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The boundary element method (BEM), also known as the boundary integral equation method (BIEM), is a modern numerical technique which has enjoyed increasing popularity over the past two decades. It is now an established alternative to traditional computational methods of engineering analysis. The main advantage of the BEM is its unique ability to provide a complete solution in terms of boundary values only, with substantial savings in modeling effort. This book is designed to provide readers with a comprehensive and up-to-date account of the method and its application to problems in engineering
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The finite element method is a technique for solving problems in applied science and engineering. The essence of this book is the application of the finite element method to the solution of boundary and initial-value problems posed in terms of partial differential equations. The method is developed for the solution of Poisson's equation, in a weighted-residual context, and then proceeds to time-dependent and nonlinear problems. The relationship with the variational approach is alsoexplained. This book is written at an introductory level, developing all the necessary concepts where required. Co
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allegory [artistic device] --- Aves [class] --- lucht (element) --- Bruegel, Jan [Elder]
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Concrete beams. --- Finite element method --- Structural failures. --- Computer programs.
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Comets. --- Finite element method. --- Vibrational stress. --- Acoustics. --- Statistical analysis.
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Concrete beams. --- Finite element method --- Structural failures. --- Computer programs.
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Groundwater flow --- Groundwater flow --- Finite element method. --- Finite element method. --- Groundwater flow --- Groundwater flow --- Mathematical models. --- Computer simulation. --- Computer simulation. --- Mathematical models. --- MODFLOW-2005.
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Fracture mechanics --- Mécanique de la rupture --- Finite element method. --- Mathematics. --- Mécanique de la rupture
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Bridging the gap between theoretical texts and the massive and expensive software packages, this handbook covers finite element programming in a wide range of problems in mechanical, civil, aeronautical and electrical engineering. Comprehensive, it ranges from the static analysis of two- and three-dimensional structures to stress analysis of thick slabs on elastic foundations, and from two- and three- dimensional vibration analysis problems to two-dimensional field problems including heat transfer and acoustic vibrations.The 24 printouts of powerful and valuable engineering computer pr
Engineering sciences. Technology --- Programming --- Structural engineering --- Finite element method --- Continuum mechanics --- Data processing. --- Computer programs.
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