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길용석,정석호,이병준,한재원,Gil,Yong-Seok,Jeong, Seok-Ho,Lee, Byeong-Jun,Han, Jae-Won 대한기계학회 1996 大韓機械學會論文集B Vol.20 No.10
To provide standard data of temperature and species concentration in a flame for calibrating the laser based combustion diagnostics, we investigated combustion characteristics of a flat flame burner(Mckennar Product). For various stoichiometric ratios we measured temperature and concentration of OH in the premixed methane/air flame with Coherent anti-Stokes Raman spectroscopy and laser induced fluorescence technique, respectively. Assuming the chemical equilibrium condition at the measured temperature, the mole fraction of the OH radical in the flame was obtained and compared with numerical analysis.
이병준,길용석,정석호,Lee, Byeong-Jun,Gil, Yong-Seok,Jeong, Seok-Ho 대한기계학회 1996 大韓機械學會論文集B Vol.20 No.2
Laser applied combustion diagnostic techniques-laser induced fluorescence (LIF) and coherent anti-Stokes Ramann spectroscopy (CARS)-are demonstrated. The profiles of hydroxyl radical (OH) and temperature in the counterflow burner are measured and compared with the numerical results. OH radical is excited on the Q$_1$(6) line of the $A^2$$\sum^+$$\leftarrow$$X^2{\prod}$(1, 0) band transition (281.1 nm) and LIF signal is measured at the the bands of (0, 0) and (1, 1) transition (306~326 nm). Absolute OH radical is obtained by using the laser absorption technique. The quenching effects are considered. Temperature is measured using broadband CARS system. Two dimensional OH radical profile is also obtained. The profiles of OH radical and temperature are found to agree well with those of numerical calculation.
황준영,길용석,김정익,최만수,정석호,Hwang, Jun-Yeong,Gil, Yong-Seok,Kim, Jeong-Ik,Choe, Man-Su,Jeong, Seok-Ho 대한기계학회 2000 大韓機械學會論文集B Vol.24 No.11
The effects of SiCl$_4$addition on flame structures have been studied in flame hydrolysis deposition (FHD) processes using Coherent anti-Stokes Raman spectroscopy (CARS) and planar laser induced fluorescence (PLIF) to measure temperatures and OH concentrations, respectively. The results demonstrate that even a small amount of SiCl$_4$ addition can change thermal and chemical structures of H$_2$/O$_2$ diffusion flames. When SiCl$_4$ is added to a flame temperature decreases in non-reacting zone due to the increases in both specific heat and density of the gas mixture, while flame temperature increase in particle formation zone due to the heat release through hydrolysis and oxidation reactions of SiCl$_4$. It is also found that OH concentration decreases dramatically in particle formation zone where temperatures increase. This can be attributed to consumption of oxidative species and generation of HCl during silica formation.
순간 온도 측정을 위한 CARS 분광기의 정밀 정확도 분석
박승남,박철융,한재원,길용석,정석호 한국광학회 1996 한국광학회지 Vol.7 No.4
기체의 순간 온도를 측정할 수 있는 펄스 레이저를 사용한 이동형 CARS 분광기를 제작하였다. 이 분광기의 측정 프로그램은 측정한 스펙트럼으로 부터 온도를 얻기 위하여 8가지의 빠른 온도 계산법과 최소제곱법을 포함하고 있다. 빠른 온도 계산법 중 두 가지는 최소제곱법 보다 계산 시간은 훨씬 덜 걸리면서 온도의 분산이 작은 측정 결과를 준다. CARS 온도의 정밀 정확도는 복사온도계를 기준으로 흑연관 흑체로에서 측정하였다. 1000K부터 2400K의 온도 영역에서 정확도는 .+-.2% 이내이고 정밀도는 가장 정밀한 결과를 주는 빠른 온도 계산법을 적용할 때 1600K에서 .+-.35K이다. 순간 온도 측정의 적용 예를 보이기 위하여 이 분광기를 정해진 조건에 있는 난류 연소의 측정에 적용하였다. A mobile CARS spectrometer is constructed to measure the instantaneous temperature of gases, of which software include the quick fit methods and a least square fitting method to obtain temperatures from the spectra. Two quick-fit-methods give smaller variance of temperatures than the least square fitting method even though they consume much shorter time to yield temperatures. The precision and accuracy of CARS temperature is measured in the graphite tube blackbody furnace in reference to a radiation pyrometer. The accuracy of the CARS temperature is $\pm$2% from 1000K to 2400K and the precision is $\pm$35K at 1600K with the most accurate quick-fit-method. As a demonstration of the instantaneous measurement, the spectrometer is applied for measurement of the turbulent combustion at a certain condition. eograms(HS) are made using a relatively small number of synthesized 2D images. The influence of aliasing artifacts caused by insufficient or improper sampling is presented, and a new sampling theory is proposed, which is used to making holographic stereograms. Also, the optical system for extension of viewing distance and viewing zone is proposed. Results of this analysis can be applied to design normal holographic stereograms and computer based holographic stereograms.