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Numerical linear algebra / Chemical engineering / Stability theory / Eigenvalue algorithm / Navier–Stokes equations / Bifurcation theory / Matrix / Eigenvalues and eigenvectors / Fluid dynamics / Algebra / Mathematics / Aerodynamics


Stability Analysis of LargeScale Incompressible Flow Calculations on Massively Parallel Computers Andrew G. Salinger, Richard Lehoucq, and Louis Romero Sandia National Laboratories1
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Document Date: 2001-12-20 15:48:37


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Philadelphia / Berlin / Derby / New York / /

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H. K. Moffat S. A. / Sandia Corporation / J.N. Shadid S.A. / Lockheed Martin Company / Intel / P.H. Rabinowitz / /

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CVD reactor / /

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large systems / nonlinear analysis algorithms / steady-state solutions / pseudo arc-length continuation algorithm / linear and nonlinear stability analysis tools / disk chemical vapor deposition reactor / bifurcation tracking algorithm / continuation algorithm / similarity solution / Steady-state algorithms / steady state solutions / chemical vapor deposition / linear stability analysis algorithms / stability analysis algorithms / unstable solutions / parallel processors / linear systems / steady-state solution / idea gas treatment / steady state solution / /

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The turning point / /

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Mathematical / Information / and Computational Sciences Division / United States Department of Energy / /

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Dorte Olesen Editors / Richard Lehoucq / Optimization / Louis Romero Sandia / Jack Dongarra / J. Crystal Growth / Kaj Madsen / Academic / Theory / /

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editor / left end / /

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New Mexico / Pennsylvania / New York / /

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Lecture Notes in Computer Science / /

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