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首页> 外文期刊>Journal of turbomachinery >The Optimal Distribution of Chordwise Rib Fin Arrays for Blade Tip Cap Underside Cooling
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The Optimal Distribution of Chordwise Rib Fin Arrays for Blade Tip Cap Underside Cooling

机译:叶片顶盖下侧冷却的弦向肋鳍阵列的最佳分布

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摘要

A fundamental question in the design of fin-augmented heat transfer surfaces is how to determine the optimal spacing between the fins. It has already been demonstrated that considerable heat transfer augmentation in the underside of a high-pressure turbine (HPT) blade tip cap can be achieved using arrays of discrete shaped pins (Bunker, 2008, "The Augmentation of Internal Blade Tip-Cap Cooling by Arrays of Shaped Pins," ASME J. Turbomach., 130(4), p. 041007). However, it is desirable to predict the maximum heat transfer augmentation that can be achieved by installing the array of fins and the geometric arrangement (fin-to-fin spacing) that has to be used to achieve such augmentation. In this paper chordwise parallel ribs installed on the underside of a blade tip cap are studied. The objective is to maximize the overall thermal conductance between the fin array and the surrounding fluid. The optimization is performed numerically in the range 25,000 <Re< 100,000 and Pr = 0.72. The behavior of the optimal spacing data is explained and correlated analytically using the method of intersecting the two asymptotes: small spacing and large spacing heat transfer (Bejan and Morega, 1994, "The Optimal Spacing of a Stack of Plates Cooled by Turbulent Forced Convection," Int. J. Heat Mass Trans., 37, pp. 1045-1048).
机译:散热片增强的传热表面设计中的一个基本问题是如何确定散热片之间的最佳间距。已经证明,使用离散形状的销阵列可以在高压涡轮(HPT)叶片梢盖的下侧实现显着的传热增强(Bunker,2008年,“通过异型销的阵列,” ASME J.Turbomach。,130(4),第041007页)。然而,期望预测通过安装鳍片阵列和必须用于实现这种增加的几何布置(鳍片到鳍片的间隔)可以实现的最大传热增加。在本文中,研究了安装在叶片顶端盖下侧的弦向平行肋。目的是使鳍片阵列与周围流体之间的总热导率最大化。在25,000 <Re <100,000和Pr = 0.72的范围内以数值方式执行优化。最佳间距数据的行为通过以下两种渐近线相交的方法进行了解释和分析相关:小间距和大间距传热(Bejan和Morega,1994,“通过湍流强迫对流冷却的板的最佳间距, Int.J.Heat Mass Trans。,第37卷,第1045-1048页)。

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