Wall Heat Transfer Characteristic of Parallel-Plate Channel Filled With Open-Cell Metal Foams in Large Flow Velocity Range

Author:

Wenping Peng1,Qingguo Cheng11,Qiulin Wang11

Affiliation:

1. Shanxi University School of Electric Power, Civil Engineering and Architecture, , No. 63 South Zhonghuan East Street, Xiaodian District, Taiyuan 030006 , China

Abstract

Abstract High-porosity open-cell metal foams can be utilized to fill parallel-plate channels for achieving efficient cooling performance. A wall heat transfer model considering viscous and inertial heat effects is given based on local thermal nonequilibrium theory. Detailed investigations are conducted on influences of parameters on cooling performance. The results indicate that an optimum velocity exists; impacts of porosity and pore size depend on thermophysical properties of fluids and flow velocity; heat transfer resistance also varies with them; increasing foam thickness enhances cooling performance for air under identical velocities but has negligible effect for water; under identical flow rates, decreasing foam thickness improves cooling performance; enlarging base surface area is an effective approach at low flow velocities.

Publisher

ASME International

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