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EXPERIMENTAL STUDY OF SWIRL COOLING FLOW ON A CIRCULAR CHAMBER USING 3-D STEREO-PIV

机译:3-D STEREO-PIV在圆形腔室中旋流冷却流动的实验研究

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Experimental study of a swirl flow using 3-D Stereo-PIV (Particle Image Velocimetry) that models a gas turbine blade internal cooling configuration is presented. The work is intended to provide an understanding of the advancements of swirl cooling flow methodology utilizing 3-D Stereo-PIV. The study aims at determining the critical swirl number that has the potential to deliver the maximum heat transfer results. In the swirl cooling flow methodology, cooling air is routed to the turbine blades where it passes through the blade's internal passages lowering the temperature. An experimental setup with seven discrete tangential jets at three different Reynolds numbers is designed to allow detail measurements of the flow. To provide the particles for velocity measurements an oil particle seeder (LAVision) is used. The circular chamber is made of clear acrylic to allow visualization of the flow phenomena. Data is post-processed in DaVis, velocity calculations are conducted in MATLAB, and TechPlot is used for data visualization. This investigation focuses on the continuous swirl flow that must be maintained via continuous injection of tangential flow, where swirl flow is generated with seven inlets and decays with downstream distance. It was also determined that the critical swirl number, Sn, depends greatly on the location and size of the tangential slots.
机译:提出了使用3-D Stereo-PIV(颗粒图像测速法)对燃气轮机叶片内部冷却结构进行建模的旋流的实验研究。这项工作旨在提供对利用3-D Stereo-PIV的旋流冷却流方法学进展的理解。该研究旨在确定可能产生最大传热结果的临界旋流数。在涡旋冷却流方法中,冷却空气被引导至涡轮机叶片,并在其中通过叶片的内部通道,从而降低温度。设计了具有三个不同雷诺数的七个离散切向射流的实验装置,可以对流量进行详细测量。为了提供用于速度测量的颗粒,使用了油颗粒播种机(LAVision)。圆形腔室由透明的丙烯酸制成,以使流动现象可视化。数据在DaVis中进行后处理,速度计算在MATLAB中进行,而TechPlot用于数据可视化。这项研究的重点是必须通过连续注入切向流来维持连续的旋流,其中产生的旋流具有七个入口,并随着下游距离而衰减。还可以确定,临界涡流数Sn很大程度上取决于切向缝的位置和大小。

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