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Int J Fire Sci Eng > Volume 30(1); 2016 > Article
Fire Science and Engineering 2016;30(1):37-42.
DOI: https://doi.org/10.7731/KIFSE.2016.30.1.037    Published online February 28, 2016.
바이오디젤과 디젤 연기입자의 광학특성 및 무차원 광소멸계수 측정에 관한 연구
최석천, 장영석, 박설현, 김연규
1한국생산기술연구원 고온에너지시스템연구그룹
2한국생산기술연구원 고온에너지시스템연구그룹
3조선대학교 기계시스템공학과
4한국항공우주연구원 융합기술연구본부
A Study of Optical Characteristics for Biodiesel and Diesel Smoke Particles and Measuring their Dimensionless Light Extinction Constants
Choi Seuk-Cheun, Jang Yeong-Seok, Park Seul-Hyun, Kim Youn-Kyu
1Thermochemical Energy System R&D Group, Korea Institute of Industrial Technology
2Thermochemical Energy System R&D Group, Korea Institute of Industrial Technology
3Department of Mechanical Systems Engineering, Chosun University
4Convergence Technology Research Head Office, Korea Aerospace Research Institute
요약
바이오디젤(Soy Methyl Ester, B100)과 디젤(Ultra Low Sulfur Diesel, ULSD)의 연소과정에서 발생되는 연기입자의 무차원 광소멸계수를 측정하였다. 무차원 광소멸계수는 633 nm의 He-Ne 레이저를 이용하여 광학적 방법으로 측정된 연기입자의 체적분율과 중력식 필터법에 의해 채집된 연기입자의 체적분율을 비교하여 결정하였다. 633 nm 대역에서 측정된 평균 무차원 광소멸계수는 각각 바이오디젤의 연기입자가 11.8, 디젤 연기입자가 11.1으로 측정 불확도 범위(${pm}10.1%$) 내에서 거의 유사하였다. 다만, 라만 spectrum 분석결과를 통해 각 연료에서 발생된 연기입자 간의 광소멸(광흡수/광산란) 특성은 서로 상이할 수 있음을 확인할 수 있었다.
Abstract
The dimensionless extinction constants of smoke particles produced from burning of soy methyl ester (B100) biodiesel and ultra low sulfur diesel (ULSD) fuels were measured. To this end, optical measurements of smoke volume fraction with the aid of a He-Ne laser at 633 nm were compared to the simultaneous gravimetric measurements. The average value of measured dimensionless extinction constants at 633 nm was 11.8 for biodiesel smoke particles and 11.1 for diesel smoke particles, respectively whose values are very comparable withing the range of measurement uncertainty (${pm}10.1%$). The analysis of Raman spectroscopy revealed that overall characteristics of light extinction between particles produced from each fuel may differ from each other.
Key Words: Dimensionless light extinction constant, Smoke particles, Biodiesel, Diesel


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