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基于欧拉壁面液膜模型的管内蒸汽冷凝流动和液膜特性的数值模拟研究

Numerical Simulation of Steam Condensation Flow and Liquid Film Characteristics in Tubes Based on Euler Wall Liquid Film Model

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【作者】 谷雨龚路远郭亚丽沈胜强

【Author】 GU Yu;GONG Luyuan;GUO Yali;SHEN Shengqiang;Key Laboratory of Liaoning Province for Desalination, Dalian University of Technology;

【通讯作者】 郭亚丽;

【机构】 大连理工大学辽宁省海水淡化重点实验室

【摘要】 采用ANSYS FLUENT软件建立了基于欧拉壁面液膜模型的光滑管内蒸汽冷凝流动过程的三维数学模型。模拟管长为500 mm,内径为38 mm。模拟工况为入口蒸汽饱和温度分别为70℃,总传热温差为5℃和7℃,入口蒸汽速度为14~20 m/s。模拟结果表明,液膜厚度在管道底部随着流动距离的增加而增加,液膜厚度在管顶部先增大后趋于稳定,更大的蒸汽入口速度产生更高的液膜厚度。液膜流动速度在管道底部随着流动距离的增加而增加,液膜流动速度在管顶部先增大后缓慢降低,更大的蒸汽入口速度产生更高的液膜流动速度。

【Abstract】 A three-dimensional mathematical model of steam condensation flow in a smooth tube based on Euler’s liquid film model was established by using ANSYS FLUENT software. The simulated pipe is 500 mm in length and 38 mm in diameter. Under simulated conditions, the saturation temperature of inlet steam is 70℃, the total heat transfer temperature difference is 5℃ and 7℃,and the inlet steam speed is 14~20 m/s. The simulation results show that the liquid film thickness increases with the increase of the flow distance at the bottom of the pipe, and the liquid film thickness increases first and then becomes stable at the top of the pipe. The larger steam inlet velocity produces higher liquid film thickness. The liquid film flow velocity increases with the increase of the flow distance at the bottom of the pipe, and the liquid film flow velocity increases first and then slowly decreases at the top of the pipe. A larger steam inlet velocity produces a higher liquid film flow velocity.

【基金】 国家自然科学基金重点项目(No.51936002);中央高校基本科研业务费资助(No.DUT21LAB128)
  • 【文献出处】 工程热物理学报 ,Journal of Engineering Thermophysics , 编辑部邮箱 ,2024年03期
  • 【分类号】TK124
  • 【下载频次】27
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