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导向梯形喷射填料式塔板的流体力学与传质性能研究
引用本文:杨硕,舒亚胜,李群生,张保勇,石殷,程闯,亓军.导向梯形喷射填料式塔板的流体力学与传质性能研究[J].北京化工大学学报(自然科学版),2019,46(1):9-15.
作者姓名:杨硕  舒亚胜  李群生  张保勇  石殷  程闯  亓军
作者单位:北京化工大学化学工程学院,北京,100029;山东省淄博市高青县经信局,淄博,256300
摘    要:结合导向孔、填料和立体塔板的优点,设计了一种导向梯形喷射填料式塔板(FTS-PT),在直径为500 mm的有机玻璃塔内采用空气-水-氧气物系进行冷模实验,分别测定了4种梯形角度实验塔板的流体力学性能(包括干、湿板压降,清液层高度,漏液,雾沫夹带)和传质效率。根据实验数据拟合得到FTS-PT塔板的干、湿板压降关联式。与新型垂直筛板和F1浮阀塔板相比,FTS-PT塔板压降较低。综合比较4种角度的导向梯形喷射填料式塔板的流体力学性能和传质效率,结果表明当梯形帽罩倾斜角度为8°时,塔板综合性能最好。

关 键 词:导向梯形喷射填料式塔板(FTS-PT)  梯形角度  流体力学  传质效率
收稿时间:2018-05-16

Hydrodynamics and mass transfer performance of a flow-guided trapezoid spray-packing tray
YANG Shuo,SHU YaSheng,LI QunSheng,ZHANG BaoYong,SHI Yin,CHENG Chuang,QI Jun.Hydrodynamics and mass transfer performance of a flow-guided trapezoid spray-packing tray[J].Journal of Beijing University of Chemical Technology,2019,46(1):9-15.
Authors:YANG Shuo  SHU YaSheng  LI QunSheng  ZHANG BaoYong  SHI Yin  CHENG Chuang  QI Jun
Institution:1. College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029;2. Gaoqing County, Zibo City Commission by Letter, Zibo 256300, China
Abstract:A flow-guided trapezoid spray-packing tray (FTS-PT), combining the advantages of guide hole, packing, and vertical trays, has been designed. In a 500 mm-diameter Plexiglas tower, air-water-oxygen systems were used for cold-flow model experiments. Hydrodynamic parameters, including dry and wet pressure drop, clear liquid layer height, weeping, entrainment and mass transfer efficiency of the four trapezoidal angle experimental trays were measured. On the basis of the experimental data, regression models of dry and wet pressure drops of the FTS-PT were fitted. The pressure drop was lower than those of the new vertical sieve tray and the F1 valve tray. Comparison of the hydrodynamics and mass transfer efficiency of FTS-PT trays with four different angles showed that the performance was optimized when the trapezoidal angle was 8°.
Keywords:flow-guided trapezoid spray-packing tray (FTS-PT)                                                                                                                        trapezoidal angle                                                                                                                        hydrodynamics                                                                                                                        mass transfer efficiency
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