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Flow dead zone analysis and structure optimization for the trefoil-baffle heat exchanger

机译:三叶油挡板热交换器的流动死区分析及结构优化

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The distribution and volume fraction of the dead zones in the shell side of the trefoil-baffle heat exchanger were studied, and a structure optimization was presented to improve flow condition. By applying the residence time distribution method, the dead zones were analyzed quantitatively, and it is found that the volume fraction of dead zone is about 28% in the shell side of the trefoil-baffle heat exchanger, which is larger by about 13% than that in the shell side of the segmental baffle heat exchanger. According to the velocity contours in the shell side, the magnitude of the fluid velocity in the main flow region is much larger than that near wall, and the fluid near the shell wall flows in much slower velocity. The dead zones mainly distribute near the walls of shell and baffles. Another study was carried out adopting the unit duct model without concerning the influence of the shell wall, and it is shown that the volume fraction of the dead zone is less than 0.5%. It is concluded that the main dead zone in the shell side is near the wall of the shell. To reduce the main dead zone, an optimized structure of tube layout was presented, and it is found that the volume fraction of dead zone reduced by about 13% at the different flow rates. The methods and conclusions provide a reference for analysis of dead zone and structure improvement of heat exchangers.
机译:研究了三叶罩热交换器的壳侧中死区的分布和体积分数,并提出了结构优化以改善流动条件。通过施加停留时间分布方法,定量分析死区,发现死区的体积分数在三轴挡板热交换器的壳体侧的约28%,比较大约13%在节段挡板热交换器的壳侧。根据壳侧的速度轮廓,主流量区域中的流体速度的大小远远大于壁附近的速度,并且壳壁附近的流体流动速度较慢。死区主要分布在壳体和挡板墙附近。在不涉及壳壁的影响,采用单元管道模型进行另一个研究,并表明死区的体积分数小于0.5%。得出结论,壳牌侧的主死区靠近壳体的墙壁。为了减少主死区,提出了一种管布局的优化结构,发现死区的体积分数在不同流速下减少约13%。该方法和结论提供了分析死区和热交换器结构改进的参考。

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