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首页> 外文期刊>Journal of turbomachinery >Effects of Geometry, Spacing, and Number of Pin Fins in Additively Manufactured MicroChannel Pin Fin Arrays
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Effects of Geometry, Spacing, and Number of Pin Fins in Additively Manufactured MicroChannel Pin Fin Arrays

机译:增材制造的微通道引脚鳍阵列中的几何形状,间距和引脚鳍数量的影响

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摘要

The demand for higher efficiency is ever present in the gas turbine field and can be achieved through many different approaches. While additively manufactured parts have only recently been introduced into the hot section of a gas turbine engine, the manufacturing technology shows promise for more widespread implementation since the process allows a designer to push the limits on capabilities of traditional machining and potentially impact turbine efficiencies. Pin fins are conventionally used in turbine airfoils to remove heat from locations in which high thermal and mechanical stresses are present. This study employs the benefits of additive manufacturing to make uniquely shaped pin fins, with the goal of increased performance over conventional cylindrical pin fin arrays. Triangular, star, and spherical shaped pin fins placed in microchannel test coupons were manufactured using direct metal laser sintering (DMLS). These coupons were experimentally investigated for pressure loss and heat transfer at a range of Reynolds numbers. Spacing, number of pin fins in the array, and pin fin geometry were variables that changed pressure loss and heat transfer in this study. Results indicate that the additively manufactured triangles and cylinders outperform conventional pin fin arrays, while stars and dimpled spheres did not.
机译:在燃气轮机领域中一直存在对更高效率的需求,并且可以通过许多不同的方法来实现。尽管增材制造的零件直到最近才被引入到燃气涡轮发动机的热部件中,但制造工艺显示出有望实现更广泛的应用,因为该工艺使设计人员能够突破传统机加工能力的极限,并可能影响涡轮效率。针翅片通常用于涡轮机翼型中,以从存在高热应力和机械应力的位置散热。这项研究利用增材制造的优势来制造形状独特的销钉鳍,目的是提高性能,使其优于传统的圆柱销钉鳍阵列。使用直接金属激光烧结(DMLS)制造放置在微通道测试样片中的三角形,星形和球形针状鳍片。在一定的雷诺数下,对这些试样进行了压力损失和传热的实验研究。间距,阵列中针状鳍片的数量以及针状鳍片的几何形状是改变压力损失和传热的变量。结果表明,加法制造的三角形和圆柱体的性能优于常规的针状鳍片阵列,而星形和凹形球体则不如常规。

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