Numerical models for differential problems
Language: English Series: MS&A / edited by T. Hou; v.16Publication details: Springer 2018 SwitzerlandEdition: 3rd edISBN:- 9783319493152
- 518.64 Q28n3
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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PK Kelkar Library, IIT Kanpur | General Stacks | 518.64 Q28n3 (Browse shelf(Opens below)) | Available | A183893 |
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518.64 M846N2 Numerical solution of partial differential equations | 518.64 M846n2 cop.2 Numerical solution of partial differential equations | 518.64 Q28n Numerical models for differential problems | 518.64 Q28n3 Numerical models for differential problems | 518.64 R526d Discontinuous Galerkin methods for solving elliptic and parabolic equations | 518.64 SA14S SHOCK WAVES AND EXPLOSIONS | 518.64 SO44P PARTIAL DIFFERENTIAL EQUATIONS AND THE FINITE ELEMENT METHOD |
In this text, we introduce the basic concepts for the numerical modeling of partial differential equations. We consider the classical elliptic, parabolic and hyperbolic linear equations, but also the diffusion, transport, and Navier-Stokes equations, as well as equations representing conservation laws, saddle-point problems and optimal control problems. Furthermore, we provide numerous physical examples which underline such equations. We then analyze numerical solution methods based on finite elements, finite differences, finite volumes, spectral methods and domain decomposition methods, and reduced basis methods. In particular, we discuss the algorithmic and computer implementation aspects and provide a number of easy-to-use programs. The text does not require any previous advanced mathematical knowledge of partial differential equations: the absolutely essential concepts are reported in a preliminary chapter. It is therefore suitable for students of bachelor and master courses in scientific disciplines, and recommendable to those researchers in the academic and extra-academic domain who want to approach this interesting branch of applied mathematics.
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