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Preliminary Experimentation on Wall Bounded Harbor Seal Whisker Inspired Pin Geometries

机译:墙壁有界港口封印晶须灵感销几何形状的初步实验

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Circular cylindrical pins are one of the most widely used geometries in convection cooling systems and are used in the internal cooling of gas turbine blades and other applications, as they promote better heat transfer at the expense of large pressure losses and unsteadiness in the flow. The need to reduce pressure drop and maintain the heat transfer rates are a pressing requirement for a variety of industries to improve their cooling efficiency. One such prominent field of research is conducted in optimizing the design of pin geometries. In this study, a harbor seal whisker inspired geometry is being studied for their unsteady behavior in an internal cooling channel. The seal whisker geometry consists of streamwise and spanwise undulations which reduce the size of the wake and coherent structures shed from the body as a result of an added component of stream-wise vorticity along the pin surface. Also, the vortex shedding frequency becomes less pronounced, leading to significantly reduced lateral loading on the modified cylinder. Previous computational studies have shown that the bio - mimicked pin geometries break down the wake structure and there is a reduction in development of turbulent intensity downstream of the channel leading to a lower pressure loss. This study intends to compare the computational results with experimental data. These findings are important to the gas turbine community as reduced penalties associated with cooling flows directly translate to improved efficiencies.
机译:圆柱形销是对流冷却系统中使用最广泛的几何形状之一,并且用于燃气轮机叶片和其他应用的内部冷却,因为它们以牺牲大的压力损失和流动中不稳定的牺牲促进更好的热传递。需要减少压降并保持传热速率是各种行业的压迫要求,以提高其冷却效率。在优化销几何形状设计时进行了一个如此突出的研究领域。在这项研究中,正在研究内部冷却通道中的不稳定行为的港口密封晶须灵感的几何形状。密封晶须几何形状由流动和始线的起伏组成,其由于沿着销表面的流明智涡度的添加成分而减小了从身体的唤醒和相干结构的尺寸。此外,涡旋脱落频率变得不那么明显,导致改性圆筒上的横向负载显着降低。以前的计算研究表明,生物模拟的销几何形状分解唤醒结构,并且在通道下游的湍流强度的发展减少导致较低的压力损失。本研究打算将计算结果与实验数据进行比较。这些发现对于燃气轮机群落重要的是与冷却流相关的降低的降低,直接转化为提高效率。

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