Development of Compact-Modulated Absorption/Emission Technique Towards Micro-Gravity Sooting Flame Measurements

19 Pages Posted: 15 Feb 2023

See all articles by Qianlong WANG

Qianlong WANG

Tianjin University

Zhen Li

Tianjin University

Xiaoqing You

Tsinghua University

Haifeng Liu

Tianjin University - State Key Laboratory of Engines

Mingfa Yao

Tianjin University - State Key Laboratory of Engines

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Abstract

To meet the experimental physical limitations on Chinese Space Station (CSS), three compact-modulated absorption/emission (CMAE) implementations are miniaturised progressively from original MAE layout, which are investigated as potential options for simultaneous soot temperature and volume fraction measurements in the axis-symmetric flames. Contrasted with the original MAE technique, a white LED point light source (diameter of φ=8 mm) and a white LED planar light source (rectangle of 200×120 mm2) in turns replaces the laser source, by which the light beam homogeneous implementation is significantly simplified. Moreover, a 3-CMOS prism-based camera enables simultaneously recording flame two color radiations that reduces the detecting complexity. It is found that backlight beam intensity should be more than 2.5 times the flame radiation intensity to avoid abnormal extinction coefficient on the flame edge in this configuration. Moreover, the robustness and consistency of the three CMAEs measurements are validated with a standard Santoro’s flame, and low average standard deviation ranges of ± 0.04 ∼± 0.06 ppm and ± 65.0 ∼± 96.3 K for soot volume fraction and temperature respectively is evaluated from error propagation assessment. As such, the proposed CMAE-2 and CMAE-3 layouts are promising candidates for high-fidelity flame soot parameters measurements under limited space, weight and power supply on CSS.

Keywords: Soot volume fraction field, Soot temperature field, CMAE technique, Thermal radiation thermometry

Suggested Citation

WANG, Qianlong and Li, Zhen and You, Xiaoqing and Liu, Haifeng and Yao, Mingfa, Development of Compact-Modulated Absorption/Emission Technique Towards Micro-Gravity Sooting Flame Measurements. Available at SSRN: https://ssrn.com/abstract=4360374 or http://dx.doi.org/10.2139/ssrn.4360374

Qianlong WANG (Contact Author)

Tianjin University ( email )

Zhen Li

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Xiaoqing You

Tsinghua University ( email )

Beijing, 100084
China

Haifeng Liu

Tianjin University - State Key Laboratory of Engines ( email )

Mingfa Yao

Tianjin University - State Key Laboratory of Engines ( email )

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