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螺旋板换热器轴向错流通道湿法捕尘拟均相模型
引用本文:徐其鹏,桂月明,朱家骅,程远贵,夏素兰.螺旋板换热器轴向错流通道湿法捕尘拟均相模型[J].化工学报,2014,65(2):430-436.
作者姓名:徐其鹏  桂月明  朱家骅  程远贵  夏素兰
作者单位:四川大学化工学院, 四川 成都 610065
基金项目:国家自然科学基金项目(21276161);中央高校基本科研专项(2010SCU22008)。
摘    要:提出了螺旋板换热器轴向错流通道冷却冷凝湿法除尘的方法,指出了PM2.5在尾气对流传热传质边界层内热泳和伴随水蒸气冷凝的扩散泳运动特征和冷凝液膜吸收除尘机理并建立了拟均相模型,获得了PM2.5浓度衰减函数和以冷凝通量nw为参数的捕尘效率模型。通过“三传”类比获得了从尾气流速求取模型参数的方法,并通过恒壁温条件下冷却冷凝实验数据验证了模型参数计算方法的正确性,结果表明水蒸气组分扩散体积通量即PM2.5扩散泳速度Vw是控制性参数,其值在20~40 mm·s-1范围。

关 键 词:螺旋板换热器  轴向错流  冷却冷凝  湿法除尘  拟均相模型  
收稿时间:2013-04-15
修稿时间:2013-06-03

Pseudo-homogeneous model for wet process of dust removal in spiral plate exchanger with axial-cross flow
XU Qipeng,GUI Yueming,ZHU Jiahua,CHENG Yuangui,XIA Sulan.Pseudo-homogeneous model for wet process of dust removal in spiral plate exchanger with axial-cross flow[J].Journal of Chemical Industry and Engineering(China),2014,65(2):430-436.
Authors:XU Qipeng  GUI Yueming  ZHU Jiahua  CHENG Yuangui  XIA Sulan
Affiliation:School of Chemical Engineering, Sichuan University, Chengdu 610065, Sichuan, China
Abstract:A wet process of PM2.5 removal from industrial waste gases was proposed, with cooling and condensation in the axial channel of a spiral plate exchanger. The characteristics of thermo-phoresis and diffusion-phoresis of PM2.5 with vapor component in the boundary layer of heat and mass transfer were pointed out. A pseudo-homogeneous model was built based on the mechanism on dust removal by condensate film absorption. Subsequently, the attenuation function of PM2.5 concentration was deduced. The dust removal efficiency equation, with the condensate flux nw and the waste gas inlet velocity u0 as the variables, was obtained. Parameters in the model were derived by means of analogies of momentum, heat and mass transfer, and verified with the experimental data of cooling and condensation under constant wall temperatures. It is shown that the key factor is the vapor diffusion volume flux (or called PM2.5 diffusion-phoresis velocity) Vw with the magnitude of 20—40 mm·s-1.
Keywords:spiral plate exchanger  axial-cross flow  cooling and condensation  wet dust removal  pseudo-homogeneous model
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