Open Access Digital Repository of Ministry of Earth Sciences, Government of India

Factors for inconsistent aerosol single scattering albedo between SKYNET and AERONET

Khatri, P and Takamura, T and Nakajima, T and Estellés, V and Irie, H and Kuze, H and Campanelli, M and Sinyuk, A and Lee, S-M and Sohn, BJ and Pandithurai, G and Kim, S-W and Yoon, SC and Martinez-Lozano, JA and Hashimoto, M and Devara, PCS and Manago, N (2016) Factors for inconsistent aerosol single scattering albedo between SKYNET and AERONET. Journal of Geophysical Research, 121 (4). pp. 1859-1877.

Full text not available from this repository. (Request a copy)

Abstract

SKYNET and Aerosol Robotic Network (AERONET) retrieved aerosol single scattering albedo (SSA) values of four sites, Chiba (Japan), Pune (India), Valencia (Spain), and Seoul (Korea), were compared to understand the factors behind often noted large SSA differences between them. SKYNET and AERONET algorithms are found to produce nearly same SSAs for similarity in input data, suggesting that SSA differences between them are primarily due to quality of input data due to different calibration and/or observation protocols as well as difference in quality assurance criteria. The most plausible reason for high SSAs in SKYNET is found to be underestimated calibration constant for sky radiance (ΔΩ). The disk scan method (scan area: 1° × 1° area of solar disk) of SKYNET is noted to produce stable wavelength-dependent ΔΩ values in comparison to those determined from the integrating sphere used by AERONET to calibrate sky radiance. Aerosol optical thickness (AOT) difference between them can be the next important factor for their SSA difference, if AOTs between them are not consistent. Inconsistent values of surface albedo while analyzing data of SKYNET and AERONET can also bring SSA difference between them, but the effect of surface albedo is secondary. The aerosol nonsphericity effect is found to be less important for SSA difference between these two networks.

Item Type: Article
Additional Information: Copyright of this article belongs to American Geophysical Union
Subjects: Meteorology and Climatology
Depositing User: IITM Library
Date Deposited: 08 Apr 2017 08:26
Last Modified: 08 Apr 2017 08:26
URI: http://moeseprints.incois.gov.in/id/eprint/4323

Actions (login required)

View Item View Item