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Temperature imaging in low pressure flames using diode laser two-line atomic fluorescence employing a novel indium seeding technique

机译:使用新型铟种技术的二极管激光两线原子荧光技术在低压火焰中进行温度成像

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摘要

The use of diode lasers for spatially resolved temperature imaging is demonstrated in low pressure premixed methane-air flames using two-line atomic fluorescence of seeded indium atoms. This work features the advantages of using compact diode lasers as the excitation sources with the benefits of two-dimensional planar imaging, which is normally only performed with high-power pulsed lasers. A versatile and reliable seeding technique with minimal impact on flame properties is used to introduce indium atoms into the combustion environment for a wide range of flame equivalence ratios. A spatial resolution of around 210 µm for this calibration free thermometry technique is achieved for three equivalence ratios at a pressure of 50 mbar in a laminar flat flame.
机译:在低压预混甲烷-空气火焰中,使用种子铟原子的两线原子荧光技术,证明了将二极管激光器用于空间分辨温度成像。这项工作的优势是使用紧凑型二极管激光器作为激发源,并具有二维平面成像的优势,而二维平面成像通常仅使用高功率脉冲激光器才能执行。使用一种对火焰特性影响最小的通用且可靠的播种技术,可将铟原子引入燃烧环境中,以获得宽范围的火焰当量比。在层状平直火焰中,在50 mbar的压力下,对于三种当量比,采用这种无标定测温技术的空间分辨率约为210 µm。

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