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Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1. / Тимофеев, Ю. М.; Поляков, А. В.; Делер, В.; Шпенкух, Д.; Ортел, Д.

In: СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА, Vol. 15 , No. 3, 2018, p. 236-242.

Research output: Contribution to journalArticlepeer-review

Harvard

Тимофеев, ЮМ, Поляков, АВ, Делер, В, Шпенкух, Д & Ортел, Д 2018, 'Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1', СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА, vol. 15 , no. 3, pp. 236-242. https://doi.org/10.21046/2070-7401-2018-15-3-236-242, https://doi.org/10.21046/2070-7401-2018-15-3-236-242

APA

Тимофеев, Ю. М., Поляков, А. В., Делер, В., Шпенкух, Д., & Ортел, Д. (2018). Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1. СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА, 15 (3), 236-242. https://doi.org/10.21046/2070-7401-2018-15-3-236-242, https://doi.org/10.21046/2070-7401-2018-15-3-236-242

Vancouver

Тимофеев ЮМ, Поляков АВ, Делер В, Шпенкух Д, Ортел Д. Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1. СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА. 2018;15 (3):236-242. https://doi.org/10.21046/2070-7401-2018-15-3-236-242, https://doi.org/10.21046/2070-7401-2018-15-3-236-242

Author

Тимофеев, Ю. М. ; Поляков, А. В. ; Делер, В. ; Шпенкух, Д. ; Ортел, Д. / Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1. In: СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА. 2018 ; Vol. 15 , No. 3. pp. 236-242.

BibTeX

@article{7dda9f02cbee4666ac8b53b082d8d48b,
title = "Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1",
abstract = "The analysis of integral form of the radiative transfer equation shows that vertical gradients of temperature profiles in the atmosphere are the major factor defining possibilities for retrieving characteristics of atmospheric gas composition from measurements of outgoing thermal IR radiation spectra (including the SI-1 measurements). When the temperature vertical gradient is close to zero (for example in the presence of the temperature inversion layer), the absorption band of methane is not detectable in the spectra obtained by the SI-1 instrument in 1977 and 1979. On the basis of the analysis of brightness temperatures in different absorption bands (bands of CO 2 at 15 μm, O 3 at 9.6 μm and CH 4 at 7.6 μm) the scattering diagram of amplitudes of spectral variations of outgoing radiation has been received and studied. It is shown that the SI-1 device is sensitive to natural variations of outgoing thermal radiation caused by not only CO 2, ozone and methane variations, but also variations of such gases as H 2O, HNO 3 and N 2O. The N 2O, CFC-11 and CFC-12 contents cannot be estimated from SI-1 data without the essential spatial averaging of satellite measurements for the suppression of random measurement errors. ",
keywords = "Atmospheric composition, Satellite remote sensing of atmosphere, Thermal radiation",
author = "Тимофеев, {Ю. М.} and Поляков, {А. В.} and В. Делер and Д. Шпенкух and Д. Ортел",
year = "2018",
doi = "10.21046/2070-7401-2018-15-3-236-242",
language = "русский",
volume = "15 ",
pages = "236--242",
journal = "СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА",
issn = "2070-7401",
publisher = "Институт космических исследований Российской академии наук",
number = "3",

}

RIS

TY - JOUR

T1 - Анализ спектров уходящего теплового излучения, измеренных аппаратурой SI-1

AU - Тимофеев, Ю. М.

AU - Поляков, А. В.

AU - Делер, В.

AU - Шпенкух, Д.

AU - Ортел, Д.

PY - 2018

Y1 - 2018

N2 - The analysis of integral form of the radiative transfer equation shows that vertical gradients of temperature profiles in the atmosphere are the major factor defining possibilities for retrieving characteristics of atmospheric gas composition from measurements of outgoing thermal IR radiation spectra (including the SI-1 measurements). When the temperature vertical gradient is close to zero (for example in the presence of the temperature inversion layer), the absorption band of methane is not detectable in the spectra obtained by the SI-1 instrument in 1977 and 1979. On the basis of the analysis of brightness temperatures in different absorption bands (bands of CO 2 at 15 μm, O 3 at 9.6 μm and CH 4 at 7.6 μm) the scattering diagram of amplitudes of spectral variations of outgoing radiation has been received and studied. It is shown that the SI-1 device is sensitive to natural variations of outgoing thermal radiation caused by not only CO 2, ozone and methane variations, but also variations of such gases as H 2O, HNO 3 and N 2O. The N 2O, CFC-11 and CFC-12 contents cannot be estimated from SI-1 data without the essential spatial averaging of satellite measurements for the suppression of random measurement errors.

AB - The analysis of integral form of the radiative transfer equation shows that vertical gradients of temperature profiles in the atmosphere are the major factor defining possibilities for retrieving characteristics of atmospheric gas composition from measurements of outgoing thermal IR radiation spectra (including the SI-1 measurements). When the temperature vertical gradient is close to zero (for example in the presence of the temperature inversion layer), the absorption band of methane is not detectable in the spectra obtained by the SI-1 instrument in 1977 and 1979. On the basis of the analysis of brightness temperatures in different absorption bands (bands of CO 2 at 15 μm, O 3 at 9.6 μm and CH 4 at 7.6 μm) the scattering diagram of amplitudes of spectral variations of outgoing radiation has been received and studied. It is shown that the SI-1 device is sensitive to natural variations of outgoing thermal radiation caused by not only CO 2, ozone and methane variations, but also variations of such gases as H 2O, HNO 3 and N 2O. The N 2O, CFC-11 and CFC-12 contents cannot be estimated from SI-1 data without the essential spatial averaging of satellite measurements for the suppression of random measurement errors.

KW - Atmospheric composition

KW - Satellite remote sensing of atmosphere

KW - Thermal radiation

UR - http://www.scopus.com/inward/record.url?scp=85050317739&partnerID=8YFLogxK

U2 - 10.21046/2070-7401-2018-15-3-236-242

DO - 10.21046/2070-7401-2018-15-3-236-242

M3 - статья

VL - 15

SP - 236

EP - 242

JO - СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА

JF - СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА

SN - 2070-7401

IS - 3

ER -

ID: 35501181