Smoothed Particle Hydrodynamics

Smoothed Particle Hydrodynamics
Title Smoothed Particle Hydrodynamics PDF eBook
Author Gui-Rong Liu
Publisher World Scientific
Pages 476
Release 2003
Genre Science
ISBN 9789812564405

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This is the first-ever book on smoothed particle hydrodynamics (SPH)and its variations, covering the theoretical background, numericaltechniques, code implementation issues, and many novel and interestingapplications.

Meshfree Particle Methods

Meshfree Particle Methods
Title Meshfree Particle Methods PDF eBook
Author Shaofan Li
Publisher Springer Science & Business Media
Pages 509
Release 2007-03-07
Genre Mathematics
ISBN 3540222561

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Meshfree Particle Methods is a comprehensive and systematic exposition of particle methods, meshfree Galerkin and partitition of unity methods, molecular dynamics methods, and multiscale methods. Most theories, computational formulations, and simulation results presented are recent developments in meshfree methods. They were either just published recently or even have not been published yet, many of them resulting from the authors ́ own research. The presentation of the technical content is heuristic and explanatory with a balance between mathematical rigor and engineering practice. It can be used as a graduate textbook or a comprehensive source for researchers, providing the state of the art on Meshfree Particle Methods.

Predictive Modeling of Dynamic Processes

Predictive Modeling of Dynamic Processes
Title Predictive Modeling of Dynamic Processes PDF eBook
Author Stefan Hiermaier
Publisher Springer Science & Business Media
Pages 463
Release 2009-07-09
Genre Science
ISBN 1441907270

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Predictive Modeling of Dynamic Processes provides an overview of hydrocode technology, applicable to a variety of industries and areas of engineering design. Covering automotive crash, blast impact, and hypervelocity impact phenomena, this volume offers readers an in-depth explanation of the fundamental code components. Chapters include informative introductions to each topic, and explain the specific requirements pertaining to each predictive hydrocode. Successfully blending crash simulation, hydrocode technology and impact engineering, this volume fills a gap in the current competing literature available.

Particle Methods for Multi-Scale and Multi-physics

Particle Methods for Multi-Scale and Multi-physics
Title Particle Methods for Multi-Scale and Multi-physics PDF eBook
Author Moubin E. T. Al LIU
Publisher World Scientific
Pages 400
Release 2015-12-28
Genre Science
ISBN 9814571709

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Multi-scale and multi-physics modeling is useful and important for all areas in engineering and sciences. Particle Methods for Multi-Scale and Multi-Physics systematically addresses some major particle methods for modeling multi-scale and multi-physical problems in engineering and sciences. It contains different particle methods from atomistic scales to continuum scales, with emphasis on molecular dynamics (MD), dissipative particle dynamics (DPD) and smoothed particle hydrodynamics (SPH). This book covers the theoretical background, numerical techniques and many interesting applications of the particle methods discussed in this text, especially in: micro-fluidics and bio-fluidics (e.g., micro drop dynamics, movement and suspension of macro-molecules, cell deformation and migration); environmental and geophysical flows (e.g., saturated and unsaturated flows in porous media and fractures); and free surface flows with possible interacting solid objects (e.g., wave impact, liquid sloshing, water entry and exit, oil spill and boom movement). The presented methodologies, techniques and example applications will benefit students, researchers and professionals in computational engineering and sciences --

Fluid Mechanics and the SPH Method

Fluid Mechanics and the SPH Method
Title Fluid Mechanics and the SPH Method PDF eBook
Author Damien Violeau
Publisher Oxford University Press
Pages 611
Release 2012-05-03
Genre Science
ISBN 0199655529

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This book presents the SPH method for fluid modelling from a theoretical and applied viewpoint. It explains the foundations of the method, from physical principles, and will help researchers, students, and engineers to understand how the method should be used and why it works well.

Smoothed Particle Hydrodynamics

Smoothed Particle Hydrodynamics
Title Smoothed Particle Hydrodynamics PDF eBook
Author Carlos Alberto Dutra Fraga Filho
Publisher Springer
Pages 167
Release 2018-11-30
Genre Science
ISBN 3030007731

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This book is based on results obtained over a decade of study and research. It questions the use of dynamic molecular models in the continuum scale providing alternative solutions to open problems in the literature. It provides a physical-mathematical understanding of the differential equations that govern fluid flow and energy transport, serving as a reference to the application of Smoothed Particle Hydrodynamics in continuum fluid mechanics and transport phenomena. The physical-mathematical modelling of the problems in the continuum scale and the employment of the SPH method for solving the equations are presented. Examples of applications in continuum fluid mechanics with numerical results and discussions are also provided. This literature defends the concepts of continuum mechanics and the application of boundary treatment techniques that do not violate the laws of physics.

An Introduction to Meshfree Methods and Their Programming

An Introduction to Meshfree Methods and Their Programming
Title An Introduction to Meshfree Methods and Their Programming PDF eBook
Author G.R. Liu
Publisher Springer Science & Business Media
Pages 497
Release 2005-12-05
Genre Technology & Engineering
ISBN 1402034687

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The finite difference method (FDM) hasbeen used tosolve differential equation systems for centuries. The FDM works well for problems of simple geometry and was widely used before the invention of the much more efficient, robust finite element method (FEM). FEM is now widely used in handling problems with complex geometry. Currently, we are using and developing even more powerful numerical techniques aiming to obtain more accurate approximate solutions in a more convenient manner for even more complex systems. The meshfree or meshless method is one such phenomenal development in the past decade, and is the subject of this book. There are many MFree methods proposed so far for different applications. Currently, three monographs on MFree methods have been published. Mesh Free Methods, Moving Beyond the Finite Element Method d by GR Liu (2002) provides a systematic discussion on basic theories, fundamentals for MFree methods, especially on MFree weak-form methods. It provides a comprehensive record of well-known MFree methods and the wide coverage of applications of MFree methods to problems of solids mechanics (solids, beams, plates, shells, etc.) as well as fluid mechanics. The Meshless Local Petrov-Galerkin (MLPG) Method d by Atluri and Shen (2002) provides detailed discussions of the meshfree local Petrov-Galerkin (MLPG) method and itsvariations. Formulations and applications of MLPG are well addressed in their book.