Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7052768 | International Communications in Heat and Mass Transfer | 2018 | 11 Pages |
Abstract
This work is aimed at studying the effect of gravity when convective condensation occurs inside a small diameter channel. An experimental apparatus has been specifically designed to perform microgravity experiments during the 62nd ESA Parabolic Flight Campaign. Convective condensation heat transfer tests have been carried out at mass velocity between 70â¯kgâ¯mâ2â¯sâ1 and 170â¯kgâ¯mâ2â¯sâ1 using HydroFluoroEther HFE-7000 (1-methoxyheptafluoropropane) as the working fluid in a circular cross section channel with an internal diameter equal to 3.4â¯mm. The data of heat transfer coefficient and the flow pattern visualizations show that, when gravity acts perpendicular to the channel flow, it has a beneficial effect on the heat transfer coefficient by acting on the liquid distribution along the channel perimeter. In microgravity conditions this mechanism leads to a penalization which is proportional to the mass velocity.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Fluid Flow and Transfer Processes
Authors
Marco Azzolin, Stefano Bortolin, Lan Phuong Le Nguyen, Pascal Lavieille, Andrey Glushchuk, Patrick Queeckers, Marc Miscevic, Carlo Saverio Iorio, Davide Del Col,