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首页> 外文期刊>International Journal of Refrigeration >Visualization of bubble behavior and bubble diameter correlation for NH{sub}3-H{sub}2O bubble absorption
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Visualization of bubble behavior and bubble diameter correlation for NH{sub}3-H{sub}2O bubble absorption

机译:NH {sub} 3-H {sub} 2O气泡吸收的气泡行为和气泡直径相关性的可视化

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摘要

The objectives of this paper are to visualize the bubble behavior for an ammonia-water absorption process, and to study the effect of key parameters on ammonia-water bubble absorption performance. The orifice diameter, orifice number, liquid concentration and vapor velocity are considered as the key parameters. The departing bubbles tend to be spherical for surface tension dominant flow, and the bubbles tend to be hemispherical for inertial force dominant flow. A transition vapor Reynolds number is observed at a balance condition of internal absorption potential (by the concentration difference) and external absorption potential (by the vapor inlet mass flow rate). As the liquid concentration increases, the transition Reynolds number and the initial bubble diameter increase. The initial bubble diameter increases with an increase of the orifice diameter while it is not significantly affected by the number of orifices. Residence time of bubbles increases with an increase in the initial bubble diameter and the liquid concentration. This study presents a correlation of initial bubble diameter with ±20% error band. The correlation can be used to calculate the interfacial area in the design of ammonia-water bubble absorber.
机译:本文的目的是可视化氨水吸收过程中的气泡行为,并研究关键参数对氨水气泡吸收性能的影响。孔口直径,孔口数量,液体浓度和蒸气速度被认为是关键参数。对于表面张力为主的流动,离开的气泡倾向于是球形的,对于惯性力为主的流动,气泡倾向于是半球形的。在内部吸收电势(通过浓度差)和外部吸收电势(通过蒸汽入口质量流速)的平衡条件下观察到过渡蒸气雷诺数。随着液体浓度的增加,转变雷诺数和初始气泡直径增加。初始气泡直径随孔直径的增加而增加,而不受孔数的影响。气泡的停留时间随着初始气泡直径和液体浓度的增加而增加。这项研究提出了初始气泡直径与±20%误差带的相关性。该相关性可用于计算氨水气泡吸收器设计中的界面面积。

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