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Simultaneous measurement of temperature and velocity fields using thermographic phosphor tracer particles

机译:使用热成像荧光示踪剂粒子同时测量温度和速度场

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摘要

A simple and inexpensive measurement system is suggested to measure the temperature and velocity fields simultaneously at high temperature using thermographic phosphor tracer particles. A 385-nm UV-LED and only one high-speed camera with a CMOS sensor were used for the simultaneous measurement system. The dispersion of a confined oil jet with high temperature was investigated to validate the system. The instantaneous temperature and velocity fields were obtained when silicon oil at 200 °C was injected into a silicon oil chamber at 25 °C. The decay-slope method was used for the temperature field analysis, and the velocity field was obtained by a two-frame cross-correlation algorithm. The velocity of the injected silicon oil rapidly decreased because of the change in viscosity of the silicon oil with temperature. The selection of an appropriate interrogation window size is suggested to take the moving distance of temperature-sensitive particles into account for accurate temperature measurement.
机译:建议使用一种简单且便宜的测量系统,使用热成像荧光粉示踪剂颗粒在高温下同时测量温度和速度场。 385 nm的UV-LED和仅一个带CMOS传感器的高速相机用于同时测量系统。研究了密闭喷油嘴在高温下的分散性,以验证该系统。当将200°C的硅油注入25°C的硅油腔中时,获得了瞬时温度和速度场。用衰减斜率法进行温度场分析,并通过两帧互相关算法得到速度场。由于硅油的粘度随温度的变化,注入的硅油的速度迅速降低。建议选择适当的询问窗口大小,以考虑温度敏感颗粒的移动距离,以进行精确的温度测量。

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