2007•Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

On the approximate model of scattering radiance for cloudless sky

Chunping Yang, Jian Wu, Yong Han, XiuLan He, Jie Leng

Open publisher page 0 citations

Abstract

Effect factors on sky radiance were analyzed based on the transfer theory of light in the random medium. In fact, these factors mainly include: 1) absorbed and scattered extinction of solar radiance by atmosphere; 2) single scattering process of solar radiance by atmosphere along viewing direction; 3) multiple scattering process of solar radiance by atmosphere along viewing direction; 4) thermal radiation of atmosphere. The latter three ones among these factors increase sky radiance. After this analysis, derivative process of the Radiative Transfer Equation was studied thoroughly from the law of conservation of energy and the transmission of solar radiance in the earth-atmosphere system, and some methods of dealing with the multiple scattering are analyzed and used in calculating sky radiation. Finally, an approximate model was developed for sky radiance of sunshiny and cloudless sky to make full use of the RTE, an analytical express of sky radiance is gave out for single scattering and quasi-multiple scattering effects. Sky spectral radiance was calculated for some representative case of clear sky, and results have been compared with those of MODTRAN. The results show that the present model is efficient under the sunny and cloudless condition.

About this research paper

What this paper is about

Effect factors on sky radiance were analyzed based on the transfer theory of light in the random medium. In fact, these factors mainly include: 1) absorbed and scattered extinction of solar radiance by atmosphere; 2) single scattering process of solar radiance by atmosphere along viewing direction; 3) multiple scattering process of solar radiance by atmosphere along viewing direction; 4) thermal radiation of atmosphere. The latter three ones among these factors increase sky radiance. After this analysis, derivative process of the Radiative Transfer Equation was studied thoroughly from the law of conservation of energy and the transmission of solar radiance in the earth-atmosphere system, and some methods of dealing with the multiple scattering are analyzed and used in calculating sky radiation. Finally, an approximate model was developed for sky radiance of sunshiny and cloudless sky to make full use of the RTE, an analytical express of sky radiance is gave out for single scattering and quasi-multiple scattering effects. Sky spectral radiance was calculated for some representative case of clear sky, and results have been compared with those of MODTRAN. The results show that the present model is efficient under the sunny and cloudless condition.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Effect factors on sky radiance were analyzed based on the transfer theory of light in the random medium. In fact, these factors mainly include: 1) absorbed and scattered extinction of solar radiance by atmosphere; 2) single scattering process of solar radiance by atmosphere along viewing direction; 3) multiple scattering process of solar radiance by atmosphere along viewing direction; 4) thermal radiation of atmosphere. The latter three ones among these factors increase sky radiance. After this analysis, derivative process of the Radiative Transfer Equation was studied thoroughly from the law of conservation of energy and the transmission of solar radiance in the earth-atmosphere system, and some methods of dealing with the multiple scattering are analyzed and used in calculating sky radiation. Finally, an approximate model was developed for sky radiance of sunshiny and cloudless sky to make full use of the RTE, an analytical express of sky radiance is gave out for single scattering and quasi-multiple scattering effects. Sky spectral radiance was calculated for some representative case of clear sky, and results have been compared with those of MODTRAN. The results show that the present model is efficient under the sunny and cloudless condition.

Key concepts: Radiance, Sky, Diffuse sky radiation, Atmosphere (unit), MODTRAN, Radiative transfer, Scattering, Remote sensing

Related papers

Back to paper searchBrowse research topicsOriginal source
On the approximate model of scattering radiance for cloudless sky — Research Paper | ScholarLens