化工学报 ›› 2004, Vol. 55 ›› Issue (5): 699-703.

• 传递现象 • 上一篇    下一篇

纵流壳程换热器的三维流场

王定标; 向飒; 董其伍; 刘敏珊; 魏新利   

  1. 郑州大学化工学院,河南 郑州 450002
  • 出版日期:2004-05-25 发布日期:2004-05-25

FLOW FIELD IN HEAT EXCHANGER WITH LONGITUDINAL FLOW OF SHELL-SIDE

WANG Dingbiao;XIANG Sa;DONG Qiwu;LIU Minshan;WEI Xinli   

  • Online:2004-05-25 Published:2004-05-25

摘要: 根据纵流壳程换热器的结构特点和流动特点,提出其简化的物理模型;基于黏性流体力学基本方程,建立了流体流动和传热的数学模型;采用Galerkin有限元法,利用算子分裂思想,推导出离散化方程组. 为了验证数值模拟的正确性,利用两维激光多普勒测速仪对纵流壳程换热器 7个截面上壳程流体的流速进行了测试,将数值解和实验解进行比较,误差控制在7%~20%,两者基本吻合.实验表明:将纵流壳程换热器分为进口段、周期性发展段、出口段3段进行数值模拟是可行的;数值计算理论和程序是正确的.

关键词: 纵流壳程换热器, 数值模拟, 有限元法, 算子分裂

Abstract: Based on the flow characteristics and a structural characteristics of a heat exchanger with longitudinal flow of shell-side(HELFS),simplified physical model of HELFS is presented.The mathematical model is set up on the basis of the governing equations of viscous hydromechanics.By adopting the operator splitting algorithms,the Galerkin finite element method is used to deduce the discrete equations.In order to verify the calculated fluid flow field of HELFS, the Laser Doppler Velocimetry (LDV) is used to measure the local fluid velocity values on seven sections of shell-side of HELFS.The calculation result is in good agreement with experimental data, with error of 7%—20%.It is feasible to do numerical simulation by separating HELFS into heat import section,cyclic development section and export section.The theory and procedure of numerical calculation are correct in number value.

Key words: 纵流壳程换热器, 数值模拟, 有限元法, 算子分裂