Experimental Investigation of Liquid Metal Droplet on the Heat Transfer Performance in an Oscillating Heat Pipe

Author:

Owoola Mark1,Ismael Laith23,Aviles Adalberto1,Mohammadian Shahabeddin K.1,Ma Hongbin1

Affiliation:

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

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

3. University of Technology Department of Mechanical Engineering, , Baghdad , Iraq

Abstract

AbstractAn oscillating heat pipe (OHP) charged with a hybrid fluid is investigated. This hybrid fluid uses an emulsion-based mixture of liquid metal gallium microdroplets suspended in an ethanol solution. The gallium microdroplets are fabricated using an ultrasonication technique. The OHP is fabricated from a copper plate and contains a six-turn channel with a 3 × 3 mm2 cross section. The heat transfer performance of the OHP was investigated experimentally with different concentrations of gallium at a 50% filling ratio. Steady-state oscillating motion was achieved with weight concentrations of gallium up to 20%. The experimental results show that using gallium-in-ethanol hybrid fluid emulsion as the working fluid can increase the heat transfer performance of the OHP by up to 7.8% over pure ethanol at 300 W. The mass of gallium needed to achieve this magnitude of heat transfer improvement is drastically reduced compared to previous research.

Funder

Office of Naval Research

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

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