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Thermocouple error correction for measuring the flame temperature with determination of emissivity and heat transfer coefficient

机译:热电偶误差校正,用于测量火焰温度,并确定发射率和传热系数

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摘要

Temperature measurement by thermocouples is prone to errors due to conduction and radiation losses and therefore has to be corrected for precise measurement. The temperature dependent emissivity of the thermocouple wires is measured by the use of thermal infrared camera. The measured emissivities are found to be 20%–40% lower than the theoretical values predicted from theory of electromagnetism. A transient technique is employed for finding the heat transfer coefficients for the lead wire and the bead of the thermocouple. This method does not require the data of thermal properties and velocity of the burnt gases. The heat transfer coefficients obtained from the present method have an average deviation of 20% from the available heat transfer correlations in literature for non-reacting convective flow over cylinders and spheres. The parametric study of thermocouple error using the numerical code confirmed the existence of a minimum wire length beyond which the conduction loss is a constant minimal. Temperature of premixed methane-air flames stabilised on 16 mm diameter tube burner is measured by three B-type thermocouples of wire diameters: 0.15 mm, 0.30 mm, and 0.60 mm. The measurements are made at three distances from the burner tip (thermocouple tip to burner tip/burner diameter = 2, 4, and 6) at an equivalence ratio of 1 for the tube Reynolds number varying from 1000 to 2200. These measured flame temperatures are corrected by the present numerical procedure, the multi-element method, and the extrapolation method. The flame temperatures estimated by the two-element method and extrapolation method deviate from numerical results within 2.5% and 4%, respectively.
机译:热电偶的温度测量容易因传导和辐射损耗而产生误差,因此必须进行校正以进行精确测量。通过使用红外热像仪测量热电偶线的温度相关辐射率。发现测得的发射率比电磁学理论预测的理论值低20%–40%。采用瞬态技术来查找导线和热电偶磁珠的传热系数。该方法不需要热特性和燃烧气体速度的数据。从本发明方法获得的传热系数与文献中关于汽缸和球体上的非反应对流的可用传热相关性的平均偏差为20%。使用数字代码对热电偶误差进行参数研究,证实存在最小导线长度,超过该最小导线长度,传导损耗为恒定的最小值。稳定在直径为16 mm的管式燃烧器上的预混合甲烷-空气火焰的温度是通过三个B型线径为0.15 mm,0.30 mm和0.60 mm的B型热电偶测得的。对于雷诺数为1000到2200的灯管,在距燃烧器尖端3个距离(热电偶尖端至燃烧器尖端/燃烧器直径= 2、4和6)的三个距离处进行测量。测量的火焰温度为通过本数值程序,多元法和外推法进行校正。通过二元素法和外推法估算的火焰温度分别偏离数值结果2.5%和4%以内。

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