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October 18, 2025Journal of Physics Conference Series0 citationsOpen Access

Heat Transfer of a Cylinder with Double-sided Splitter Plates in a Cross Flow of Air

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TKTze Cheng KuehMonash University MalaysiaWLWhitney S. LooUniversity of Wisconsin–MadisonBLBoon Kian LimMultimedia University

Key Points

  • Heat transfer coefficients increased by up to 153% with splitter plates added to the circular cylinder.
  • Findings showed heat transfer performance improved with higher Reynolds numbers, specifically at 7850, 13650, and 17500.
  • Experimental study was conducted in a wind tunnel to assess thermal aspects of airflow over a heated cylinder.
  • Results underline the importance of boundary layer theory in understanding heat transfer dynamics in flow environments.

Abstract

Abstract Recirculation and low-pressure regions associated to flow over bluff bodies such as circular cylinder have resulted in form drag dominance. Splitter plates attachment to cylinder has been found as a promising passive control technique to mitigate such effects. This study aims to examine the implications of splitter plates on the thermal aspects of the flow over a heated cylinder in cross flow, exploring experimentally the effects of wake splitter on the heat transfer coefficients. The experiment was carried out in the wind tunnel for three different Reynolds numbers around 7850, 13650, and 17500. The findings indicated that while the heat transfer performance improves with increasing Re , the addition of splitter plates has augmented the heat transfer coefficients by up to 34%, 77% and 153% for the respective geometry with rear plate, front plate and double plates incorporated to the circular cylinder. The results were explained from the perspective of boundary layer theory. Future work may investigate the local heat transfer coefficient variation with the azimuthal angle of the circular cylinder in cross flow.

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Cite This Study

Kueh et al. (2025) studied this question.

synapsesocial.com/papers/68f408995de60f8893c6fe47https://doi.org/10.1088/1742-6596/3127/1/012016
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