<p>"The author describes how to design and implement effi�cient parallel multi-frontal direct solver algorithms for mesh-based computations.</p><p>Each chapter explains how to design and implement a parallel sparse direct solver specific for a particular structure of the matrix. All the solvers presented are either designed from scratch or based on previously designed and implemented solvers.</p><p>The book's structure follows that of the matrices, starting from tri-diagonal matrices resulting from one-dimensional mesh-based methods, through multi-diagonal or block-diagonal matrices, and ending with general sparse matrices.</p><p>In each chapter JAVA or Fortran codes of the parallel sparse direct solver are listed. The author also derives exemplary element frontal matrices for different one-, two-, or three-dimensional mesh-based computations. These matrices can be used as references for testing the developed parallel direct solvers.</p><p>The book represents a valuable resource for researchers and graduate students who would like to learn how to design and implement parallel direct solvers for mesh-based computations."<br />~Nicola Mastronardi, <em>Mathematical Reviews</em>, 2017</p>
Produktdetaljer
Om bidragsyterne
Maciej Paszynski, PhD, Department of Computer Science, Electronics and Telecommunications, AGH University of Science and Technology, Kraków, Poland