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Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Ele

Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Ele

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Here is a comprehensive introduction to the least-squares finite element method (LSFEM) for numerical solution of PDEs. It covers the theory for first-order systems, particularly the div-curl and the div-curl-grad system. Then LSFEM is applied systematically to permissible boundary conditions for the incompressible Navier-Stokes equations, to show that the divergence equations in the Maxwell equations are not redundant, and to derive equivalent second-order versions of the Navier-Stokes equations and the Maxwell equations. LSFEM is simple, efficient and robust, and can solve a wide range of problems in fluid dynamics and electromagnetics, including incompressible viscous flows, rotational inviscid flows, low-Mach-number compressible flows, two-fluid and convective flows, scattering waves, etc.

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BrandSpringer
Pub dateJun 22, 1998
ISBN-103540639349
ISBN-139783540639343
LanguageEnglish
Dimensions9.21 × 1.06 × 6.14 in
Weight4 lb
Last updated 2026-09-08 12:56
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