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首页> 外文期刊>Heat Transfer Research >EXPERIMENTAL INVESTIGATION OF THE BUBBLE PUMP OF A SINGLE PRESSURE ABSORPTION REFRIGERATION SYSTEM UNDER THE EFFECT OF PRESSURE AND AMMONIA CONCENTRATION
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EXPERIMENTAL INVESTIGATION OF THE BUBBLE PUMP OF A SINGLE PRESSURE ABSORPTION REFRIGERATION SYSTEM UNDER THE EFFECT OF PRESSURE AND AMMONIA CONCENTRATION

机译:压力和氨浓度影响下单压吸收式制冷系统鼓泡泵的实验研究

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摘要

Bubble pump plays a crucial role in single pressure absorption refrigerators as it drives the systems. Its performance is influenced by parameters such as the tube diameter, pressure, and ammonia concentration. In this study, the flow and performance under the effect of pressure and ammonia concentration were investigated. The increase in ammonia concentration leads to an increase in the size of bubbles and the mass flow rate. The heater temperature is independent of the tube diameter but is influenced by the system pressure and ammonia concentration. The bubble pump performance reduces the decrease in the ammonia concentration and contributes to the increase in the pressure or tube diameter. The timing equations of Chan and McCulloch were verified under various system conditions and dimensions. The average estimation error for the water-based 1-4 bar bubble pump is 12.8%. Meanwhile, the average estimation errors for the ammonia solution bubble pump with 6.5-9.6 mm tube diameter, and with 0.0-0.3 (mass fraction) ammonia concentration are 17.9% and 18.8%, respectively.
机译:气泡泵在驱动系统时在单压吸收式制冷机中起着至关重要的作用。其性能受诸如管径,压力和氨浓度等参数的影响。在这项研究中,研究了在压力和氨浓度影响下的流动性和性能。氨浓度的增加导致气泡尺寸和质量流率的增加。加热器温度与管径无关,但受系统压力和氨浓度影响。气泡泵的性能减少了氨浓度的降低,并有助于压力或管径的增加。在不同的系统条件和尺寸下,对Chan和McCulloch的时序方程进行了验证。水性1-4 bar气泡泵的平均估计误差为12.8%。同时,管直径为6.5-9.6mm且氨浓度为0.0-0.3(质量分数)的氨溶液气泡泵的平均估计误差分别为17.9%和18.8%。

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