Sector Rotating Heat Pipe With Interconnected Branches and Reservoir for Turbomachinery Cooling

Author:

Reding Brian1,Cao Yiding1

Affiliation:

1. Department of Mechanical and Materials Engineering, Florida International University, 10555 W. Flagler Street, EC3400, Miami, FL 33174 e-mail:

Abstract

Heat pipe technology offers a possible cooling technique for structures exposed to high heat fluxes, as in turbomachinery such as compressors and turbines. However, in its current configuration as single heat pipes, implementation of the technology is limited due to the difficulties in manufacturability and costs. Hence, a study to develop a new radially rotating (RR) heat pipe system was undertaken, which integrates multiple RR heat pipes with a common reservoir and interconnected braches for a more effective and practical solution to turbomachinery cooling. Experimental study has shown that the integration of multiple heat pipe branches with a reservoir at the top is feasible.

Funder

Army Research Office

Publisher

ASME International

Subject

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

Reference21 articles.

1. Cao, Y., 1996, “Rotating Micro/Miniature Heat Pipes for Turbine Blade Cooling Applications,” AFOSR Contractor and Grantee Meeting on Turbulence and Internal Flows, Atlanta, GA.

2. An Experimental Study of Micro Radially Rotating Heat Pipes With Water as the Working Fluid,2008

3. Analyses of Heat Transfer Limitations of Radially Rotating Heat Pipes for Turbomachinery Applications,1997

4. Cao, Y., Ling, J., and Wang, Q., 1996, “Analytical and Experimental Investigations for the Critical Working Frequency of Reciprocating Heat Pipes With Piston Cooling Applications,” AIChE Symposium Series 92 Conference, Houston, TX, Aug. 3–6, AIChE Paper No. 310, pp. 317–323.

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