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자료유형
학술대회자료
저자정보
저널정보
대한설비공학회 대한설비공학회 학술발표대회논문집 대한설비공학회 1996年度 하계학술발표 논문집
발행연도
1996.7
수록면
173 - 179 (7page)

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Experiments were carried out to study the characteristics of a thermo-syphon in a generator with a surface-flame burner for a lithium bromide (LiBr)-water absorption heat pump.
A cylindrical-shape metal-fiber burner and commercial grade propane were used. The generation rate of water vapor as a coolant was measured. It could be as a reference value showing the performance of the generator. The circulation rate of the LiBr-water solution was also measured from both the tanks for the weak- and the strong-solution. Using a refractometer, the LiBr concentration in the solution was calculated from the measured refractory index of the solution. Temperature of the solution and the condensed water was recorded at several points in the experimental apparatus with thermocouples, using a personal computer. This data collecting system for measuring temperature was calibrated with a set of standard thermometers.
The circulating tate of LiBr solution decreases linearly with increasing delivery height of the solution. But the generating rate of coolant vapor remains constant with changing delivery height till the limit of delivery height. With compartively low heat input, the circulating rate of LiBr solution decreases suddenly at the limit of delivery height, where the generating rate of coolant vapor remains constant. It was about 4.0 grams per second with the heat supplied at a rate of 16,500 ㎉/h. The difference in LiBr concentrations between the weak and the strong solution was in the range of 1 to 5% when the concentration of the strong solution was about 60%. It was dependent upon both the heat supplied and the circulation rate of the solution. The initial concentration and the level of the LiBr solution in the generator were measured and recorded before experiments. The effect of them on the generating rate of water vapor and the circulation rate of the solution was also studied.

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ABSTRACT

1. 서론

2. 실험장치 및 방법

3. 실험 결과

4. 결론

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