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首页> 外文期刊>Journal of turbomachinery >Multi-Pass Serpentine Cooling Designs for Negating Coriolis Force Effect on Heat Transfer: Smooth Channels
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Multi-Pass Serpentine Cooling Designs for Negating Coriolis Force Effect on Heat Transfer: Smooth Channels

机译:多通蛇形冷却设计,用于否定科里奥利力效应传热:平滑通道

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摘要

The combined action of Coriolis and centrifugal buoyancy forces results in nonuniform heat transfer coefficient on pressure and suction side internal walls, hence leading to nonuniform metal temperatures and increased thermal stresses. The present study addresses the problem of nonuniform heat transfer distribution due to rotation effect and proposes novel designs for serpentine cooling passages, which are arranged along the chord of the blade. The two configurations were four-passage and six-passage serpentine smooth channels. Detailed heat transfer coefficients were measured using transient liquid crystal thermography under stationary and rotating conditions. Heat transfer experiments were carried out for Reynolds numbers ranging from 12,294 to 85,000 under stationary conditions. Rotation experiments were carried out for the Rotation numbers of 0.05 and 0.11. Heat transfer enhancement levels of approximately two times the Dittus-Boelter correlation (for developed flow in smooth tubes) were obtained under stationary conditions. Under rotating conditions, we found that the four-passage configuration had slightly lower heat transfer compared with the stationary case, and the six-passage configuration had higher heat transfer on both the leading and trailing sides compared with the stationary case. The leading and trailing side heat transfer characteristics were near-similar to each other for both the configurations, and the rotating heat transfer was near-similar to the stationary condition heat transfer.
机译:Coriolis和离心浮力力的组合作用导致压力和吸入侧内壁上的非均匀传热系数,因此导致不均匀的金属温度和增加的热应力。本研究解决了由于旋转效果引起的非均匀传热分布的问题,并提出了蛇形冷却通道的新颖设计,该设计沿着叶片的弦布置。这两种配置是四通和六通蛇形光滑通道。使用静止和旋转条件下的瞬态液晶热成像测量详细的传热系数。在静止条件下为雷诺数进行传热实验,为12,294〜85,000进行。旋转实验进行0.05和0.11的旋转数。在静止条件下获得了在静止条件下获得了二次除可相关性(用于平滑管中发育流动的发达的流动的热传递增强水平。在旋转条件下,我们发现,与静止情况相比,四通道配置具有略微较低的传热,并且与静止情况相比,六通道配置在前导侧和后侧的传热较高。对于构造,前导和尾端传热特性彼此接近相似,并且旋转热传递与静止状态传热近似相似。

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  • 来源
    《Journal of turbomachinery》 |2019年第7期|071001.1-071001.14|共14页
  • 作者单位

    Virginia Tech Dept Mech Engn Adv Prop & Power Lab Blacksburg VA 24061 USA|North Carolina State Univ Dept Mech & Aerosp Engn Raleigh NC 27695 USA;

    Shanghai Jiao Tong Univ Sch Mech Engn Inst Turbomachinery Shanghai Peoples R China;

    North Carolina State Univ Dept Mech & Aerosp Engn Raleigh NC 27695 USA;

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