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用于热气流和小规模火焰测量的可调谐二极管激光吸收光谱系统的开发与验证

Development and Validation of a Tunable Diode Laser Absorption Spectroscopy System for Hot Gas Flow and Small-Scale Flame Measurement.

作者信息

Tu Ran, Gu Junqing, Zeng Yi, Zhou Xuejin, Yang Kai, Jing Jiaojiao, Miao Zhihong, Yang Jianhong

机构信息

College of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, China.

Department of Modern Mechanics, University of Science and Technology of China, Hefei 230026, China.

出版信息

Sensors (Basel). 2022 Sep 5;22(17):6707. doi: 10.3390/s22176707.

Abstract

TDLAS (tunable diode laser absorption spectroscopy) is an important gas analysis method that can be employed to obtain characteristic parameters non-invasively by the infrared absorption spectra of tracer molecules such as CH, HO and O. In this study, a portable HO-based TDLAS system with a dual optical path was developed with the aim of assessing the combustion characteristics of flammable gases. Firstly, a calculation method of gas characteristics including temperature and velocity combining absorption spectra and a HITRAN database was provided. Secondly, to calibrate and validate this TDLAS system precisely, a pressure vessel and a shock tube were introduced innovatively to generate static or steady flow fields with preset constant temperatures, pressures, or velocities. Static tests within environment pressures up to 2 MPa and steady flow field tests with temperatures up to 1600 K and flow velocities up to 950 m/s were performed for verification. It was proved that this system can provide an accurate values for high temperature and velocity gas flows. Finally, an experimental investigation of CH/air flames was conducted to test the effectiveness of the system when applied to small diffusion flames. This TDLAS system gave satisfactory flame temperature and velocity data owing to the dual optical path design and high frequency scanning, which compensated for scale effects and pulsation of the flame. This work demonstrates a valuable new approach to thermal hazard analysis in specific environments.

摘要

可调谐二极管激光吸收光谱法(TDLAS)是一种重要的气体分析方法,可通过诸如CH、HO和O等示踪分子的红外吸收光谱来无创获取特征参数。在本研究中,为了评估可燃气体的燃烧特性,开发了一种基于HO的具有双光路的便携式TDLAS系统。首先,提供了一种结合吸收光谱和HITRAN数据库来计算包括温度和速度在内的气体特性的方法。其次,为了精确校准和验证该TDLAS系统,创新性地引入了一个压力容器和一个激波管,以产生具有预设恒定温度、压力或速度的静态或稳定流场。在高达2 MPa的环境压力下进行了静态测试,并在高达1600 K的温度和高达950 m/s的流速下进行了稳定流场测试以进行验证。结果证明该系统能够为高温和高速气流提供准确值。最后,对CH/空气火焰进行了实验研究,以测试该系统应用于小型扩散火焰时的有效性。由于采用了双光路设计和高频扫描,该TDLAS系统给出了令人满意的火焰温度和速度数据,弥补了火焰的尺度效应和脉动影响。这项工作展示了一种在特定环境中进行热危害分析的有价值的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7ff/9460420/6fa8d47194cc/sensors-22-06707-g001.jpg

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