Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7046346 | Applied Thermal Engineering | 2018 | 16 Pages |
Abstract
In this article, an experimental study has been conducted to provide better understanding of the transient characteristics of a dual compensation chamber loop heat pipe (DCCLHP) subjected to the acceleration force. A new acceleration test rig was set up to provide the acceleration up to 11g with three different directions. The heat load on the evaporator ranging from 25â¯W to 300â¯W was applied with the acceleration force simultaneously. Experimental results indicated that the DCCLHP could start up at a small heat load of 25â¯W and the startup behavior was different under acceleration direction conditions because of the vapor-liquid distribution change in the evaporator and compensation chambers (CCs). Under the current operating conditions, the effect of acceleration force was significant to the operating performance at small heat loads whereas was weak at large heat loads. Experimental results also clearly showed that both acceleration magnitude and direction can alter the operating mode. What's more, it was found that temperature oscillation, reverse flow and evaporation in the evaporator core phenomena occurred under acceleration conditions.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Fluid Flow and Transfer Processes
Authors
Yongqi Xie, Yang Zhou, Dongsheng Wen, Hongwei Wu, George Haritos, Hongxing Zhang,