熱工学コンファレンス講演論文集
Online ISSN : 2424-290X
セッションID: 0192
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三次元構造多孔質体を用いたプール沸騰限界熱流束促進の研究
*植木 智隆河野 響史郎矢吹 智英宮崎 康次Massoud Kaviany
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The downward liquid supply interrupt to the heated surface due to strong upward vapor flow during a pool boiling on a flat surface, known as hydrodynamic liquid-choking limit, triggers critical heat flux (CHF) phenomenon. Here, we study a new CHF enhancement technique where we can separate the directions of the liquid and vapor paths to overcome the hydrodynamic liquid-choking limit. We fabricated a three-dimensional copper porous structure by sintering of copper particles. The pool boiling results confirm that the generated vapors are successfully vented from the side of the structure as we expected. The maximum CHF was 2.9 MW/m2 that is 2.4 times larger than the CHF on a flat copper surface.

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