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Absorption characteristics of falling film LiBr (lithium bromide) solution over a finned structure

机译:翅片结构上降膜溴化锂(LiBr)溶液的吸收特性

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In this study, an absorber design suitable for the plate-and-frame absorber configuration is introduced. The design utilizes a fin structure installed on a vertical flat plate to produce a uniform solution film and minimize its thickness and to continuously interrupt the boundary layer. Using numerical models supported by experiments employing dye visualization, the suitable fin spacing and size and surface wettability are determined. The solution flow thickness is measured using the laser confocal displacement measurement technique. The new surface structure is tested in an experimental absorption system. A significantly high absorption rate (6 x 10(-3) kg/m(2)s at a pressure potential of 700 Pa) is achieved in comparison with the conventional absorption systems. The effect of absorber water vapor pressure, solution flow rate, solution inlet concentration, cooling water inlet temperature and solution inlet temperature on the absorption rate is investigated. The proposed design provides a potential framework for development of highly compact absorption refrigeration systems. Published by Elsevier Ltd.
机译:在这项研究中,介绍了适用于板框式吸收器配置的吸收器设计。该设计利用安装在垂直平板上的鳍片结构来产生均匀的溶液膜,并使其厚度最小,并连续中断边界层。使用采用染料可视化的实验所支持的数值模型,可以确定合适的翅片间距,尺寸和表面润湿性。使用激光共焦位移测量技术测量溶液的流动厚度。在实验吸收系统中测试了新的表面结构。与传统的吸收系统相比,可获得很高的吸收率(在700 Pa的压力下为6 x 10(-3)kg / m(2)s)。研究了吸收塔水蒸气压力,溶液流量,溶液入口浓度,冷却水入口温度和溶液入口温度对吸收率的影响。提出的设计为开发高度紧凑的吸收式制冷系统提供了潜在的框架。由Elsevier Ltd.发布

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