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Micro-bubble emission boiling with the cavitation bubble blow pit

机译:空化气泡吹坑使微气泡发射沸腾

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摘要

The miniaturization boiling (micro-bubble emission boiling [MEB]) phenomenon, with a high heat removal capacity that contributes considerably to the cooling of the divertor of the nuclear fusion reactor, was discovered in the early 1980s. Extensive research on MEB has been performed since its discovery. However, the progress of the application has been delayed because the generation mechanism of MEB remains unclear. Reasons for this lack of clarity include the complexity of the phenomenon itself and the high-speed phase change phenomenon in which boiling and condensation are rapidly generated. In addition, a more advanced thermal technique is required to realize the MEB phenomenon at the laboratory scale. To the authors’ knowledge, few studies have discussed the rush mechanism of subcooled liquid to the heating surface, which is critical to elucidating the mechanism behind MEB. This study used photographic images to verify that the cavitation phenomenon spreads to the inside of the superheated liquid on the heating surface and thus clarify the mechanism of MEB.
机译:在1980年代初期发现了具有高排热能力的微型沸腾现象(微气泡发射沸腾[MEB]),该现象极大地促进了核聚变反应堆分流器的冷却。自发现以来,已经对MEB进行了广泛的研究。但是,由于MEB的生成机制仍不清楚,因此应用程序的进度已被延迟。缺乏清晰性的原因包括现象本身的复杂性和快速产生沸腾和冷凝的高速相变现象。另外,需要更先进的热技术来在实验室规模上实现MEB现象。据作者所知,很少有研究讨论过冷液体冲向加热表面的机理,这对于阐明MEB背后的机理至关重要。这项研究使用摄影图像来验证空化现象扩散到加热表面上的过热液体内部,从而阐明MEB的机理。

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