Heat transfer by high-frequency oscillations: A new hydrodynamic technique for achieving large effective thermal conductivities
- 1 November 1984
- journal article
- conference paper
- Published by AIP Publishing in Physics of Fluids
- Vol. 27 (11) , 2624-2627
- https://doi.org/10.1063/1.864563
Abstract
Heat transfer between two fluid reservoirs maintained at different temperatures and connected to each other via a capillary bundle is examined when the fluid within the capillaries is oscillated axially. Very large effective axial heat conduction rates, exceeding those possible with heat pipes by several orders of magnitude, are found to be achievable. A laminar hydrodynamic theory is developed to describe the phenomenon and to show that the enhanced heat conduction is one involving radial heat transfer across very thin Stokes’s boundary layers existing in these flows. Experimental measurements using water as the working fluid show effective thermal diffusivities up to 17 900 times those existing in the absence of oscillations. Since the process involves no net convective mass transport, it offers considerable promise as a means for the rapid removal of heat from radioactive fluids.Keywords
This publication has 6 references indexed in Scilit:
- Enhanced dispersion in oscillatory flowsPhysics of Fluids, 1984
- Diffusion in oscillatory pipe flowJournal of Fluid Mechanics, 1983
- Determination of the longitudinal dispersion coefficient in flows subjected to high-frequency oscillationsPhysics of Fluids, 1983
- On the longitudinal dispersion of passive contaminant in oscillatory flows in tubesJournal of Fluid Mechanics, 1975
- Transition to turbulence in oscillating pipe flowJournal of Fluid Mechanics, 1975
- The dispersion of matter in turbulent flow through a pipeProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1954