Title of article :
Pressure drop and heat transfer of a mercury single-phase flow and an air–mercury two-phase flow in a helical tube under a strong magnetic field
Author/Authors :
Takahashi، نويسنده , , Minoru and Momozaki، نويسنده , , Yoichi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Abstract :
For the reduction of a large magneto-hydrodynamic (MHD) pressure drop of a liquid metal single-phase flow, a liquid metal two-phase flow cooling system has been proposed. As a fundamental study, MHD pressure drops and heat transfer characteristics of a mercury single-phase flow and an air–mercury two-phase flow were experimentally investigated. A strong transverse magnetic field relevant to the fusion reactor conditions was applied to the mercury single-phase flow and the air–mercury two-phase flow in a helically coiled tube that was inserted in the vertical bore of a solenoidal superconducting magnet. It was found that MHD pressure drops of a mercury single-phase flow in the helically coiled tube were nearly equal to those in a straight tube. The Nusselt number at an outside wall was higher than that at an inside wall both in the mercury single-phase flow in the absence and presence of a magnetic field. The Nusselt number of the mercury single-phase flow decreased, increased and again decreased with an increase in the magnetic flux density. MHD pressure drops did not decrease appreciably by injecting air into a mercury flow and changing the mercury flow into the air–mercury two-phase flow. Remarkable heat transfer enhancement did not appear by the air injection. The injection of air into the mercury flow enhanced heat transfer in the ranges of high mercury flow rate and low magnetic flux density, possibly due to the agitation effect of air bubbles. The air injection deteriorated heat transfer in the range of low mercury flow rates possibly because of the occupation of air near heating wall.
Keywords :
Pressure drop , heat transfer , Mercury single phase flow , Air–mercury two-phase flow , Helical tube
Journal title :
Fusion Engineering and Design
Journal title :
Fusion Engineering and Design