Published June 2007 | Version v1
Journal article

Forced convection with laminar pulsating flow in a channel or tube

  • 1. Auckland Univ. Private Bag 92019, Dept. of Engineering Science (New Zealand)
  • 2. North Carolina State Univ., Dept. of Mechanical and Aerospace Engineering, Raleigh, NC (United States)

Description

A perturbation approach is used to obtain analytical expressions for the velocity, temperature distribution, and transient Nusselt number for the problem of forced convection, in a parallel-plates channel or a circular tube, produced by an applied pressure gradient that fluctuates with small amplitude harmonically in time about a non-zero mean. It is found that the fluctuating part of this Nusselt number alters in magnitude and phase as the dimensionless frequency increases. The magnitude increases from zero, goes through a peak, and then decreases to zero. The height of the peak decreases as the Prandtl number Pr increases. The phase (relative to that of the steady component) decreases from π/2 to -π/2. When Pr=1 there is a weak singularity in the form of the temperature distribution, but the Nusselt number is not significantly different from the case when Pr≠1. (authors)

Availability note (English)

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Additional details

Publishing Information

Journal Title
International Journal of Thermal Sciences
Journal Volume
46
Journal Issue
no.6
Journal Page Range
p. 551-560
ISSN
1290-0729

Optional Information

Notes
21 refs.