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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal design of a tray-type distillation column of an ammonia/water absorption refrigeration cycle
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Thermal design of a tray-type distillation column of an ammonia/water absorption refrigeration cycle

机译:氨/水吸收式制冷循环的塔盘式蒸馏塔的热设计

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摘要

The goal of this paper is to present an analysis of a segmented weir sieve-tray distillation column for a 17.58 kW (5 TR) ammonia/water absorption refrigeration cycle. Balances of mass and energy were performed based on the method of Ponchon-Savarit, from which it was possible to determine the ideal number of trays. The analysis showed that four ideal trays were adequate for that small absorption refrigeration system having the feeding system to the column right above the second tray. It was carried out a sensitivity analysis of the main parameters. Vapor and liquid pressure drop constraint along with ammonia and water mass flow ratios defined the internal geometrical sizes of the column, such as the column diameter and height, as well as other designing parameters. Due to the lack of specific correlations, the present work was based on practical correlations used in the petrochemical and beverage production industries. The analysis also permitted to obtain the recommended values of tray spacing in order to have a compact column. The geometry of the tray turns out to be sensitive to the charge of vapor and, to a lesser extent, to the load of the liquid, being insensible to the diameter of tray holes. It was found a column efficiency of 50%. Finally, the paper presents some recommendations in order to have an optimal geometry for a compact size distillation column.
机译:本文的目的是针对17.58 kW(5 TR)的氨/水吸收式制冷循环,对分段堰筛-塔式蒸馏塔进行分析。质量和能量的平衡是根据Ponchon-Savarit的方法进行的,由此可以确定理想的塔盘数。分析表明,四个理想的塔板足以满足该小型吸收式制冷系统的需要,该系统的进料系统应位于第二个塔板的正上方。进行了主要参数的敏感性分析。蒸汽和液体的压降限制以及氨和水的质量流量比定义了色谱柱的内部几何尺寸,例如色谱柱的直径和高度,以及其他设计参数。由于缺乏具体的相关性,本研究基于石化和饮料生产行业中使用的实际相关性。该分析还允许获得塔盘间距的推荐值,以使色谱柱紧凑。事实证明,塔盘的几何形状对蒸气的电荷敏感,并且在较小程度上对液体的负载敏感,对塔盘孔的直径不敏感。发现柱效为50%。最后,本文提出了一些建议,以使紧凑型蒸馏塔具有最佳的几何形状。

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