Modeling, Experiment, and Fabrication of Micro-Grooved Heat Pipes: An Update

Author:

Suman Balram1

Affiliation:

1. Department of Chemical Engineering and Materials Science, University of Minnesota, 151 Amundson Hall, 421 Washington Avenue, SE, Minneapolis, MN 55455

Abstract

Abstract The review presents an update of the work done in the micro heat pipe research and development, with an aim to give updated detailed knowledge to individuals new to the field, as well as to those already working in this area. Presented here is a summary of the recent advances in these devices occurring since the early 1990s. The following review describes the historical development of these devices, along with a review of the steady state and the transient models, sensitivity analyses, recent experimental investigations and fabrication techniques. The critical heat input, dryout length, fill charge, various heat pipe limitations and design have also been discussed in brief. Finally, future research and areas in which additional information is required are identified and delineated. This article has 204 references.

Publisher

ASME International

Subject

Mechanical Engineering

Reference204 articles.

1. Perkins Hermetic Tube Boilers;King;The Engineer

2. Perkins, L. P., and Buck, W. E., 1892, “Improvements in Devices for the Diffusion or Transference of Heat,” UK Patent No. 22,272, London, England.

3. Gay, F. W. , 1929, “Heat Transfer Means,” U.S. Patent No. 1,725,90.

4. Gaugler, R. , 1944, “Heat Transfer Device,” U.S. Patent No. 2350348.

5. Trefethen, L. , 1962, “On the Surface Tension Pumping of Liquids or a Possible Role of the Candlewick in Space Exploration,” Tech Info., G. E., Serial No. 615 D114.

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