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Design and analysis on fume exhaust system of blackbody cavity sensor for continuously measuring molten steel temperature

机译:用于连续测量钢水温度的黑体腔传感器烟气排气系统的设计与分析

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Fume exhaust system is the main component of the novel blackbody cavity sensor with a single layer tube, which removes the fume by gas flow along the exhaust pipe to keep the light path clean. However, the gas flow may break the conditions of blackbody cavity and results in the poor measurement accuracy. In this paper, we analyzed the influence of the gas flow on the temperature distribution of the measuring cavity, and then calculated the integrated effective emissivity of the non-isothermal cavity based on Monte-Carlo method, accordingly evaluated the sensor measurement accuracy, finally obtained the maximum allowable flow rate for various length of the exhaust pipe to meet the measurement accuracy. These results will help optimize the novel blackbody cavity sensor design and use it better for measuring the temperature of molten steel.
机译:烟气排气系统是具有单层管的新型黑体腔传感器的主要组成部分,其通过沿着排气管通过气体​​流去除烟气,以保持光路清洁。然而,气流可能会破坏黑体腔的条件,并导致测量精度差。在本文中,我们分析了气流对测量腔温度分布的影响,然后基于Monte-Carlo方法计算了非等温腔的综合有效发射率,因此评估了传感器测量精度,最终获得用于各种长度的排气管的最大允许流速,以满足测量精度。这些结果将有助于优化新型的黑体腔体传感器设计,并更好地用于测量钢水温度。

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