Fluid And Solid Mechanics For Beginners


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Fluid and Solid Mechanics for Beginners


Fluid and Solid Mechanics for Beginners

Author: Pasquale De Marco

language: en

Publisher: Pasquale De Marco

Release Date: 2025-03-09


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This book provides a comprehensive introduction to continuum mechanics for beginners. It covers the basic concepts of continuum mechanics, as well as the fundamental principles of fluid mechanics and solid mechanics. The book is written in a clear and concise style, with numerous examples and exercises to help readers understand the material. Continuum mechanics is a branch of physics that deals with the mechanical behavior of materials. It is used to study the behavior of fluids, solids, and gases under various conditions. This book provides a solid foundation for students who wish to pursue a career in engineering, science, or medicine. The book begins with an introduction to the basic concepts of continuum mechanics, including the concepts of stress, strain, and deformation. It then goes on to cover the fundamental principles of fluid mechanics, including the conservation of mass, momentum, and energy. The book also covers the basic principles of solid mechanics, including the laws of elasticity and plasticity. This book is an essential resource for anyone who wants to learn more about continuum mechanics. It is written in a clear and concise style, and it provides a comprehensive overview of the subject. The book is also well-organized, with each chapter building on the previous ones. The book is also up-to-date, covering the latest developments in continuum mechanics. Whether you are a student, engineer, or scientist, this book will provide you with a solid foundation in continuum mechanics. With its clear and concise explanations, numerous examples, and exercises, this book will help you understand the mechanical behavior of materials and solve a wide variety of problems. This book is also an excellent resource for anyone who wants to learn more about the latest developments in continuum mechanics. The book covers a wide range of topics, from the basic concepts of continuum mechanics to the latest advances in fluid mechanics and solid mechanics. The book is also well-referenced, with a list of references at the end of each chapter. If you like this book, write a review!

Basic Control Volume Finite Element Methods for Fluids and Solids


Basic Control Volume Finite Element Methods for Fluids and Solids

Author: Vaughan R. Voller

language: en

Publisher: World Scientific

Release Date: 2009


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The Control Volume Finite Element Method (CVFEM) is a hybrid numerical methods, combining the physics intuition of Control Volume Methods with the geometric flexibility of Finite Element Methods. The concept of this monograph is to introduce a common framework for the CVFEM solution so that it can be applied to both fluid flow and solid mechanics problems. To emphasize the essential ingredients, discussion focuses on the application to problems in two-dimensional domains which are discretized with linear-triangular meshes. This allows for a straightforward provision of the key information required to fully construct working CVFEM solutions of basic fluid flow and solid mechanics problems.

Unified Lagrangian Formulation for Fluid and Solid Mechanics, Fluid-Structure Interaction and Coupled Thermal Problems Using the PFEM


Unified Lagrangian Formulation for Fluid and Solid Mechanics, Fluid-Structure Interaction and Coupled Thermal Problems Using the PFEM

Author: Alessandro Franci

language: en

Publisher: Springer

Release Date: 2016-10-04


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This book treats the derivation and implementation of a unified particle finite element formulation for the solution of fluid and solid mechanics, Fluid-Structure Interaction (FSI) and coupled thermal problems. FSI problems are involved in many engineering branches, from aeronautics to civil and biomedical engineering. The numerical method proposed in this book has been designed to deal with a large part of these. In particular, it is capable of simulating accurately free-surface fluids interacting with structures that may undergo large displacements, suffer from thermo-plastic deformations and even melt. The method accuracy has been successfully verified in several numerical examples. The thesis also contains the application of the proposed numerical strategy for the simulation of a real industrial problem. This thesis, defended at the Universitat Politecnica de Catalunya in 2015, was selected (ex aequo) as the best PhD thesis in numerical methods in Spain for the year 2015 by the Spanish Society of Numerical Methods in Engineering (SEMNI).