首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.2; 20040614-17; Vienna(AT) >HIGH RESOLUTION INFRARED THERMOGRAPHY FOR AIRFOILS BOUNDARY LAYER INSPECTION IN PASSIVE MODE
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HIGH RESOLUTION INFRARED THERMOGRAPHY FOR AIRFOILS BOUNDARY LAYER INSPECTION IN PASSIVE MODE

机译:被动模式下机翼边界层检查的高分辨率红外热成像

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摘要

In thermo-fluid-dynamics, the important role played by the boundary layer phenomena is well known. In order to set up an experimental tool, able to measure fluid dynamic magnitudes in the boundary layer, many efforts have been made and some advanced measurements have been developed. Since the mid-sixties, infrared thermography has been applied as a measurement technique. Primarily, this technique was used in space missions where the protection of space vehicles in the reentry phase was of prime importance. Nowadays, thermography is one of the most advanced non-intrusive measurement techniques and presents many advantages such as no-needs for particular settings of system under analysis. Therefore, considering that boundary layer continues to be a fundamental aspect in fluid-dynamics studies, the present work wants to dwell on the possibility to enlarge the application of the infrared measurement technique, in particular for subsonic flows in passive mode. These conditions point out important problems of measurement for the low energy content and for the type of thermal exchange that can not be simplified as it is traditionally made in supersonic flows. Either the possibility to operate with modern infrared cameras or the improvements of new theoretical models in the data reduction process will be described in this paper and an application to an airfoil will be presented. The measurement technique used in this paper can be applied to any aerodynamic profile and can be easily used as a non intrusive technique to characterize the flow fields of blade cascades for gas tubrines and turbomachinery in general.
机译:在热流体动力学中,边界层现象所起的重要作用是众所周知的。为了建立一种能够测量边界层中流体动力学强度的实验工具,已经做出了许多努力并且已经开发了一些先进的测量方法。从六十年代中期开始,红外热成像技术已被用作一种测量技术。最初,此技术用于太空飞行任务,在太空飞行中,重返阶段的航天器保护至关重要。如今,热成像技术是最先进的非侵入式测量技术之一,它具有许多优势,例如无需对分析系统进行特定设置。因此,考虑到边界层仍然是流体动力学研究的基本方面,本工作希望探讨扩大红外测量技术应用的可能性,特别是对于被动模式下的亚音速流。这些条件指出了低能量含量和热交换类型的重要测量问题,因为传统上是在超声速流动中进行的,因此无法简化这种交换。本文将介绍在现代红外热像仪上进行操作的可能性,或者在数据缩减过程中改进新的理论模型,并介绍其在机翼上的应用。本文中使用的测量技术可以应用于任何空气动力学剖面,并且可以很容易地用作非侵入性技术来表征一般用于汽油机和涡轮机械的叶片叶栅的流场。

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