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Pulverized coal combustion application of laser-based temperature sensing system using computed tomography - Tunable diode laser absorption spectroscopy (CT-TDLAS)

机译:基于激光的温度传感系统使用计算机断层摄像二极管激光吸收光谱(CT-TDLAS)的粉煤燃烧应用

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摘要

The investigation of combustion phenomena in pulverized coal flames is significant for combustion optimization related to energy conservation and emission reduction. Real-time two dimensional (2D) temperature and concentration distributions play an important role for combustion analysis. The non-contact and fast response 2D temperature and concentration distribution measurement method was developed in this study. The method is based on a combination of computed tomography (CT) and tunable diode laser absorption spectroscopy (TDLAS). The accuracy evaluation of developed 32-path CT-TDLAS demonstrated its feasibility of 2D temperature measurement. 32-path CT-TDLAS was applied to CH4 and 5 kg/h coal combustion fields for 2D temperature measurement. The time-series 2D temperature distribution in coal combustion furnace was measured using 32-path CT-TDLAS measurement cell with kHz time resolution. The transient temperature field of combustion flame directly reflects the combustion mode and combustion stability. The measurement results demonstrate its applicability of CT-TDLAS to various types of combustor, especially the combustion fields with coal and ash particles. CT-TDLAS method with kHz response time enables the real-time 2D temperature measurement to be applicable for combustion analysis.
机译:粉煤火焰中燃烧现象的调查对于节能和减排有关的燃烧优化是显着的。实时二维(2D)温度和浓度分布起到燃烧分析的重要作用。本研究开发了非接触和快速响应2D温度和浓度分布测量方法。该方法基于计算机断层扫描(CT)和可调谐二极管激光吸收光谱(TDLA)的组合。开发的32路径CT-TDLA的精度评估证明了其2D温度测量的可行性。将32-路径CT-TDLA应用于CH4和5kg / h煤燃烧场,用于2D温度测量。使用具有KHz时间分辨率的32-路径CT-TDLAS测量单元测量煤燃烧炉中的时间序列2D温度分布。燃烧火焰的瞬态温度场直接反映燃烧模式和燃烧稳定性。测量结果证明了CT-TDLA对各种类型的燃烧器,尤其是具有煤和灰分颗粒的燃烧场的适用性。具有KHz响应时间的CT-TDLAS方法使实时2D温度测量适用于燃烧分析。

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