnergy Research Abstracts

Applied Mechanics Reviews

Applied Mechanics Reviews
  • Author : Anonim
  • Publisher : Unknown
  • Release Date : 1981
  • ISBN : OSU:32435026160986
GET THIS BOOKApplied Mechanics Reviews

Computational Mechanics ’88

Computational Mechanics ’88
  • Author : S.N. Atluri,G. Yagawa
  • Publisher : Springer Science & Business Media
  • Release Date : 2013-11-11
  • ISBN : 9783642613814
GET THIS BOOKComputational Mechanics ’88

The aim of this Conference was to become a forum for discussion of both academic and industrial research in those areas of computational engineering science and mechanics which involve and enrich the rational application of computers, numerical methods, and mechanics, in modern technology. The papers presented at this Conference cover the following topics: Solid and Structural Mechanics, Constitutive Modelling, Inelastic and Finite Deformation Response, Transient Analysis, Structural Control and Optimization, Fracture Mechanics and Structural Integrity, Computational Fluid Dynamics, Compressible and

Fluid-Structure Interaction Modeling of High-Aspect Ratio Nuclear Fuel Plates Using COMSOL.

Fluid-Structure Interaction Modeling of High-Aspect Ratio Nuclear Fuel Plates Using COMSOL.
  • Author : Anonim
  • Publisher : Unknown
  • Release Date : 2013
  • ISBN : OCLC:1066000805
GET THIS BOOKFluid-Structure Interaction Modeling of High-Aspect Ratio Nuclear Fuel Plates Using COMSOL.

The High Flux Isotope Reactor at the Oak Ridge National Lab is in the research stage of converting its fuel from high-enriched uranium to low-enriched uranium. Due to different physical properties of the new fuel and changes to the internal fuel plate design, the current safety basis must be re-evaluated through rigorous computational analyses. One of the areas being explored is the fluid-structure interaction phenomenon due to the interaction of thin fuel plates (50 mils thickness) and the cooling fluid (water).