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板波纹规整填料液相分布模型 被引量:3
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作者 谷芳 刘春江 +1 位作者 袁希钢 余国琮 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2005年第7期586-591,共6页
为研究板波纹规整填料内的液体流动状况,建立了相应的液相分布数学模型,并对4种板波纹规整填料的持液量和有效润湿面积进行了模拟计算及实验验证.结果表明,在无气相影响下,无论是均匀进料还是点源进料,液体在填料内的分布最终将达到稳... 为研究板波纹规整填料内的液体流动状况,建立了相应的液相分布数学模型,并对4种板波纹规整填料的持液量和有效润湿面积进行了模拟计算及实验验证.结果表明,在无气相影响下,无论是均匀进料还是点源进料,液体在填料内的分布最终将达到稳定的自然流状态,而有效润湿面积的模拟结果显示,无气相影响时,即使在很大液相负荷下填料片的有效润湿面积比也不会超过1.另外,降低液体表面张力有利于在填料片上形成较大的润湿面积,而液体黏度对润湿面积的影响不大. 展开更多
关键词 板波纹规整填料 液相分布模型 持液量 有效润湿面积
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Coalescence Behaviors of Drop Swarms on Liquid-Liquid Interface 被引量:4
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作者 唐洪涛 陈建平 崔世海 《Transactions of Tianjin University》 EI CAS 2011年第2期96-102,共7页
The trajectory model of dispersed phase drops and distribution model of drop diameters were derived.By numerical simulation,the analytical results indicate that a large number of dispersed phase drops accumulate on th... The trajectory model of dispersed phase drops and distribution model of drop diameters were derived.By numerical simulation,the analytical results indicate that a large number of dispersed phase drops accumulate on the upper plate in different directions and form a hydrodynamic area with the stream-wise location in the range of 0—0.4m,where the flow of trickling film obtains kinetic drive from flowing field.The flowing field of trickling film exhibits an unstable state if the stream-wise location is less than 0.02m,and a stable state otherwise.Moreover,different velocity vectors of drops in the x-y plane result in different interactions between the trickling film and drops.For the non-uniform distribution of drop diameters,there is a stronger interaction between the trickling film and drop if the stream-wise location is less than 0.02m,because the amplitudes of velocity vectors are higher than those in the range of 0.02—1.0m.The result reveals a complexity and diversity of stratified two-phase flowing field.On the other hand,both the basic flowing field and distributions of drop diameters have a great influence on the distributions of comparable kinetic energy of drops.The complicated motions of larger drops are helpful to coalescence because they will consume much more kinetic energy on the trickling film than those of smaller drops.The change of comparable kinetic energy of smaller drops is continuous and steady.The smaller drops are easily entrained by the liquid-liquid flowing field. 展开更多
关键词 TRAJECTORY COALESCENCE DROP DIAMETER distribution
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