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A laser-induced heat flux technique for convective heat transfer measurements in high speed flows

机译:激光感应热通量技术,用于高速流动中的对流传热测量

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摘要

A technique is developed to measure the local convective heat transfer coefficient on a model surface in a supersonic flow field. The technique uses a laser to apply a discrete local heat flux at the model test surface, and an infrared camera system determines the local temperature distribution due to the heating. From this temperature distribution and an analysis of the heating process, a local convective heat transfer coefficient is determined. The technique was used to measure the local surface convective heat transfer coefficient distribution on a flat plate at nominal Mach numbers of 2.5, 3.0, 3.5, and 4.0. The flat plate boundary layer initially was laminar and became transitional in the measurement region. The experimentally determined convective heat transfer coefficients were generally higher than the theoretical predictions for flat plate laminar boundary layers. However, the results indicate that this nonintrusive optical measurement technique has the potential to measure surface convective heat transfer coefficients in high speed flow fields.
机译:开发了一种在超声速流场中测量模型表面上局部对流传热系数的技术。该技术使用激光在模型测试表面上施加离散的局部热通量,而红外热像仪系统确定由于加热而产生的局部温度分布。根据该温度分布和对加热过程的分析,可以确定局部对流传热系数。该技术用于测量标称马赫数为2.5、3.0、3.5和4.0的平板上的局部表面对流传热系数分布。平板边界层最初是层状的,并在测量区域内过渡。实验确定的对流换热系数通常高于平板层流边界层的理论预测值。但是,结果表明,这种非侵入式光学测量技术具有测量高速流场中表面对流传热系数的潜力。

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