首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.4 pt.A; 20070514-17; Montreal(CA) >EFFECT OF TRENCH WIDTH AND DEPTH ON FILM COOLING FROM CYLINDRICAL HOLES EMBEDDED IN TRENCHES
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EFFECT OF TRENCH WIDTH AND DEPTH ON FILM COOLING FROM CYLINDRICAL HOLES EMBEDDED IN TRENCHES

机译:沟槽宽度和深度对沟槽中嵌入孔的膜冷却的影响

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The present study is an experimental investigation of film cooling from cylindrical holes embedded in transverse trenches. Different trench depths are considered with two trench widths. Trench holes can occur when blades are coated with thermal barrier coating (TBC) layers. The film hole performance and behavior will be different for the trench holes compared to standard cylindrical holes that are flush with the surface. The trench width and depth depends on the mask region and the thickness of the TBC layer. Detailed heat transfer coefficient and film effectiveness measurements are obtained simultaneously using a single test transient IR thermography technique. The study is performed at a single mainstream Reynolds number based on free-stream velocity and film hole diameter of 11000 at four different coolant-to-mainstream blowing ratios of 0.5, 1.0, 1.5 and 2.0. The results show that film effectiveness is greatly enhanced by the trenching due to improved two dimensional nature of the film and lateral spreading. The detailed heat transfer coefficient and film effectiveness contours provide a clear understanding of the jet-mainstream interactions for different hole orientations. CFD simulation using Fluent was also performed to determine the jet mainstream interactions to better understand the surface heat transfer coefficient and film effectiveness distributions.
机译:本研究是从横向沟槽中嵌入的圆柱孔冷却薄膜的实验研究。考虑具有两个沟槽宽度的不同沟槽深度。当叶片上涂有隔热涂层(TBC)时,可能会出现沟槽。与与表面齐平的标准圆柱孔相比,沟槽孔的膜孔性能和性能将有所不同。沟槽的宽度和深度取决于掩模区域和TBC层的厚度。使用单个测试瞬态红外热成像技术可同时获得详细的传热系数和薄膜有效性测量结果。这项研究是基于自由流速度和11000的膜孔直径,在四种不同的冷却剂与主流吹胀比分别为0.5、1.0、1.5和2.0的情况下,在单一主流雷诺数下进行的。结果表明,由于改善了膜的二维性质和横向扩展,通过开沟大大提高了膜的有效性。详细的传热系数和薄膜有效性等高线清楚地了解了不同孔方向的射流-主流相互作用。还使用Fluent进行了CFD模拟,以确定射流主流相互作用,以更好地了解表面传热系数和薄膜有效性分布。

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