השוואת שיטות
סקרו את השיטות שבחרתם זו לצד זו; שורות שבהן יש הבדל מודגשות.
| עומק אופטי של אירוסולים× | מודל מחזור כללי× | |
|---|---|---|
| תחום | גאופיזיקה | גאופיזיקה |
| משפחה | Process / pipeline | Process / pipeline |
| שנת המקור≠ | 1929 | 1975 |
| הוגה השיטה≠ | Anders Ångström | Syukuro Manabe and Richard Wetherald |
| סוג≠ | Optical parameter for aerosol loading quantification | Deterministic coupled atmosphere-ocean simulation |
| מקור מכונן≠ | Ångström, A. (1929). On the atmospheric transmission of sun radiation and on dust in the air. Geografiska Annaler, 11(2), 156-166. DOI ↗ | Manabe, S., & Wetherald, R. T. (1975). The effects of doubling the CO2 concentration on the climate of a general circulation model. Journal of the Atmospheric Sciences, 32(1), 3-15. DOI ↗ |
| כינויים | AOD, Aerosol Optical Thickness | GCM, Global Climate Model |
| קשורות | 3 | 3 |
| תקציר≠ | Aerosol Optical Depth (AOD) is a dimensionless measure of aerosol light extinction in the atmosphere, quantifying how much sunlight is scattered and absorbed by particles suspended in air. Formalized by Ångström in 1929 and now routinely measured via satellite (MODIS, Sentinel-5P) and ground networks (AERONET), AOD is essential for air quality monitoring, climate forcing assessment, and visibility prediction. | A General Circulation Model (GCM), also called a Global Climate Model, is a three-dimensional numerical representation of the Earth's atmosphere, oceans, ice, and land surface that simulates physical processes governing weather and climate. Pioneered by Manabe and Wetherald in 1975, GCMs are the primary tools for understanding past climate, projecting future climate change, and investigating climate sensitivity to greenhouse gases and other forcings. |
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