Research Article

Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye

Volume: 41 Number: 1 March 14, 2023
  • Elif Yavuz
  • Levent Kuzu *
  • Arslan Saral
EN

Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye

Abstract

Dust particles originating from arid zones can be transported long distances and change the radiation budget. Understanding atmospheric aerosols and their radiative forcing is important to determine their global and regional climate effects. The aim of this study is to simulate the dust transport event that occurred on March 22, 2018, using RegCM-4.5 and investigate the radiative forcing effect of Saharan dust particles. The model was run with the 4 dust bin chemistry option and the direct effect of aerosols on the regional radiation balance was investigated. Validation of the model was made by a comparison between simulated aerosol optical depth (AOD) and MODIS satellite data. The radiative forcing at the top and surface was calculated at all sky conditions. During the dust episode, the shortwave radiative forcing was ranging between -3 and -50 W/m2 at surface and -2 and -22 W/m2 at top of atmosphere while the longwave radiative forcing was between 0.5 and 8 W/m2 at surface and 0.2 and 2 W/m2 at top of atmosphere over Turkiye. In Istanbul it produced a cooling up to -18 W/m2 at surface and -9 W/m2 at top of atmosphere, a warming up to 3.5 W/m2 at surface and 0.6 W/m2 at top of atmosphere.

Keywords

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Authors

Levent Kuzu * This is me
0000-0002-2251-3400
Türkiye

Publication Date

March 14, 2023

Submission Date

April 23, 2021

Acceptance Date

April 29, 2021

Published in Issue

Year 2023 Volume: 41 Number: 1

APA
Yavuz, E., Kuzu, L., & Saral, A. (2023). Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye. Sigma Journal of Engineering and Natural Sciences, 41(1), 35-41. https://izlik.org/JA37BT33BE
AMA
1.Yavuz E, Kuzu L, Saral A. Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye. SIGMA. 2023;41(1):35-41. https://izlik.org/JA37BT33BE
Chicago
Yavuz, Elif, Levent Kuzu, and Arslan Saral. 2023. “Investigation of Aerosol Direct Radiative Forcing During a Dust Storm Using a Regional Climate Model over Turkiye”. Sigma Journal of Engineering and Natural Sciences 41 (1): 35-41. https://izlik.org/JA37BT33BE.
EndNote
Yavuz E, Kuzu L, Saral A (March 1, 2023) Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye. Sigma Journal of Engineering and Natural Sciences 41 1 35–41.
IEEE
[1]E. Yavuz, L. Kuzu, and A. Saral, “Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye”, SIGMA, vol. 41, no. 1, pp. 35–41, Mar. 2023, [Online]. Available: https://izlik.org/JA37BT33BE
ISNAD
Yavuz, Elif - Kuzu, Levent - Saral, Arslan. “Investigation of Aerosol Direct Radiative Forcing During a Dust Storm Using a Regional Climate Model over Turkiye”. Sigma Journal of Engineering and Natural Sciences 41/1 (March 1, 2023): 35-41. https://izlik.org/JA37BT33BE.
JAMA
1.Yavuz E, Kuzu L, Saral A. Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye. SIGMA. 2023;41:35–41.
MLA
Yavuz, Elif, et al. “Investigation of Aerosol Direct Radiative Forcing During a Dust Storm Using a Regional Climate Model over Turkiye”. Sigma Journal of Engineering and Natural Sciences, vol. 41, no. 1, Mar. 2023, pp. 35-41, https://izlik.org/JA37BT33BE.
Vancouver
1.Elif Yavuz, Levent Kuzu, Arslan Saral. Investigation of aerosol direct radiative forcing during a dust storm using a regional climate model over Turkiye. SIGMA [Internet]. 2023 Mar. 1;41(1):35-41. Available from: https://izlik.org/JA37BT33BE

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