首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.3; 20040614-17; Vienna(AT) >THE TRANSIENT LIQUID CRYSTAL TECHNIQUE: INFLUENCE OF SURFACE CURVATURE AND FINITE WALL THICKNESS
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THE TRANSIENT LIQUID CRYSTAL TECHNIQUE: INFLUENCE OF SURFACE CURVATURE AND FINITE WALL THICKNESS

机译:瞬态液晶技术:表面曲率和有限壁厚的影响

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摘要

The transient liquid crystal technique is nowadays widely used for measuring the heat transfer characteristics in gas turbine applications. Usually, the assumption is made that the wall of the test model can be treated as a flat and semi-infinite solid. This assumption is correct as long as the penetration depth of the heat compared to the thickness of the wall and to the radius of curvature is small. However, those two assumptions are not always respected for measurements near the leading edge of a blade. This paper presents a rigorous treatment of the curvature and finite wall thickness effects. The unsteady heat transfer for a hollow cylinder has been investigated analytically and a data reduction method taking into account curvature and finite wall thickness effects has been developed. Experimental tests made on hollow cylinder models have been evaluated using the new reduction method as well as the traditional semi-infinite flat plate approach and a third method that approximately accounts for curvature effects. It has been found that curvature and finite thickness of the wall have in some cases a significant influence on the obtained heat transfer coefficient. The parameters influencing the accuracy of the semi-infinite flat plate model and the approximate curvature correction are determined and the domains of validity are represented.
机译:如今,瞬态液晶技术已广泛用于测量燃气轮机应用中的传热特性。通常,假设测试模型的壁可以视为平坦且半无限的实体。只要与壁的厚度和曲率半径相比,热量的渗透深度较小,该假设就是正确的。然而,在刀片前缘附近的测量中并不总是遵循这两个假设。本文对曲率和有限的壁厚效应进行了严格的处理。对空心圆柱体的非稳态传热进行了分析研究,并开发了一种考虑曲率和有限壁厚效应的数据缩减方法。在空心圆柱体模型上进行的实验测试已使用新的折减方法以及传统的半无限平板方法和近似考虑曲率影响的第三种方法进行了评估。已经发现,壁的曲率和有限的厚度在某些情况下对获得的传热系数有显着影响。确定了影响半无限平板模型的精度和近似曲率校正的参数,并表示了有效性范围。

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