본 연구에서는 광학식 흡광도 측정방법인 TDLAS를이용하였다. 연소과정을 정확히 이해하기 위해 엔진의연소실 내부를 측정할 필요가 있다. 연소실 내에서연소과정을 이해하기 위해서 필수적...

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https://www.riss.kr/link?id=A109140069
전민규 (해군사관학교)
2024
Korean
흡광도 ; 고온 ; 고압 ; 가변 다이오드 레이저 흡수 분광법 ; Absorbance ; High-temperature ; High-pressure ; TDLAS
KCI등재후보
학술저널
232-236(5쪽)
0
상세조회0
다운로드본 연구에서는 광학식 흡광도 측정방법인 TDLAS를이용하였다. 연소과정을 정확히 이해하기 위해 엔진의연소실 내부를 측정할 필요가 있다. 연소실 내에서연소과정을 이해하기 위해서 필수적...
본 연구에서는 광학식 흡광도 측정방법인 TDLAS를이용하였다. 연소과정을 정확히 이해하기 위해 엔진의연소실 내부를 측정할 필요가 있다. 연소실 내에서연소과정을 이해하기 위해서 필수적으로 발생하는 고온및 고압환경에서의 변화를 계측해야 한다. 이러한노력으로 우리의 주요 목표는 H2O 가스의 압력 및 온도를매개변수로 세심하게 조절하여 TDLAS 측정의 정밀도를높이고자 하였다. 이로서 실험적 데이터를 바탕으로이론적 데이터의 개선이 가능해 진다.
다국어 초록 (Multilingual Abstract)
Accurate comprehension of the combustion process necessitates interior measurements of the engine's combustion chamber. Such comprehension mandates measurement of alterations within the chamber's high-temperature and high-pressure environment. Our pri...
Accurate comprehension of the combustion process necessitates interior measurements of the engine's combustion chamber. Such comprehension mandates measurement of alterations within the chamber's high-temperature and high-pressure environment. Our principal objective was meticulous regulation of H2O gas pressure and temperature to refine the precision of tunable diode laser absorption spectroscopy (TDLAS) measurements. This endeavor enables the enhancement of theoretical data based on empirical findings.
참고문헌 (Reference)
1 W. Wang, "Wireless Surface Acoustic Wave Chemical Sensor for Simultaneous Measurement of CO2 and Humidity" 8 (8): 031306-, 2009
2 M. V. Heitor, "Thermocouples and Sample Probes for Combustion Studies" 19 : 259-278, 1993
3 H. Sumizawa, "Real-time 2362024; 7(2); pp. 232-236monitoring of nitric oxide in diesel exhaust gas by mid-infrared cavity ring-down spectroscopy" 100 (100): 925-931, 2010
4 C. S. Kim, "Radiation-corrective gas temperature measurement in a circular channel" 75 : 157-167, 2012
5 M. G. Jeon, "Performances of new reconstruction algorithms for CT-TDLAS(computer tomography-tunable diode laser absorption spectroscopy)" 115 : 1148-1160, 2017
6 D. W. Choi, "Performance Improvements in Temperature Reconstructions of 2-D Tunable Diode Laser Absorption Spectroscopy(TDLAS)" 25 (25): 84-89, 2016
7 M. G. Jeon, "Measurement enhancement on two-dimensional temperature distribution of Methane-Air premixed flame using SMART algorithm in CT-TDLAS" 9 (9): 4955-, 2019
8 T. N. Anderson, "In situ measurements of nitric oxide in coal-combustion exhaust using a sensor based on a widely tunable external-cavity GaN diode laser" 46 (46): 3946-3957, 2007
9 T. Kamimoto, "High temperature field application of two dimensional temperature measurement technology using CT tunable diode laser absorption spectroscopy" 46 (46): 51-57, 2015
10 J. K. Magnuson, "Application of a diode-laser-based ultraviolet absorption sensor for in situ measurements of atomic mercury in coal-combustion exhaust" 22 (22): 3029-3036, 2008
1 W. Wang, "Wireless Surface Acoustic Wave Chemical Sensor for Simultaneous Measurement of CO2 and Humidity" 8 (8): 031306-, 2009
2 M. V. Heitor, "Thermocouples and Sample Probes for Combustion Studies" 19 : 259-278, 1993
3 H. Sumizawa, "Real-time 2362024; 7(2); pp. 232-236monitoring of nitric oxide in diesel exhaust gas by mid-infrared cavity ring-down spectroscopy" 100 (100): 925-931, 2010
4 C. S. Kim, "Radiation-corrective gas temperature measurement in a circular channel" 75 : 157-167, 2012
5 M. G. Jeon, "Performances of new reconstruction algorithms for CT-TDLAS(computer tomography-tunable diode laser absorption spectroscopy)" 115 : 1148-1160, 2017
6 D. W. Choi, "Performance Improvements in Temperature Reconstructions of 2-D Tunable Diode Laser Absorption Spectroscopy(TDLAS)" 25 (25): 84-89, 2016
7 M. G. Jeon, "Measurement enhancement on two-dimensional temperature distribution of Methane-Air premixed flame using SMART algorithm in CT-TDLAS" 9 (9): 4955-, 2019
8 T. N. Anderson, "In situ measurements of nitric oxide in coal-combustion exhaust using a sensor based on a widely tunable external-cavity GaN diode laser" 46 (46): 3946-3957, 2007
9 T. Kamimoto, "High temperature field application of two dimensional temperature measurement technology using CT tunable diode laser absorption spectroscopy" 46 (46): 51-57, 2015
10 J. K. Magnuson, "Application of a diode-laser-based ultraviolet absorption sensor for in situ measurements of atomic mercury in coal-combustion exhaust" 22 (22): 3029-3036, 2008
11 N. Dossi, "An Electrochemical Gas Sensor based on Paper Supported Room Temperature Ionic Liquids" 12 (12): 153-158, 2012
12 M. G. Jeon, "A study on two-dimensional temperature and concentration distribution of Propane-Air premixed flame using CT-TDLAS" 34 (34): 2040020-, 2020
13 S. Brohez, "A Two-Thermocouples Probe for Radiation Corrections of Measured Temperature in Compartment Fires" 39 : 399-411, 2004
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