Robust Thermal Performance of a Flat-Plate Oscillating Heat Pipe During High-Gravity Loading

Author:

Thompson S. M.1,Hathaway A. A.1,Smoot C. D.1,Wilson C. A.1,Ma H. B.1,Young R. M.2,Greenberg L.2,Osick B. R.2,Campen S. Van2,Morgan B. C.3,Sharar D.3,Jankowski N.3

Affiliation:

1. Department of Mechanical & Aerospace Engineering, University of Missouri, Columbia, MO 65211

2. Northrop Grumman Corporation, Linthicum, MD 21090

3. U.S. Army Research Laboratory, Adelphi, MD 20783

Abstract

The thermal performance of a miniature, three-dimensional flat-plate oscillating heat pipe (3D FP-OHP) was experimentally investigated during high-gravity loading with nonfavorable evaporator positioning. The heat pipe had dimensions of 3.0 × 3.0 × 0.254 cm3 and utilized a novel design concept incorporating a two-layer channel arrangement. The device was charged with acetone and tested at a heat input of 95 W within a spin-table centrifuge. It was found that the heat pipe operated and performed near-independent of the investigated hypergravity loading up to 10 g. Results show that at ten times the acceleration due to gravity (10 g), the effective thermal conductivity was almost constant and even slightly increased which is very different from a conventional heat pipe. The gravity-independent heat transfer performance provides a unique feature of OHPs.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference17 articles.

1. Akachi, H. , 1990, U.S.Patent No. 4,921,041 (1 May).

2. Thermofluid Dynamic Study of Flat-Plate Closed-Loop Pulsating Heat Pipes;Khandekar;Microscale Thermophys. Eng.

3. Experimental Investigation of Oscillating Motions in a Flat-Plate Oscillating Heat Pipe;Borgmeyer;J. Thermophys. Heat Transfer

4. Thermal Characterization of Pulsating Heat Pipes;Xu

5. Fabrication of Polydimethylsiloxane (PDMS) Pulsating Heat Pipe;Lin;Appl. Therm. Eng.

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