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首页> 外文期刊>Lasers in engineering >Three-Dimensional (3-D) Temperature Measurement in a Low Pressure Flame Reactor Using Multiplexed Tunable Diode Laser Absorption Spectroscopy (TDLAS)
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Three-Dimensional (3-D) Temperature Measurement in a Low Pressure Flame Reactor Using Multiplexed Tunable Diode Laser Absorption Spectroscopy (TDLAS)

机译:使用多重可调谐二极管激光吸收光谱法(TDLAS)在低压火焰反应器中进行三维(3-D)温度测量

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摘要

Water vapour (H2O) multiplexed tunable diode laser absorption spectroscopy (TDLAS) was utilized to obtain spatially-resolved temperature information inside a low pressure premixed flame reactor. The temperature distribution was obtained by assuming the temperature to be constant in variable lengths along the line-of-sight (LOS temperature bins). The length fraction of postulated temperature bins along the LOS was determined. Multi-line NO laser-induced fluorescence (LIF) imaging technique was used to validate the spatial temperature distributions deduced from H2O TDLAS. By moving the burner head perpendicularly to the observation zone, three-dimensional (3-D) temperature fields were obtained.
机译:利用水蒸气(H2O)多重可调谐二极管激光吸收光谱(TDLAS)来获得低压预混火焰反应器内部的空间分辨温度信息。通过假设温度沿视线(LOS温度容器)的可变长度恒定,获得温度分布。确定了沿着LOS的假定温度箱的长度分数。使用多线NO激光诱导荧光(LIF)成像技术来验证从H2O TDLAS推导出的空间温度分布。通过使燃烧器头垂直于观察区移动,可以获得三维(3-D)温度场。

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