TY - JOUR
T1 - Airborne infrared spectroscopy of 1994 western wildfires
AU - Worden, Helen
AU - Beer, Reinhard
AU - Rinsland, Curtis P.
PY - 1997
Y1 - 1997
N2 - In the summer of 1994 the 0.07 cm-1 resolution infrared Airborne Emission Spectrometer (AES) acquired spectral data over two wildfires, one in central Oregon on August 3 and the other near San Luis Obispo, California, on August 15. The spectrometer was on board a NASA DC-8 research aircraft, flying at an altitude of 12 km. The spectra from both fires clearly show features due to water vapor, carbon dioxide, carbon monoxide, ammonia, methanol, formic acid, and ethylene at significantly higher abundance and temperature than observed in downlooking spectra of normal atmospheric arid ground conditions. Column densities are derived for several species, and molar ratios are compared with previous biomass fire measurements. We believe that this is the first time such data have been acquired by airborne spectral remote sensing.
AB - In the summer of 1994 the 0.07 cm-1 resolution infrared Airborne Emission Spectrometer (AES) acquired spectral data over two wildfires, one in central Oregon on August 3 and the other near San Luis Obispo, California, on August 15. The spectrometer was on board a NASA DC-8 research aircraft, flying at an altitude of 12 km. The spectra from both fires clearly show features due to water vapor, carbon dioxide, carbon monoxide, ammonia, methanol, formic acid, and ethylene at significantly higher abundance and temperature than observed in downlooking spectra of normal atmospheric arid ground conditions. Column densities are derived for several species, and molar ratios are compared with previous biomass fire measurements. We believe that this is the first time such data have been acquired by airborne spectral remote sensing.
UR - https://www.scopus.com/pages/publications/0030719545
U2 - 10.1029/96JD02982
DO - 10.1029/96JD02982
M3 - Article
AN - SCOPUS:0030719545
SN - 0148-0227
VL - 102
SP - 1287
EP - 1299
JO - Journal of Geophysical Research
JF - Journal of Geophysical Research
IS - D1
M1 - 96JD02982
ER -