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DIRECT MODELING FOR COMPUTATIONAL FLUID DYNAMICS

DIRECT MODELING FOR COMPUTATIONAL FLUID DYNAMICS

DIRECT MODELING FOR COMPUTATIONAL FLUID DYNAMICS Hardback - 2015

by XU KUN

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Hardcover. New. New Book; Fast Shipping from UK; Not signed; Not First Edition; Computational fluid dynamics (CFD) studies the flow motion in a discretized space. Its basic scale resolved is the mesh size and time step. The CFD algorithm can be constructed through a direct modeling of flow motion in such a space. T
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Details

  • Title DIRECT MODELING FOR COMPUTATIONAL FLUID DYNAMICS
  • Author XU KUN
  • Binding Hardback
  • Condition New
  • Pages 336
  • Volumes 1
  • Language ENG
  • Publisher World Scientific Publishing Company
  • Publication date 2015-01-10
  • Bookseller's Inventory # ria9789814623711_inp
  • ISBN 9789814623711 / 9814623717
  • Weight 1.3 lbs (0.59 kg)
  • Dimensions 9.1 x 6.1 x 0.9 in (23.11 x 15.49 x 2.29 cm)
  • Themes
    • Aspects (Academic): Science/Technology Aspects
  • Category Technology & Industrial Arts
  • Dewey Decimal Code 620.106
  • Quantity available 786

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Reader reviews for DIRECT MODELING FOR COMPUTATIONAL FLUID DYNAMICS

From the publisher

Computational fluid dynamics (CFD) studies the flow motion in a discretized space. Its basic scale resolved is the mesh size and time step. The CFD algorithm can be constructed through a direct modeling of flow motion in such a space. This book presents the principle of direct modeling for the CFD algorithm development, and the construction unified gas-kinetic scheme (UGKS). The UGKS accurately captures the gas evolution from rarefied to continuum flows. Numerically it provides a continuous spectrum of governing equation in the whole flow regimes.

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From the jacket flap

Computational fluid dynamics (CFD) studies the flow motion in a discretized space. Its basic scale resolved is the mesh size and time step. The CFD algorithm can be constructed through a direct modeling of flow motion in such a space. This book presents the principle of direct modeling for the CFD algorithm development, and the construction unified gas-kinetic scheme (UGKS). The UGKS accurately captures the gas evolution from rarefied to continuum flows. Numerically it provides a continuous spectrum of governing equation in the whole flow regimes.
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