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A new technique for dynamic heat transfer measurements and flow visualization using liquid crystal thermography

机译:使用液晶热成像技术进行动态传热测量和流动可视化的新技术

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摘要

A new technique for dynamic heat transfer coefficient measurements and flow visualization is described. This technique uses a surface with a low thermal mass (a thin tissue) embedded with thermochromic liquid crystals (TLCs) and heated uniformly with infrared radiation. For air heat transfer coefficient measurements, the frequency response is estimated at 0.3-0.5 Hz. Depending on the local heat transfer coefficient and the magnitude of its fluctuations, it is estimated that surface temperature fluctuations can be detected to 100 Hz. These surface temperature fluctuations are driven by changes in local heat transfer coefficients, caused by dynamic flow behavior such as vortex shedding, and are captured by video recordings of the hue of the liquid crystals. The video images provide time-dependent heat transfer coefficient distribution and time-dependent surface flow visualization. Two applications are used to illustrate this technique: flow on a surface downstream of a protruding cylinder in cross-flow with vortex shedding, and flow downstream of a shallow cylindrical surface dimple. Images of the time-dependent surface temperature distribution downstream of the protruding cylinder are presented. They show the fluctuations in the surface heat transfer coefficient due to vortex shedding. The temperature distributions downstream of the cylindrical dimple were found to be relatively steady within the frequency limits of this technique. Heat transfer coefficient contours are presented for this case.
机译:描述了一种动态传热系数测量和流动可视化的新技术。该技术使用的表面是热质量较低的表面(薄组织),表面嵌入热致变色液晶(TLC),并通过红外辐射均匀加热。对于空气传热系数测量,频率响应估计为0.3-0.5 Hz。根据局部传热系数及其波动幅度,估计可以检测到100 Hz的表面温度波动。这些表面温度波动是由局部传热系数的变化驱动的,而局部传热系数的变化是由动态流动行为(例如涡流脱落)引起的,并被液晶色相的视频记录所捕获。视频图像提供了时间依赖性的传热系数分布和时间依赖性的表面流可视化。有两个应用程序用于说明此技术:在具有涡流脱落的错流的情况下,在突出圆柱体下游的表面上流动,以及在浅圆柱表面凹痕的下游进行流动。呈现了在时间上随时间变化的凸出圆柱体表面温度分布的图像。它们显示了由于涡旋脱落而引起的表面传热系数的波动。发现在该技术的频率范围内,圆柱形凹痕下游的温度分布相对稳定。给出了这种情况下的传热系数轮廓。

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