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Fluid dynamics theory, computation, and numerical simulation / Constantine Pozrikidis.

By: Material type: TextTextPublisher: New York : Springer, 2009Edition: 2nd editionDescription: xvii, 773 pages : illustrations (some color) ; 24 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9780387958712 (eisbn)
  • 0387958711 (eisbn)
Subject(s): Genre/Form: DDC classification:
  • 620.106 P.C.F 22
Online resources:
Contents:
Introduction to kinematics -- More on kinematics -- Flow computation based on kinematics -- Forces and stresses -- Hydrostatics -- Equation of motion and vorticity transport -- Channel, tube, and film flow -- Finite-difference methods -- Low Reynolds number flow -- High Reynolds number flow -- Vortex motion -- Aerodynamics.
Summary: Introduction to kinematics -- More on kinematics -- Flow computation based on kinematics -- Forces and stresses -- Hydrostatics -- Equation of motion and vorticity transport -- Channel, tube, and film flow -- Finite-difference methods -- Low Reynolds number flow -- High Reynolds number flow -- Vortex motion -- Aerodynamics.
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode
Books Books Main library B2 Faculty of Engineering & Technology (Mechanical) 620.106 P.C.F (Browse shelf(Opens below)) 1 Available 00005246

Description based on print version record.

Includes bibliographical references (pages 738-740) and index.

Introduction to kinematics -- More on kinematics -- Flow computation based on kinematics -- Forces and stresses -- Hydrostatics -- Equation of motion and vorticity transport -- Channel, tube, and film flow -- Finite-difference methods -- Low Reynolds number flow -- High Reynolds number flow -- Vortex motion -- Aerodynamics.


Introduction to kinematics -- More on kinematics -- Flow computation based on kinematics -- Forces and stresses -- Hydrostatics -- Equation of motion and vorticity transport -- Channel, tube, and film flow -- Finite-difference methods -- Low Reynolds number flow -- High Reynolds number flow -- Vortex motion -- Aerodynamics.

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