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超疏水表面防结冰结霜性能的研究进展
  • ISSN号:1005-023X
  • 期刊名称:《材料导报》
  • 时间:0
  • 分类:O357.52[理学—流体力学;理学—力学] Q512.101[生物学—生物化学]
  • 作者机构:[1]Department of Mechanics, Tianjin University, Tianjin, 30072, China, [2]Department of Engineering Mechanics, School of Aerospace, Tsinghua University, Beijing 100190, China, [3]Tianjin Key Laboratory of Modern Engineering Mechanics, Tianjin 30072, China
  • 相关基金:Acknowledgments This work was supported by the National Natural Sci- ence Foundation of China (11272233, 11272176, 11411130150, and 11332006 (key project)), National Basic Research Program (973Program) (2012CB720101 and 2012CB720103).
中文摘要:

This study aims at the mechanism of drag reduction in turbulent boundary layer(TBL) with superhydrophobic surface.Comparing the time-resolved particle image velocimetry(TRPIV) measurement results with that of hydrophilic surface,the drag reduction rate over a superhydrophobic surface is approximately10%.To investigate the characteristics of coherent structure in a drag-reduced TBL with superhydrophobic surface,a modified multi-scale spatial locally-averaged structure function is proposed for detecting coherent structure.The conditional sampling and spatial phase-lock average methods are employed to obtain the topology of physical quantities like the velocity fluctuation,spanwise vorticity,and Reynolds stress during eject and sweep process.The results indicate that the suppression of coherent structure burst in the near-wall region is the key mechanism in reducing the skin friction drag for TBL over superhydrophobic surface.

英文摘要:

This study aims at the mechanism of drag reduction in turbulent boundary layer (TBL) with superhy- drophobic surface. Comparing the time-resolved particle image velocimetry (TRPIV) measurement results with that of hydrophilic surface, the drag reduction rate over a superhydrophobic surface is approximately 10%. To investigate the characteristics of coherent structure in a drag-reduced TBL with superhydropho- bic surface, a modified multi-scale spatial locally-averaged structure function is proposed for detecting coherent structure. The conditional sampling and spatial phase-lock average methods are employed to obtain the topology of physical quantities like the velocity fluctuation, spanwise vorticity, and Reynolds stress during eject and sweep process. The results indicate that the suppression of coherent structure burst in the near-wall region is the key mechanism in reducing the skin friction drag for TBL over super- hydrophobic surface.

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期刊信息
  • 《材料导报:纳米与新材料专辑》
  • 主管单位:重庆西南信息有限公司(原科技部西南信息中心)
  • 主办单位:重庆西南信息有限公司(原科技部西南信息中心)
  • 主编:
  • 地址:重庆市渝北区洪湖西路18号
  • 邮编:401121
  • 邮箱:matreved@163.com
  • 电话:023-67398525
  • 国际标准刊号:ISSN:1005-023X
  • 国内统一刊号:ISSN:50-1078/TB
  • 邮发代号:
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  • 被引量:3397