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  • 中国标准连:ISSN1005-2895
  • 续出版物号: CN 33-1180/TH
  • 主管单位:轻工业杭州机电设计研究院有限公司
  • 主办单位:轻工业杭州机电设计研究院有限公司、中国轻工机械协会、中国轻工业机械总公司
  • 社  长:刘安江
  • 主  编:黄丽珍
  • 地  址:杭州市余杭区高教路970号西溪联合科技广场4-711
  • 电子邮件:qgjxzz@126.com
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石迎迎, 赵巍, 袁雨文, 张华, 潘书毅, 袁兴阳.波纹节距对板壳式换热器壳程流动性能和阻力性能的影响[J].轻工机械,2021,39(5):32-36
波纹节距对板壳式换热器壳程流动性能和阻力性能的影响
Numerical Simulation of Effect of Corrugated Pitch on Shell Side Flow and Resistance Performance of Plate Shell Heat Exchanger
  
DOI:10.3969/j.issn.1005 2895.2021.05.006
中文关键词:  板壳式换热器  波纹节距  流动性能  阻力性能
英文关键词:plate shell heat exchanger  corrugated pitch  flow performance  resistance performance
基金项目:国家重点研发计划(2020YFF0303900)。
作者单位
石迎迎, 赵巍, 袁雨文, 张华, 潘书毅, 袁兴阳 1.上海理工大学 能源与动力工程学院 上海200093 2.上海市质量监督检验技术研究院 上海201114 
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中文摘要:
      为了对板壳式换热器进行优化设计,课题组以某型号板壳式换热器的壳侧流道为研究对象,建立单流道物理模型,采用FLUENT软件对壳侧流体的流动性能和阻力性能进行模拟研究。模拟结果表明:随波纹节距的增大,流体流线由十字交叉流逐渐转为曲折流,流体平均流速和湍动能逐渐减小;波纹节距为3.9 mm时流动性能较好。随波纹节距的增大,压降逐渐减小。在同一波纹节距下,随着雷诺数的增大压降逐渐增大;波纹节距为15.9 mm时,阻力性能较好。减小节距可以得到较好的壳程流动性能;增大节距可以得到较好的壳程阻力性能。
英文摘要:
      In order to optimize the plate shell heat exchanger, the shell side flow channel of a certain type of plate shell heat exchanger was taken as the research object, and the single channel physical model was established to simulate the flow performance and resistance performance of shell side fluid with FLUENT software. The simulation results show that with the increase of corrugated pitch, the flowing streamline changes from crisscross pattern into zigzag pattern, the average velocity and turbulent kinetic energy of fluid accordingly decrease gradually. When the corrugated pitch is 3.9 mm, the better flowing performance can be obtained. The pressure drop will decrease with the growing corrugated pitch. Under the same corrugated pitch, the pressure drop increases with the increase of Reynolds number. When the corrugated pitch reaches 15.9 mm, the resistance performance is relatively good. Better shell side flowperformance can be obtained by decreasing the pitch, while better shell side resistance performance can be obtained by increasing the pitch.
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