日本機械学会論文集 B編
Online ISSN : 1884-8346
Print ISSN : 0387-5016
熱力学的効果が同期旋回キャビテーションに与える影響
吉田 義樹笹尾 好史沖田 耕一長谷川 敏橋本 知之井小萩 利明
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2007 年 73 巻 726 号 p. 404-410

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Synchronous rotating cavitation is known as one type of cavitation instability, which causes synchronous shaft vibration or head loss. On the other hand, cavitation in cryogenic fluids has a thermodynamic effect on cavitating inducers because of thermal imbalance around the cavity. To investigate the influence of the thermodynamic effect on synchronous rotating cavitation, we conducted experiments in which liquid nitrogen was set at different temperatures (74 K, 78 K and 83 K). We clarified the thermodynamic effect on synchronous rotating cavitation in terms of cavity length, fluid force, and liquid temperature. Synchronous rotating cavitation occurs at the critical cavity length of Lc/h≅0.8, and the onset cavitation number shifts to a lower level due to the suppression of cavity growth by the thermodynamic effect, which appears significantly with rising liquid temperature. Furthermore, we confirmed that the fluid force acting on the inducer notably increases under conditions of synchronous rotating cavitation.

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