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Combined two-dimensional velocity and temperature measurements of natural convection using a high-speed camera and temperature-sensitive particles

机译:使用高速相机和温度敏感粒子对自然对流进行二维速度和温度的组合测量

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摘要

This paper proposes a combined method for two-dimensional temperature and velocity measurements in liquid and gas flows using temperature-sensitive particles (TSPs), a pulsed ultraviolet laser, and a high-speed camera. TSPs respond to temperature changes in the flow and can also serve as tracers for the velocity field. The luminescence from the TSPs was recorded at 15,000 frames per second as sequential images for a lifetime-based temperature analysis. These images were also used for the particle image velocimetry calculations. The temperature field was estimated using several images, based on the lifetime method. The decay curves for various temperature conditions fit well to exponential functions, and from these the decay constants at each temperature were obtained. The proposed technique was applied to measure the temperature and velocity fields in natural convection driven by a Marangoni force and buoyancy in a rectangular tank. The accuracy of the temperature measurement of the proposed technique was ±0.35–0.40°C.
机译:本文提出了一种使用温度敏感粒子(TSP),脉冲紫外激光和高速照相机对液体和气体流动进行二维温度和速度测量的组合方法。 TSP响应流中的温度变化,还可以用作速度场的示踪剂。以每秒15,000帧的速度记录TSP的发光,作为连续图像进行基于寿命的温度分析。这些图像也用于粒子图像测速计算。基于寿命方法,使用几幅图像估算了温度场。各种温度条件下的衰减曲线都很好地拟合了指数函数,并由此得出了每个温度下的衰减常数。该技术被用于测量矩形对流罐中由马朗哥尼力和浮力驱动的自然对流中的温度和速度场。所提出技术的温度测量精度为±0.35-0.40°C。

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