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이 논문의 연구 히스토리 (6)

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This is an experimental study conducted to visualize the nucleate boiling phenomena and flow regimes occurring inside the liquid pool in a closed two-phase thermosyphon. To meet this purpose, an annular-type thermosyphon was designed and manufactured using a glass tube and a stainless steel tube, being assembled axisymmetrically.
The heat to be supplied to the working fluid is generated within a very thin layer of stainless steel tube wall by applying a high frequency electromagnetic field through the induction coil, axisymmetrically set around the evaporator zone.
Some important results were as follows ;
1) Considering the structural complexity of the tested thermosyphon, it showed good performance for the range of heat flux, 2< q" <25㎾/㎡ and saturation vapor pressure, 0.1<Pv<1.1bar.
2) different type of nucleating boiling regimes were observed as described below.
-Pulse boiling regime : Flow pattern changed cyclically with time during 1 cycle of pulse boiling process. The onset of Nucleation was followed by expulsive growing of vapor bubble, resulting in the so called blow-up phenomenon, massive expulsion of large amount of liquid around the bubble.
-Transient : Some spherical vapor bubbles were observed growing out from 2~3 nucleating sites, that was dispersed at the lower part of the heated tube wall in the liquid pool. But the rest upper region above the nucleating sites were filled with churns or bubbles of vapor.
-Continuous nucleate boiling regime : The whole zone of evaporator was filled with lots of spherical vapor bubbles, and the bubbles showed tendency to decrease in diameter as the heat flux increased.

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2. 실험장치 및 실험방법

3. 결과 및 고찰

4. 결론

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UCI(KEPA) : I410-ECN-0101-2009-563-018180828