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  • Heat -- Transmission.  (1)
  • English  (1)
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  • English  (1)
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    Keywords: Heat -- Transmission. ; Fluid dynamics. ; Thermodynamics. ; Electronic books.
    Description / Table of Contents: The 4th Annual Heat Transfer, Fluid Dynamics and Thermodynamics Conference (HEFAT) took place in Cairo in 2005. The objective of this conference is to bring together researchers engaged in the application of experimental, analytical or computational heat and mass transfer, fluid flow, and thermophysical properties. This e-book is composed of a selection of presented papers which are concerned with new and valued developments in the computer based modeling of heat and fluid flow problems.
    Type of Medium: Online Resource
    Pages: 1 online resource (175 pages)
    Edition: 1st ed.
    ISBN: 9781846637612
    Series Statement: International Journal of Numerical Methods for Heat & Fluid Flow - Volume 18, Issue 2 ; v.18
    DDC: 621.402/1;621.4021
    Language: English
    Note: Cover -- CONTENTS -- EDITORIAL ADVISORY BOARD -- Guest editorial -- A unified fractional step method for compressible and incompressible flows, heat transfer and incompressible solid mechanics -- Parallel computation of multiscale phenomena in magnetically-stirred solidifying melts -- A numerical model for calculating the vaporization rate of a fuel droplet exposed to a convective turbulent airflow -- Population balance models for subcooled boiling flows -- Application of high-order spatial resolution schemes to the hybrid finite volume/finite element method for radiative transfer in participating media -- A flow network formulation for compressible and incompressible flow -- Effect of thermophoresis particle deposition on mixed convection from vertical surfaces embedded in saturated porous medium -- Wavelet application for reduction of measurement noise effects in inverse boundary heat conduction problems -- Analysing an adaptive finite volume for flow in highly heterogeneous porous medium -- Turbulent flow and heat transfer in stationary and rotating cooling passages with inclined ribs on opposite walls.
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