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Transient infrared temperature measurements of liquid-fuel surfaces: results of studies of flames spread over liquids

机译:液体燃料表面的瞬态红外温度测量:火焰在液体上扩散的研究结果

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摘要

An infrared thermograph technique with an 8-12-μm spectral range was used to measure transient two-dimensional profiles of liquid (1-propanol) surface temperatures. An IR camera was placed over the liquid, allowing us to observe the fuel surface through propanol vapor. To use this technique, one must know the emissivity of the liquid surface and the IR absorption of both the liquid propanol and the propanol vapor. The emissivity of the liquid propanol was determined with a fine thermocouple temperature measurement, IR absorption with the propanol vapor was calibrated with a blackbody source, and IR absorption with a liquid propanol was theoretically estimated. The accuracy of our infrared thermograph technique proved to be better than 97% in detecting the liquid-surface temperature with a temperature sensitivity of 0.1℃ and a time response of 30 ms.
机译:使用光谱范围为8-12μm的红外热像仪技术测量液体(1-丙醇)表面温度的瞬态二维轮廓。将红外热像仪放置在液体上方,使我们能够通过丙醇蒸气观察燃料表面。要使用这种技术,必须知道液体表面的发射率以及液体丙醇和丙醇蒸气的红外吸收。通过精细的热电偶温度测量确定液体丙醇的发射率,用黑体源校准丙醇蒸气的IR吸收,并从理论上估计液体丙醇的IR吸收。经证明,我们的红外热像仪技术在检测液面温度方面的精度优于97%,其温度敏感性为0.1℃,时间响应为30 ms。

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