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3D simulations of the Archean Earth including photochemical haze profiles [dataset]

<p>Dataset of 3D simulations of the Archean Earth including photochemical haze profiles</p> <p>We present results from 3D simulations of the Archean Earth including a prescribed spherical haze generated through a 1D photochemical model. Our simulations suggest that a thin haze layer, formed when CH4/CO2 = 0.1, leads to global warming of ~10.6K due to the change of water vapour and cloud feedback, compared to the simulation without any haze. However, a thicker haze layer, formed when CH4/CO2 &gt; 0.1, leads to global cooling of up to ~65K as the scattering and absorption of shortwave radiation from the haze reduces the radiation from reaching the planetary surface. A thermal inversion is formed with a lower tropopause as the CH4/CO2 ratio increases. The haze reaches an optical threshold thickness when CH4/CO2 ~ 0.175 beyond which the atmospheric structure and the global surface temperature do not vary much.</p> <p>&nbsp;</p> <p>The IRIS python package developed by the Met Office is needed to analyse the data.</p>

ShareScore

36/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
8
Harmonization
4
Access
16
Reuse readiness
8
Engagement
0

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