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Numerical investigation of effect of helix on high-speed steam condensation in square/circular channels

  • Xi'an Jiaotong University

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The present study focuses on the effect of helix on condensation in square/circular channels while the steam inlet velocity is as high as 100m·s -1. Three-dimensional physical models with the same axial length and hydraulic diameter but different helical parameters, including helical angles, helical diameters, helical distances, are established. Numerical method based on the VOF(volume of fluid) method, coupled with the SST k-ω turbulent flow model, is adopted. Moreover, a user-defined function defining the phase change is interpreted in the numerical method and the phase interface temperature is correspondingly assumed to be the saturation temperature as the condensation proceeds. Results indicate that the maximum velocity is much higher and the high velocity region is much larger in the helical channel. Outlet steam quality is mainly dependent on helical angle, it declines when the helical angle decreases. Under the same axial length, smaller helical angle results in larger heat exchange area which reinforces the condensation process. With the decrease of helical angle, the condensation heat transfer coefficient increases at first and then decreases, implicating that a best helical angle may exist that could strengthen the heat transfer efficiently. The best helical angle among the square and circular channels is different, hopefully that may provide guidance for industrial applications.

源语言英语
主期刊名Proceedings of the 2nd Thermal and Fluid Engineering Summer Conference, TFESC 2017 and 4th International Workshop on Heat Transfer, IWHT 2017
出版商Begell House Inc.
387-398
页数12
ISBN(电子版)9781567004700
出版状态已出版 - 2017
活动2nd Thermal and Fluid Engineering Summer Conference, TFESC 2017 and 4th International Workshop on Heat Transfer, IWHT 2017 - Las Vegas, 美国
期限: 2 4月 20175 4月 2017

出版系列

姓名Proceedings of the Thermal and Fluids Engineering Summer Conference
2017-April
ISSN(电子版)2379-1748

会议

会议2nd Thermal and Fluid Engineering Summer Conference, TFESC 2017 and 4th International Workshop on Heat Transfer, IWHT 2017
国家/地区美国
Las Vegas
时期2/04/175/04/17

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    可持续发展目标 7 经济适用的清洁能源

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