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Effect of operating conditions on the performance of the bubble pump of absorption-diffusion refrigeration cycles

机译:工作条件对吸收扩散式制冷循环气泡泵性能的影响

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摘要

The mathematical model will be able to predict the operated condition (required tube diameters, heat input and submergence ratio….). That will result in a successful bubble pump design and hence a refrigeration unit. In the present work a one-dimensional two-fluid model of boiling mixing ammonia-water under constant heat flux is developed. The present model is used to predict the outlet liquid and vapor velocities and pumping ratio for different heat flux input to pump. The influence of operated conditions such as: ammonia fraction in inlet solution and tube diameter on the functioning of the bubble pump is presented and discussed. It was found that, the liquid velocity and pumping ratio increase with increasing heat flux, and then it decreases. Optimal heat flux depends namely on tube diameter variations. Vapour velocity increases linearly with increasing heat flux under designed conditions.
机译:数学模型将能够预测运行条件(所需的管径,热量输入和浸入比……)。这将导致成功的气泡泵设计,从而实现制冷单元。在本工作中,建立了在恒定热通量下沸腾混合氨水的一维两流体模型。本模型用于预测不同热通量输入到泵的出口液体和蒸汽速度以及泵送比。提出并讨论了操作条件的影响,例如:入口溶液中的氨含量和管直径对气泡泵功能的影响。发现,液体速度和泵送率随热通量的增加而增加,然后降低。最佳热通量即取决于管直径的变化。在设计条件下,蒸气速度随热通量的增加而线性增加。

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