Edité par Kluwer Academic Publishers, 1987
ISBN 10 : 9024735645 ISBN 13 : 9789024735648
Langue: anglais
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Ajouter au panierTaschenbuch. Etat : Neu. Druck auf Anfrage Neuware - Printed after ordering - Numerical methods and related computer based algorithms form the logical solution for. many complex problems encountered in science and engineering. Although numerical techniques are now well established, they have continued to expand and diversify, particularly in the fields of engineering analysis and design. Various engineering departments in the University College of Swansea, in particular, Civil, Chemical, Electrical and Computer Science, have groups working in these areas. It is from this mutual interest that the NUMETA conference series was conceived with the main objective of providing a link between engineers developing new numerical techniques and those applying them in practice. Encouraged by the success of NUMETA '85, the second conference, NUMETA '87, was held at Swansea, 6-10 July 1987. Over two hundred and twenty abstracts were submitted for consideration together with a number of invited papers from experts in the field of numerical methods. The final selection of contributed and invited papers were of a high quality and have culminated in the two volumes which form these proceedings. This volume contains papers on the themes of 'Numerical Techniques for Engineering Analysis and Design' and 'Developments in Engineering Software'. Many new developments on a wide variety of topics have been reported and these proceedings contain a wealth of information and references which we believe will be of great interest to theoreticians and practising engineers alike.
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Vendeur : liu xing, Nanjing, JS, Chine
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Ajouter au panierpaperback. Etat : New. Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date: October 2012 Pages: 212 Language: Chinese in Publisher: Publishing House of Electronics Industry Practice and Theory of the COMSOL Multiphysics engineering simulation: multi-physics numerical analysis techniques introduce numerical simulation techniques. and numerical simulation techniques with engineering science combined to solve practical engineering problems. The practice and theory of the COMSOL Multiphysics engineering simulation: multi-physics numerical analysis techniques proceed from the basic knowledge of mathematical equations. introduced a variety of the classic mathematical equations as well as the application. and then introduce the most widely used vector finite element method. Next combination of specific engineering problems from a single physical field simulation. the strong coupling of multi-physics field weak coupling simulation and multi-physics simulation three aspects of how abstract boils down to a reasonable mathematical model to explain the practical problems. Readers to can the system geography Qing Engineering Physics simulation ideas. understanding and habits of Engineering Physics Simulation way of thinking is the combination of physical theory and engineering practice to look at the problem. This book is designed for the majority of engineers. in layman's language to explain the finite element method and engineering problems multiphysics simulation technology. The book involves all aspects of practical engineering problems. including acoustics. structural mechanics. fluid mechanics. heat transfer. quality of migration. the calculation of electromagnetic field. chemical reaction engineering analysis. is a true multi-physics numerical simulation introductory guide book. The authors hope that through this book. allowing readers to understand the true meaning of the numerical simulation technology. and how these theoretical knowledge should be combined with the actual Contents: Chapter 1 Mathematical Equations brief 1.1 mathematical equation 1.1.1 What is the basic form of 1.1.2 course of development of the mathematical equation 1.1.3 1.1.4 Basic concepts 1.1.5 classic 1.1.5.1 Wave Equation 1.1.5.2 heat conduction partial differential equations 1.2.2 1.2.1 initial conditions equation 1.1.5.3 Laplace equation and the Poisson equation 1.2 boundary conditions boundary conditions 1.2.3 definite conditions 1.3 common algorithms 1.3.1 finite difference method 1.3.2 Finite Element 1.3 .3 finite volume method 1.4 COMSOLMultiphysics solving PDE1.4.1 coefficient partial differential equations 1.4.2 Generalized Partial Differential Equations 1.4.3 Weak Solutions of Partial Differential Equations 1.5 Summary 1.6 Exercises Chapter 2 Preliminary finite difference method for Finite Element 2.1 2.2 2.3 one-dimensional finite element weak form of the differential equations 2.4 two-dimensional finite element 2.5 two-dimensional finite element instance 2.5.1 Description 2.5.2 divided 2.5.3 grid finite element solution of 2.6 unit type 2.6.1 one-dimensional 2.6.2 2D triangular element basis functions 2.6.3 two-dimensional quadrilateral element basis functions of the finite element basis functions Chapter 3 single physical field simulation 3.1 heat transfer phenomena: heat conduction 3.1.1 heat conduction equation 3.1.2 Thermal conduction boundary conditions 3.1.3 hot the weak form of the delivery problems 3.1.4 COMSOLMultiphysics example 3.2 heat transfer phenomena: the weak form of the convective heat convection equation changes 3.2.1 3.2.2 boundary conditions 3.2.3 the 3.2.4 COMSOLMultiphysics example 3.3 heat transfer phenomena: heat radiation 3.3. Example 3.4 1 COMSOLMultiphysics. application instance: Friction Stir welding 3.5 Summary 3.6 Exercises Chapter 4 weakly coupled multi-physics problems 4.1 What is convection-diffusion problems in the physical field weakly coupled multi-physics probl.