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Wall temperature measurements using a thermal imaging camera with temperature-dependent emissivity corrections

机译:使用热成像仪进行壁温测量,并进行与温度相关的发射率校正

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摘要

A methodology is presented whereby the relationship between temperature and emissivity for fused quartz has been used to correct the temperature values of a quartz impingement plate detected by an SC3000 thermal imaging camera. The methodology uses an iterative method using the initial temperature (obtained by assuming a constant emissivity) to find the emissivity values which are then put into the thermal imaging software and used to find the subsequent temperatures, which are used to find the emissivities, and so on until converged. This method is used for a quartz impingement plate that has been heated under various flame conditions, and the results are compared. Radiation losses from the plate are also calculated, and it is shown that even a slight change in temperature greatly affects the radiation loss. It is a general methodology that can be used for any wall material whose emissivity is a function of temperature.
机译:提出了一种方法,其中熔融石英的温度和发射率之间的关系已用于校正由SC3000热成像相机检测到的石英撞击板的温度值。该方法使用一种迭代方法,该方法使用初始温度(通过假设恒定的发射率获得)来找到发射率值,然后将其放入热成像软件中并用于找到随后的温度,这些温度用于找到发射率,等等。直到收敛。该方法用于已在各种火焰条件下加热的石英冲击板,并比较了结果。还计算了板的辐射损耗,结果表明,即使温度略有变化也会极大地影响辐射损耗。这是一种通用方法,可用于其发射率是温度函数的任何壁材。

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