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Enhanced heat and mass transfer in alternating structure of tubes and longitudinal trough mesh packing in lithium bromide solution absorber

机译:溴化锂溶液吸收器中管和纵向槽网状填料的交替结构中增强的传热和传质

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摘要

For enhancing the vapour absorption in LiBr solution systems, a novel absorber with tube and mesh packing alternating structure is designed and investigated. Stainless steel mesh screens are folded as the longitudinal trough mesh packing, and inserted to the gaps of horizontal tubes to make the absorbent flow through the tube and mesh packing regimes successively, thus forming an alternating heat and mass transfer absorption process. Experimental investigation is conducted to characterize the absorption performance of the absorption bodies of this alternating structure and conventional horizontal coils. The results show that the average mass transfer rate and cooling load are increased by 17.2% and 6.23% respectively, which confirms that the alternating structures can promote the absorption. The mesh packing provides extended absorption area, slows down the flow and well mingles the solution, which are all beneficial for vapour absorption. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:为了提高LiBr溶液系统中的蒸气吸收率,设计并研究了一种具有管和网状填料交替结构的新型吸收器。将不锈钢网筛折叠成纵向槽式网状填料,并插入水平管的间隙中,以使吸收剂依次流过管和网状填料状态,从而形成交替的传热和传质吸收过程。进行实验研究以表征该交替结构和常规水平线圈的吸收体的吸收性能。结果表明,平均传质速率和冷却负荷分别提高了17.2%和6.23%,这表明交替结构可以促进吸收。网状填料提供了更大的吸收面积,减慢了流动速度并很好地混合了溶液,所有这些都有利于蒸气吸收。 (C)2015 Elsevier Ltd和IIR。版权所有。

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