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Development of temperature imaging using two-line atomic fluorescence

机译:利用两线原子荧光技术开发温度成像

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This work aims to advance understanding of the coupling between temperature and soot. The ability to image temperature using the two-line atomic fluorescence (TLAF) technique is demonstrated. Previous TLAF theory is extended from linear excitation into the nonlinear fluence regime. Nonlinear regime two-line atomic fluorescence (NTLAF) provides superior signal and reduces single-shot uncertainty from 250 K for conventional TLAF down to 100 K. NTLAF is shown to resolve the temperature profile across the stoichiometric envelope for hydrogen, ethylene, and natural gas flames, with deviation from thermocouple measurements not exceeding 100 K, and typically approx.<30 K. Measurements in flames containing soot demonstrate good capacity of NTLAF to exclude interferences that hamper most two-dimensional thermometry techniques.
机译:这项工作旨在增进对温度和烟灰之间耦合的理解。证明了使用两线原子荧光(TLAF)技术成像温度的能力。先前的TLAF理论已从线性激发扩展到非线性注量态。非线性状态两线原子荧光(NTLAF)提供了出色的信号,并将单发不确定性从传统TLAF的250 K降低到了100K。NTLAF被证明可以解决化学计量范围内氢,乙烯和天然气的温度分布火焰与热电偶测量值的偏差不超过100 K,通常不超过30 K.在包含烟灰的火焰中进行的测量表明NTLAF具有很好的能力,可以排除妨碍大多数二维测温技术的干扰。

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