首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >EXPERIMENTAL AND COMPUTATIONAL INVESTIGATION OF INTEGRATED INTERNAL AND FILM COOLING DESIGNS INCORPORATING A THERMAL BARRIER COATING
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EXPERIMENTAL AND COMPUTATIONAL INVESTIGATION OF INTEGRATED INTERNAL AND FILM COOLING DESIGNS INCORPORATING A THERMAL BARRIER COATING

机译:含有热屏障涂层的综合内膜冷却设计的实验和计算研究

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Few studies in the open literature have studied the effect of thermal barrier coatings when used in combination with shaped hole film cooling and enhanced internal cooling techniques. The current study presents RANS conjugate heat transfer simulations that identify trends in cooling design performance as well as experimental measurements of overall effectiveness using a flat-plate matched-Biot number model with a simulated TBC layer of 0.42D thickness, where D is the film cooling hole diameter. Coolant is fed to the film cooling holes in a co-flow configuration, and the results of both smooth and rib-turbulated channels are compared. At a constant coolant flow rate, enhanced internal cooling was found to provide a 44% increase in spatially-averaged overall effectiveness, Φ, without a TBC. The results show that the addition of a TBC can raise Φ on a film-cooled component surface by 47%. The optimum velocity ratio was found to decrease with the addition of enhanced cooling techniques and a TBC as the film provided minimal benefit at the expense of reduced internal cooling. While the computational results closely identified trends in overall system performance without a TBC, the model over-predicted effectiveness on the metal-TBC interface. The results of this study will inform turbine component design as material science advances increase the reliability of TBC.
机译:开放文献中的几项研究已经研究了热阻挡涂层的作用,当与成形孔膜冷却和增强的内部冷却技术相结合时。目前的研究呈现RAN缀合物传热模拟,其识别冷却设计性能的趋势以及使用平板匹配的-BIOT数模型具有0.42D厚度的模拟TBC层的整体有效性的实验测量,其中D是薄膜冷却孔直径。冷却剂以共流配置送入薄膜冷却孔,并比较光滑和肋湍流通道的结果。在恒定的冷却剂流速下,发现增强的内部冷却在没有TBC的情况下,在没有TBC的情况下提供44%的空间平均总体效果φ。结果表明,加入TBC可以在薄膜冷却的成分表面上升高47%。发现最佳速度比随着添加增强的冷却技术和TBC而减少,因为薄膜为牺牲内部冷却的牺牲提供了最小的益处。虽然计算结果密切地确定了整体系统性能的趋势,但没有TBC,模型过度预测了金属TBC接口的效果。本研究的结果将使涡轮机成分设计推动材料科学的提高提高了TBC的可靠性。

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