An Investigation of Evaporation Heat Transfer in Sintered Copper Wicks With Microgrooves

Author:

Zhao Yuan1,Chen Chung-Lung1

Affiliation:

1. Rockwell Scientific Company

Abstract

This paper presents an experimental study on the parameters that determine the thermal performance of sintered copper wicks with longitudinal micro grooves for heat pipe applications. The grooves, which provide passages to vent vapor, have a width in a range from 150 μm to 500 μm. The copper powder used here has a nominal diameter of 50 μm, which produces an effective pore radius of approximately 13 μm. The main wicks composed of pores and grooves present characteristics of bi-dispersed wick structures. Unlike traditional bi-dispersed wick structures, the sintered grooved wick structures provide undisrupted longitudinal liquid delivery passages and thus improve the boiling limit. Performance of the wick structures with distilled water was examined and the effects of the heat flux and groove geometries on the evaporation/boiling heat transfer performance were studied.

Publisher

ASMEDC

Reference11 articles.

1. Mudawar, I. 2000, “Assessment of high-heat-flux Thermal Management Schemes”, 2000 Inter Society Conference on Thermal phenomena.

2. North M. T., Sarraf, D. B., Rosenfeld, J. H., Maidanik, Y. F., Vershinin, S., 1997, “High Heat Flux Loop Heat Pipes”, Proceedings of the 6th European Symposium on Space Environmental Control systems, Noordwijk, Netherlands, May 20-22, 1997.

3. Zuo, Z. J., North, M. T., 1999,” Miniature High Heat Flux Heat Pipes for Cooling of electrinics,” Thermacore, Inc.

4. Li, C., Peterson, G. P. and Wang, Y., 2005, “Experimental Study of Thickness Effects in Evaporation-Boiling on Thin Sintered Copper Mesh Surfaces,” 2005 National Heat Transfer Conference, San Francisco, CA, July 17-22, 2005.

5. North, M. T., Rosenfeld, J. H., and Shaubach, R. M., 1995, “Liquid Film Evaporation from Bi-dispersed Capillary Wicks in Heat Pipe Evaporators,” Proceedings of the 13th International Heat Pipe Conference, Albuquerque, NM, May 1-5, 1995.

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