000 | 02644cam a22003134a 4500 | ||
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003 | BYT | ||
005 | 20171006015810.0 | ||
008 | 020815s2003 gw a b 000 0 eng | ||
020 | _a3540438912 | ||
020 | _a9783540438915 | ||
020 | _a14397358 | ||
040 | _cBYT | ||
041 | _aeng | ||
082 | 0 | 0 |
_a515.353 _221 |
245 | 0 | 0 |
_aMeshfree methods for partial differential equations / _cMichael Griebel, Marc Alexander Schweitzer, editors. |
260 |
_aBerlin ; _bSpringer, _cc2003. |
||
300 |
_aix, 466 pages : _billustracions (some colors) ; _c24 cm. |
||
490 | 0 |
_aLecture notes in computational science and engineering; _v26 _x1439-7358 ; |
|
504 | _aIncludes bibliographical references. | ||
505 | 2 | _aMeshless and Generalized Finite Element Methods: A Survey of Some Major Results -- Adaptive Meshfree Method of Backward Characteristics for Nonlinear Transport Equations -- New Methods for Discontinuity and Crack Modeling in EFG -- SPH Simulations of MHD Shocks Using a Piecewise Constant Smoothing Length Profile -- On the Numerical Solution of Linear Advection-Diffusion Equation using Compactly Supported Radial Basis Functions. | |
520 | 3 | _aMeshfree methods for the solution of partial differential equations gained much attention in recent years, not only in the engineering but also in the mathematics community. One of the reasons for this development is the fact that meshfree discretizations and particle models ar often better suited to cope with geometric changes of the domain of interest, e.g. free surfaces and large deformations, than classical discretization techniques such as finite differences, finite elements or finite volumes. Another obvious advantage of meshfree discretization is their independence of a mesh so that the costs of mesh generation are eliminated. Also, the treatment of time-dependent PDE from a Lagrangian point of view and the coupling of particle models. The coupling of particle models and continuous models gained enormous interest in recent years from a theoretical as well as from a practial point of view. This volume consists of articles which address the different meshfree methods (SPH, PUM, GFEM, EFGM, RKPM etc.) and their application in applied mathematics, physics and engineering. | |
650 | 0 |
_aDifferential equations, Partial _xNumerical solutions. |
|
650 | 0 |
_aEcuaciones diferenciales, Parciales _92762 |
|
650 | 0 | _aMeshfree methods (Numerical analysis) | |
650 | 0 |
_aMétodo de elementos de frontera (Análisis numérico) _92814 |
|
700 | 1 |
_aGriebel, Michael, _d1960- _92273 _eeditor |
|
700 | 1 |
_aSchweitzer, Marc Alexander. _92273 _eeditor |
|
942 |
_2ddc _cLIBRO |
||
999 | _c887 |