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螺旋肋片自支撑换热器壳程性能数值分析
引用本文:吴金星,朱登亮,魏新利,王海峰.螺旋肋片自支撑换热器壳程性能数值分析[J].石油炼制与化工,2007,38(8):66-70.
作者姓名:吴金星  朱登亮  魏新利  王海峰
作者单位:郑州大学 郑州大学
基金项目:郑州大学校科研和教改项目;国家"211"工程建设项目
摘    要:为了分析螺旋肋片强化换热器壳程传热机理,用FLUENT软件分别建立了套管换热器和管束换热器的三维模型,模拟得到了壳程的传热和压降性能。数值结果表明,螺旋肋片强化传热的主要机理是螺旋肋片引起的螺旋流动使流体流速提高并产生二次流,减薄了速度边界层,促进了主流流体和边界层流体的掺混;换热管之间螺旋流动的相互影响进一步提高了换热器的传热系数;螺旋肋片的螺旋角和流体雷诺数对壳程努塞尔数和压降产生显著影响,应将螺旋角和雷诺数限制在一定的范围内。数值模拟结果与试验数据吻合较好。

关 键 词:换热器  螺旋肋片  自支撑  传热性能  数值模拟  
收稿时间:2007-2-15
修稿时间:2007-02-15

Numerical Analyses on the Shell-side Performance of the Helical Ribbed Self-support Type Heat Exchanger
Wu Jinxing,Zhu Dengliang,Wei Xinli,Wang Haifeng.Numerical Analyses on the Shell-side Performance of the Helical Ribbed Self-support Type Heat Exchanger[J].Petroleum Processing and Petrochemicals,2007,38(8):66-70.
Authors:Wu Jinxing  Zhu Dengliang  Wei Xinli  Wang Haifeng
Affiliation:Research Center of Energy Saving Technology ,Zhengzhou University , Zhengzhou 450001
Abstract:In order to investigate the mechanism of enhancing heat transfer efficiency by helical rib,3D models of double tube and tube-bundle heat exchangers are set up respectively using FLUENT software. The characteristics of flow field, heat transfer and pressure drop at the shell-side are simulated and compared with the test data. Results show that the increase of heat transfer efficiency by helical rib is due to the generation of helical flow, which accelerates the velocity of fluid flow and generates secondary flow,as a result,the fluid mixing between the main body and the boundary layer is enhanced and the thickness of boundary layer is reduced. The interaction of helical flows among heat exchange tubes can further enhance the heat transfer coefficient of heat exchanger. The helical angle of helical rib and Reynolds number has significant influences on shell-side Nusselt number and pressure drop. It is proposed that the helical angle and Reynolds number should be confined to a proper range. The numerical simulated results agree well with the experimental data.
Keywords:heat exchanger  helical rib  heat transfer  model
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