Article ID Journal Published Year Pages File Type
765153 Energy Conversion and Management 2008 8 Pages PDF
Abstract

In this paper, heat transfer in an oscillating loop heat pipe is investigated experimentally. The oscillation of the liquid columns at the evaporator and condenser sections of the heat pipe are driven by gravitational force and the phase lag between evaporation and condensation because the dimensions of the heat pipe are large enough to neglect the effect of capillary forces. The overall heat transfer coefficient based on the temperature difference between the evaporator and condenser surfaces is introduced by a correlation function of dimensionless numbers such as kinetic Reynolds number, cpΔT/hfg and the geometric parameters.

Related Topics
Physical Sciences and Engineering Energy Energy (General)
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