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Effect of vapor flow on the falling-film heat and mass transfer of the ammonia/water absorber

机译:蒸汽流量对氨/水吸收器降膜传热和传质的影响

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Falling-film heat and mass transfer in an absorber can be influenced by the motion of the surrounding refrigerant vapor. In this study, the effect of the vapor flow direction on the absorption heat and mass transfer has been investigated for a falling-film helical coil absorber which is frequently used in the ammonia/water absorption refrigerators. The heat and mass transfer performance was measured for both parallel and countercurrent flow. The experiments were carried out for three different solution concentrations (3, 14, and 30%). The vapor in equilibrium with the solution is supplied to the test section. It is found that the falling-film heat and mass transfer is deteriorated in the countercurrent flow if the specific volume of the vapor solution is large. For the countercurrent flow, the high velocity of the vapor due to large specific volume seems to cause the unfavorable distribution of falling-film and reduce the heat and mass transfer performance of the ammonia absorber. The effect of vapor flow direction decreased with increasing concentration of ammonia solution since the specific volume of the ammonia vapor which is in equilibrium with the solution becomes smaller and the vapor velocity becomes lower.
机译:吸收剂中的降膜传热和传质可能会受到周围制冷剂蒸气运动的影响。在这项研究中,已经研究了氨/水吸收式制冷机中经常使用的降膜螺旋线圈式吸收器的蒸气流动方向对吸收热和质量传递的影响。测量了平行和逆流的传热和传质性能。针对三种不同的溶液浓度(3%,14%和30%)进行了实验。与溶液平衡的蒸气被供应到测试部分。发现如果蒸气溶液的比体积大,则逆流中的降膜传热和传质变差。对于逆流,由于大的比容而导致的蒸气的高速似乎导致降膜的不利分布并降低了氨吸收器的传热和传质性能。随着氨溶液浓度的增加,蒸气流向的影响减小,这是因为与溶液平衡的氨蒸气的比体积变小并且蒸气速度变低。

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